Skip to main content

Publications

Project Acronym: SBDP | State: Completed | Expedition ID: 5012

2023
222.
Yin S , Lin X , Huang Y , Zhang Z , Li X .
Application of improved support vector machine in geochemical lithology identification.
Earth Science Informatics. 2023 ; 16 (1): 205 – 220. [doi][doi]
221.
Zhang Z , Huang F , Xu J , Liu X , Zhang L , Zhang M , Yang X , Zeng Y , Liu Q .
Development of Songliao Basin by Palaeo-Pacific slab rollback: Evidence from Early Cretaceous rhyolites in SK2 Borehole, NE China.
Geological Journal. 2023 ; 58 (4): 1342 – 1365. [doi][doi]
220.
Yang M , Li J , Gao M , Chen L , Li C , He Z , Wei Z , Xie H .
Experimental study on nonlinear mechanical behavior and sampling damage characteristics of rocks from depths of 4900–6830 m in Well Songke-2; [松科二井4900~6830 m不同深度岩石非线性力学行为和取样损伤特性试验研究].
Journal of Central South University. 2023 ; 30 (4): 1296 – 1310. [doi][doi]
219.
Zhang S , Wu H , Zhang S , Yang T , Li H , Fang Q , Shi M .
Hierarchical Milankovitch and sub-Milankovitch cycles in the environmental magnetism of the lower Shahezi Formation, Lower Cretaceous, Songliao Basin, northeastern China.
Frontiers in Earth Science. 2023 ; 11 [doi][doi]
218.
Han S , Xie L , Du X , Xiang C , Huang J , Tang Z , Wang C , Horsfield B , Mahlstedt N .
Insights into organic metagenesis using Raman spectroscopy and high resolution mass spectrometry: A case study of the Shahezi formation, deep Songliao basin, China.
International Journal of Coal Geology. 2023 ; 265 [doi][doi]
217.
Jin Z , Hou H , Fu W , Zhang P , An D , Hu Y .
Joint passive seismic imaging based on surface wave inversion and reflection wavefield retrieval: A case study in the sedimentary basin areas adjacent to Well Songke-2.
Journal of Applied Geophysics. 2023 ; 208 [doi][doi]
216.
Gao H , Wang P , Gao Y , Wan X , Yang G , Hu J , Wu H .
The Upper-Lower Cretaceous boundary in the southern Songliao Basin: A case study of ICDP borehole SK-3; [松辽盆地南部上、下白垩统界线研究:以松辽盆地 国际大陆科学钻探松科3井为例].
Earth Science Frontiers. 2023 ; 30 (3): 425 – 440. [doi][doi]
215.
Wu H , Hinnov LA , Zhang S , Jiang G , Yang T , Li H , Xi D , Ma X , Wang C .
Continental geological evidence for Solar System chaotic behavior in the Late Cretaceous.
Bulletin of the Geological Society of America. 2023 ; 135 (3-4): 712 – 724. [doi][doi]
2022
214.
Zhang Z , Huang Y , Li M , Li X , Ju P , Wang C .
Obliquity-forced aquifer-eustasy during the Late Cretaceous greenhouse world.
Earth and Planetary Science Letters. 2022 ; 596 [doi][doi]
213.
Shen Z , Yu Z , Ye H , Deng C , He H .
Magnetostratigraphy of the Upper Cretaceous Nenjiang Formation in the Songliao Basin, northeast China: Implications for age constraints on terminating the Cretaceous Normal Superchron.
Cretaceous Research. 2022 ; 135 [doi][doi]
212.
Chen J , Gao Y , Ibarra DE , Qin J , Wang C .
Mid-latitude precipitation in East Asia influenced by a fluctuating greenhouse climate during the latest Cretaceous through the earliest Paleogene.
Global and Planetary Change. 2022 ; 216 [doi][doi]
211.
Horsfield B , Mahlstedt N , Weniger P , Misch D , Vranjes-Wessely S , Han S , Wang C .
Molecular hydrogen from organic sources in the deep Songliao Basin, P.R. China.
International Journal of Hydrogen Energy. 2022 ; 47 (38): 16750-16774. [doi][doi]
210.
Shi Y , Jiang G , Shi S , Wang Z , Wang S , Hu S .
Terrestrial heat flow and its geodynamic implications in the northern Songliao Basin, Northeast China.
Geophysical Journal International. 2022 ; 229 (2): 962-983. [doi][doi]
209.
Liu Y , Li W , Ma G , Cao A , Gao S , Wang N , Lu W , Wang L , Yang C .
Oil and gas basin analysis based on airborne gravity and magnetic data.
Applied Geophysics. 2022 ; [doi][doi]
208.
Fu Y , Cheng R , Gao Y , Zhou Y , Xu Z .
Pyroclastic deposition in the Cretaceous Shahezi Formation (Well SK-2) Songliao Basin, China: Implications for tectonics and volcanism.
Geological Journal. 2022 ; 57 (6): 2346-2364. [doi][doi]
207.
Zheng W , Wu X , Huang Y .
Research and application of high−temperature drilling fluid designed for the continental scientific drilling project of Songliao Basin, China.
Energy Sources, Part A: Recovery, Utilization and Environmental Effects. 2022 ; 44 (1): 2075-2087. [doi][doi]
206.
Yang D , Huang Y , Wang C .
SediRate-Fischer plots as a tool to illustrate relative sea-level and lake-level changes in subaqueous terrigenous deposits.
Sedimentology. 2022 ; 69 (5): 2080 – 2098. [doi][doi]
205.
Han S , Du X , Bai S , Wang C .
Logging evaluation of deep lacustrine shale reservoir in Songliao Basin: a case study of international continental scientific drilling; [松辽盆地深层陆相页岩储层测井评价:以国际大陆科学钻探为例].
Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology). 2022 ; 53 (9): 3271 – 3286. [doi][doi]
204.
Han S , Xiang C , Du X , Xie L , Bai S , Wang C .
Logging evaluation of deep multi-type unconventional gas reservoirs in the Songliao basin, northeast China: Implications from continental scientific drilling.
Geoscience Frontiers. 2022 ; 13 (6): [doi][doi]
203.
Li X , Huang Y , Zhang Z , Wang C , Yang T .
Orbitally forced chemical weathering in the Late Cretaceous northeastern China: Implications for paleoclimate change.
Global and Planetary Change. 2022 ; 218 [doi][doi]
202.
Zhang Z , Lü D , Wang T , An D , Liu H , Wang D , Wang C .
Intensive peatland wildfires during the Aptian–Albian oceanic anoxic event 1b: Evidence from borehole SK-2 in the Songliao Basin, NE China.
Journal of Palaeogeography. 2022 ; 11 (3): 448-467. [doi][doi]
201.
Zhang H , Zou C , Peng C , Yang Y .
A Study on the Sedimentation Rate of the Denglouku Formation from CCSD SK-2, Based on Logging Spectral Analysis [基于测井频谱分析的松科二井登娄库组地层沉积速率研究].
Acta Geoscientica Sinica. 2022 ; 43 (5): 654-664. [doi][doi]
200.
Han S , Tang Z , Bai S , Wan L , Rui Y , Gao Y , Huang Y , Wang C .
Application of elemental capture spectroscopy in deep tight reservoir evaluation: A case study of well SK-2; [元素俘获能谱在深层致密储层评价中的应用: 以松科2井为例].
Earth Science Frontiers. 2022 ; 29 (1): 449 – 458. [doi][doi]
199.
Ying H , Li H , Zhang Y , Jin Z , Zhang J , Fu W , Gao L , An D , Pan Z , Wang W , Hou H .
Application of SPAC Method to Survey Deep Geothermal Water Storage Structures in SK-2; [基于SPAC法探测松科二井深层地热储水构造].
Acta Geoscientica Sinica. 2022 ; 43 (6): 909 – 916. [doi][doi]
198.
Gu X , Zhang L , Yin R , Grasby S , Yao H , Tan J , Wang C .
Deccan volcanic activity and its links to the end-Cretaceous extinction in northern China.
Global and Planetary Change. 2022 ; 210 [doi][doi]
197.
Li X , Huang Y , Zhang Z , Wang C .
Chemical weathering characteristics of the Late Cretaceous Nenjiang Formation from the Songliao Basin (Northeastern China) reveal prominent Milankovitch band variations.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2022 ; 601 [doi][doi]
196.
Mingzhong G , Haichun H , Shouning X , Tong L , Pengfei C , Yanan G , Jing X , Bengao Y , Heping X .
Discing behavior and mechanism of cores extracted from Songke-2 well at depths below 4,500 m.
International Journal of Rock Mechanics and Mining Sciences. 2022 ; 149 [doi][doi]
195.
Zhang Z , Huang F , Xu J , Zeng Y , Zhang L , Yang X , Zhang M .
Discovery and geological implications of the Early Cretaceous basaltic andesites in SK2 borehole; [? 科二井早白垩世早期玄武安山岩的 ? 现 ? 地质 ?].
Yanshi Xuebao/Acta Petrologica Sinica. 2022 ; (6): 1756 – 1770. [doi][doi]
194.
Yang M , He Z , Li C , Yang B , Liu G , Fu C , Wang T , Wei Z .
Experimental Study on Physical Characteristics of Deep Rocks at Different Depths in Songliao Basin.
Geofluids. 2022 ; 2022 [doi][doi]
193.
Wang T , Wang C , Ramezani J , Wan X , Yu Z , Gao Y , He H , Wu H .
High-precision geochronology of the Early Cretaceous Yingcheng Formation and its stratigraphic implications for Songliao Basin, China.
Geoscience Frontiers. 2022 ; 13 (4): [doi][doi]
192.
Chunli K , Ruiqing Z , Chengfeng C , Jiadong L .
High-resolution crustal structure in the Songliao basin [松辽盆地地壳精细结构研究].
Acta Seismologica Sinica. 2022 ; 44 (4): 555-566. [doi][doi]
191.
Han S , Tang Z , Wang C , Horsfield B , Wang T , Mahlstedt N .
Hydrogen-rich gas discovery in continental scientific drilling project of Songliao Basin, Northeast China: new insights into deep Earth exploration.
Science Bulletin. 2022 ; 67 (10): 1003-1006. [doi][doi]
2021
190.
Dong T , Gao Y , Huang H , Tian X , Yang Q , Li Y , Niu L , Cao Y .
Mineralogical evolution of the cretaceous strata in the songliao basin, northeastern china: Implications for thermal history and paleoenvironmental evolution.
Minerals. 2021 ; 11 (10): [doi][doi]
189.
Kouamelan K , Zou C , Assie K , Peng C , N'Dri K , Mondah O .
Upper Cretaceous paleoenvironmental changes and petrophysical responses in lacustrine record (Songliao Basin, NE China) and marine sedimentary deposit (Goban Spur Basin, NW Europe).
Journal of Geophysics and Engineering. 2021 ; 18 (1): 23-46. [doi][doi]
188.
Gao Y , Ibarra D , Caves Rugenstein J , Chen J , Kukla T , Methner K , Huang H , Lin Z , Zhang L , Xi D , Wu H , Carroll A , Graham S , Chamberlain C , Wang C .
Terrestrial climate in mid-latitude East Asia from the latest Cretaceous to the earliest Paleogene: A multiproxy record from the Songliao Basin in northeastern China.
Earth-Science Reviews. 2021 ; 216 [doi][doi]
187.
Li S , Sanjuan J , Wang Q , Wan X .
Response of the lacustrine flora in East Asia to global climate changes across the K/Pg boundary.
Global and Planetary Change. 2021 ; 197 [doi][doi]
186.
Huang H , Gao Y , Ma C , Jones M , Zeeden C , Ibarra D , Wu H , Wang C .
Organic carbon burial is paced by a ∼173-ka obliquity cycle in the middle to high latitudes.
Science Advances. 2021 ; 7 (28): [doi][doi]
185.
Liu H , Wang P , Gao Y , Hou H , Yin Y , Li H , Feng Y .
New data from ICDP borehole SK2 and its constraint on the beginning of the Lower Cretaceous Shahezi Formation in the Songliao Basin, NE China.
Science Bulletin. 2021 ; 66 (5): 411-413. [doi][doi]
184.
Tian X , Gao Y , Li Z , Carlos Z , Chen Z , Huang Y , Yu E , Wang C .
Fine-grained gravity flow deposits and their depositional processes: A case study from the Cretaceous Nenjiang Formation, Songliao Basin, NE China.
Geological Journal. 2021 ; 56 (3): 1496-1509. [doi][doi]
183.
Xie H , Gao M , Fu C , Lu Y , Yang M , Hu J , Yang B .
Mechanical behavior of brittle-ductile transition in rocks at different depths; [深部不同深度岩石脆延转化力学行为研究].
Meitan Xuebao/Journal of the China Coal Society. 2021 ; 46 (3): 701 – 715. [doi][doi]
182.
Huang F , Zhang Z , Xu J , Li X , Zeng Y , Xu R , Liu X , Zhang L , Zhang M , Yang C , Yu H , Yang X .
Lithospheric extension in response to subduction of the Paleo-Pacific Plate: Insights from Early Jurassic intraplate volcanic rocks in the Sk2 Borehole, Songliao Basin, NE China.
Lithos. 2021 ; 380-381 [doi][doi]
181.
Niu L , Gao Y , Huang H , Tian X , Dong T , Yang Q , Cao X , Wang C .
Controlling factors for organic carbon burial in the late cretaceous nenjiang formation of the songliao basin, ne China.
Energies. 2021 ; 14 (16): [doi][doi]
180.
Xie H , Li C , Gao M , Zhang R , Gao F , Zhu J .
Conceptualization and preliminary research on deep in situ rock mechanics; [深部原位岩石力学构想与初步探索].
Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering. 2021 ; 40 (2): 217 – 232. [doi][doi]
179.
Gao Y , Ibarra D , Du X , Dong T , Liu Z , Wang C .
Clay mineralogical evidence for mid-latitude terrestrial climate change from the latest Cretaceous through the earliest Paleogene in the Songliao Basin, NE China.
Cretaceous Research. 2021 ; 124 [doi][doi]
178.
Wang C , Gao Y , Ibarra D , Wu H , Wang P .
AN UNBROKEN RECORD OF CLIMATE DURING THE AGE OF DINOSAURS: A scientific drilling project in China has retrieved a continuous history of conditions from Earth’s most recent “greenhouse” period that may offer insights about future climate scenarios.
Eos (United States). 2021 ; 102 (7): 36-41. [doi][doi]
177.
Yang D , Huang Y , Chen Z , Huang Q , Ren Y , Wang C .
A python code for automatic construction of Fischer plots using proxy data.
Scientific Reports. 2021 ; 11 (1): [doi][doi]
2020
176.
Noah M , Horsfield B , Han S , Wang C .
Precise maturity assessment over a broad dynamic range using polycyclic and heterocyclic aromatic compounds.
Organic Geochemistry. 2020 ; 148 [doi][doi]
175.
Wu X , Zheng W , Zou Y .
Well Bore Stability Technology Using Blocking Drilling Fluid System Suitable for the Deep High Temperature Cracked Strata in Well Songke-2; [松科2井深部高温龟裂岩层封堵型钻井液稳定井壁技术].
Diqiu Kexue - Zhongguo Dizhi Daxue Xuebao/Earth Science - Journal of China University of Geosciences. 2020 ; 45 (9): 3502 – 3508. [doi][doi]
174.
Lu Y , Li C , He Z , Gao M , Zhang R , Xie H .
Variations in the physical and mechanical properties of rocks from different depths in the Songliao Basin under uniaxial compression conditions.
Geomechanics and Geophysics for Geo-Energy and Geo-Resources. 2020 ; 6 (3): [doi][doi]
173.
Wang S , Cheng Y , Zeng L , Miao P , Jin R , Zhang T , Li C , Zhang X .
Thermal imprints of Cenozoic tectonic evolution in the Songliao Basin, NE China: Evidence from apatite fission-track (AFT) of CCSD-SK1 borehole.
Journal of Asian Earth Sciences. 2020 ; 195 [doi][doi]
172.
Xu Z , Xu Q , Liu A , Wang N , Li G , Peng C , Yan L , Su Y .
The Cretaceous stratigraphy, Songliao Basin, Northeast China: Constrains from drillings and geophysics.
Open Geosciences. 2020 ; 12 (1): 1212 – 1223. [doi][doi]
171.
Wang B , Sun D , Chen Q , Lin W , Li A , Cao H .
Stress-state differences between sedimentary cover and basement of the Songliao Basin, NE China: In-situ stress measurements at 6–7 km depth of an ICDP Scientific Drilling borehole (SK-II).
Tectonophysics. 2020 ; 777 [doi][doi]
170.
Fu X , Huo Z , Wang J , Cui K , Jin M , Zhu Z , Bai X , Liu H , Yue B .
Sedimentary System of Denglouku Formation in Xujiaweizi Area, Songliao Basin.
Springer Series in Geomechanics and Geoengineering. 2020 ; 2135-2148. [doi][doi]
169.
An Z , Zhang P , Vogel H , Song Y , Dodson J , Wiersberg T , Feng X , Lu H , Ai L , Sun Y .
Scientific drilling workshop on the Weihe Basin Drilling Project (WBDP): Cenozoic tectonic-monsoon interactions.
Scientific Drilling. 2020 ; 28 63-73. [doi][doi]
168.
Yang H , Huang Y , Ma C , Zhang Z , Wang C .
Recognition of Milankovitch cycles in XRF core-scanning records of the Late Cretaceous Nenjiang Formation from the Songliao Basin (northeastern China) and their paleoclimate implications.
Journal of Asian Earth Sciences. 2020 ; 194 [doi][doi]
167.
Cao X , Gao Y , Cui J , Han S , Kang L , Song S , Wang C .
Pore characteristics of lacustrine shale oil reservoir in the Cretaceous Qingshankou Formation of the Songliao Basin, NE China.
Energies. 2020 ; 13 (8): [doi][doi]
166.
Yu Z , He H , Deng C , Lu K , Shen Z , Li Q .
New SIMS U-Pb geochronology for the Shahezi Formation from CCSD-SK-IIe borehole in the Songliao Basin, NE China.
Science Bulletin. 2020 ; 65 (13): 1049-1051. [doi][doi]
165.
Hu Y , Hu C , Zhang H , Zheng W .
Analysis of bit balling and application of the balling-preventing drilling fluid in well Songke-2; [钻头泥包原因分析及松科二井防泥包钻井液的应用].
Meitiandizhi Yu Kantan/Coal Geology and Exploration. 2020 ; 48 (5): 254 – 261+268. [doi][doi]
164.
Shang F , Zhou H , Liu Y , Zhou X , Wang L , Bi H , Wang G , Song L , Chen R .
A discussion on the organic matter enrichment model of the Nenjiang Formation, Songliao Basin: A case study of oil shale in the 1st and 2nd members of the Nenjiang Formation; [松辽盆地嫩江组泥页岩有机质富集模式探讨——以嫩江组一、二段油页岩为例].
Geology in China. 2020 ; 47 (1): 236 – 248. [doi][doi]
163.
Xiaojuan M , Huaichun W , Fang Q , Shi M , Zhang S , Yang T , Haiyan L , Wang C .
A Floating Astronomical Time Scale for the Early Late Cretaceous Continental Strata in the Songliao Basin, Northeastern China.
Acta Geologica Sinica (English Edition). 2020 ; 94 (1): 27-37. [doi][doi]
162.
Huang Y , Zheng W , Zhang D , Xi Y .
A modified Herschel–Bulkley model for rheological properties with temperature response characteristics of poly-sulfonated drilling fluid.
Energy Sources, Part A: Recovery, Utilization and Environmental Effects. 2020 ; 42 (12): 1464-1475. [doi][doi]
161.
Yang J , Hou H , Fu W , Guo R , Pan Z , Zhang J , Zhang H .
3D microscopic CT imaging and significance of SK-2 deep mudstone of Shahezi Group; [松科二井深层沙河子组泥岩三维显微CT成像及对深部油气预测的启示].
Geological Bulletin of China. 2020 ; 39 (7): 1006 – 1014.
160.
Peng C , Zou C , Zhang S , Wu H , Lü Q , Hou H , Wang C .
Astronomically forced variations in multiresolution resistivity logs of lower Upper Cretaceous (Cenomanian-Coniacian) terrestrial formations from the Songliao Basin, northeastern China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2020 ; 555 [doi][doi]
159.
Liang S , Gan W , Wang C .
Characterizing subseismic faults from SK-2 drilling core (2900-4200 m): Implication for reservoir transmissibility and regional tectonic evolution.
Interpretation. 2020 ; 8 (2): [doi][doi]
158.
Liu Y , Wang C , Luo G , Ji W .
Design and applications of drilling trajectory measurement instrumentation in an ultra-deep borehole based on a fiber-optic gyro.
Geoscientific Instrumentation, Methods and Data Systems. 2020 ; 9 (1): 79-104. [doi][doi]
157.
Li S , Wang Q , Zhang Y , Wan X , Martín-Closas C .
Filling a gap in the evolution of charophytes during the Turonian to Santonian: Implications for modern physiognomy.
Review of Palaeobotany and Palynology. 2020 ; 274 [doi][doi]
156.
Kouamelan K , Zou C , Wang C , Assie K , Peng C , Mondah O , N’dri K , Brantson E .
Multifractal characterization of the Coniacian–Santonian OAE3 in lacustrine and marine deposits based on spectral gamma ray logs.
Scientific Reports. 2020 ; 10 (1): [doi][doi]
2019
155.
Zhang X , Zou C , Zhao J , Li N , Zhang S , Kouamelan K , Xiao L , Ma H , Niu Y .
Organic-rich source rock characterization and evaluation of the Cretaceous Qingshankou Formation: results from geophysical logs of the second scientific drilling borehole in the Songliao Basin, NE China.
Geosciences Journal. 2019 ; 23 (1): 119-135. [doi][doi]
154.
李立鑫  , 张丰琰  , 张恒春  , 汪伟  , 张毅  , 胡郁乐  .
深井复合钻柱技术在特深科学钻探中的应用探讨.
中国地质. 2019 ; 46 (5): 1200-1208.
153.
Hou H , Zhang J , Wang W , Yang L , Xiao G , Fu W , Miao H , Xu S , Zeng Q , Liu X , Wang D , Zhang W .
Vertical distribution characteristics of light hydrocarbon components in Well SK-2 and its implications for deep oil and gas [松科二井轻烃组分垂向分布特征及其对深部油气的指示].
Geology in China. 2019 ; 46 (5): 943-953. [doi][doi]
152.
Wang T , Han J , Hou H , Liu W , Guan Y , Ma G , Zhou Z .
The utilization of integrated geophysical profiles to reveal the basement geology and geophysical characteristics of the Songliao Basin: A case study of the profile of Well SK-2; [综合物探剖面揭示松辽盆地基底地质与地球物理特征-以过松科二井剖面为例].
Geology in China. 2019 ; 46 (5): 1126 – 1136. [doi][doi]
151.
Zhang L , Hay W , Wang C , Gu X .
The evolution of latitudinal temperature gradients from the latest Cretaceous through the Present.
Earth-Science Reviews. 2019 ; 189 147-158. [doi][doi]
150.
Fu W , Hou H , Zhang J , Liu C , Feng X , Lu Z .
Structural characteristics of Shahezi Formation beneath the Well SK-2 and its periphery: An analysis of logging and seismic data; [松科二井邻域沙河子组含油气地层结构特征-基于测井和地震数据的分析].
Geology in China. 2019 ; 46 (5): 1052 – 1060. [doi][doi]
149.
Guo R , Hou H , Fu W , Yang J , Feng X , Lu Z , Zhou H .
Q value analysis of deep seismic reflection data of Well SK-2 and its determination of gas-bearing stratum; [松科二井深地震反射数据 Q值分析及其对含气层位的确定].
Geology in China. 2019 ; 46 (5): 1137 – 1145. [doi][doi]
148.
Gao Y , Wang C , Wang P , Huang Y , Zou C .
Progress on Continental Scientific Drilling Project of Cretaceous Songliao Basin (SK-1 and SK-2).
Science Bulletin. 2019 ; 64 (2): 73-75. [doi][doi]
147.
Jia Y , Wenshi W , Hengchun Z , Jie X , Longlong C .
Practice of Turbo-drill core drilling in Well SK-2.
Drilling & Production Technology. 2019 ; 42 (1): 31-34.
146.
Hu D , Zou C , Peng C , Wang W , Lü Q , Hou H , Zhu Y , Zhang J , Zhang H , Ding Y , Lin F , Cui L , Dou R , Xu C , Zhuo K , Yang J .
Petrophysical characteristics of Huoshiling Formation from CCSD SK- 2 in the Songliao Basin of Northeast China; [松科二井火石岭组地层岩石物理学特征研究].
Geology in China. 2019 ; 46 (5): 1161 – 1173. [doi][doi]
145.
Hu D , Zou C , Peng C , Wang W , Lü Q , Hou H , Zhu Y , Zhang J , Ding Y , Lin F , Cui L , Dou R , Xu C , Zhuo K , Yang J .
Petrophysical characteristics of Huoshiling Formation from CCSD SK- 2 in the Songliao Basin of Northeast China [松科二井火石岭组地层岩石物理学特征研究].
Geology in China. 2019 ; 46 (5): 1161-1173. [doi][doi]
144.
Hu Y , Liu N , Wang W , Zhang H .
Research and application of while drilling temperature measurement technology under high temperature and high pressure in Well Songke-2; [松科二井高温高压随钻测温技术的应用研究].
Geology in China. 2019 ; 46 (5): 1193 – 1199. [doi][doi]
143.
Yu Z , He H , Deng C , Xi D , Qin Z , Wan X , Wang C , Zhu R .
New geochronological constraints for the Upper Cretaceous Nenjiang Formation in the Songliao Basin, NE China.
Cretaceous Research. 2019 ; 102 160-169. [doi][doi]
142.
Yin Y , Gao Y , Wang P , Qu X , Liu H .
Discovery of Triassic volcanic-sedimentary strata in the basement of Songliao Basin.
Science Bulletin. 2019 ; 64 (10): 644-646. [doi][doi]
141.
ZHAO J , Zou C , Wang W , ZHANG X , Zhu Y , Zhang J , Zhang H , Ding Y , Lin F , QIN Y , ZHOU H , SUN W .
Log response characteristics and lithological evaluation of volcanic rocks in Yingcheng Formation from the second scientific drilling borehole (SK-2 east borehole) in Songliao basin of Northeast China.
Geology in China. 2019 ; 46 (5): 1174-1183. [doi][doi]
140.
Yang Y , Sun D , Zheng X , Lin W , Li A .
A method of diametrical core deformation analysis and its application on stress investigation in SK2 Well; [岩芯直径变形分析法及其在松科2井深部地应力调查中的应用].
Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology). 2019 ; 50 (12): 3106 – 3113. [doi][doi]
139.
Yuejuan Z , Shuwang C , Dejun Z , Xin H .
Characteristics of spores and pollen assemblages from the Lower Cretaceous Shahezi Formation in the SK2 Borehole.
Geology in China. 2019 ; 46 (5): 1245-1246. [doi][doi]
138.
Li S , Wang Q , Wan X , Martín-Closas C .
Charophytes from the Cretaceous–Paleocene boundary in the Songliao Basin (north-eastern China): a Chinese biozonation and its calibration to the Geomagnetic Polarity Time Scale.
Papers in Palaeontology. 2019 ; 5 (1): 47-81. [doi][doi]
137.
Ma F , Wang G , Sun Z , Zhang W , Hou H , Guo X .
An Analysis of Thermal Conductivity in Songliao Basin Based on Logging Parameters; [利用测井资料获取松辽盆地深部热物性参数].
Acta Geoscientica Sinica. 2019 ; 40 (2): 350 – 360. [doi][doi]
136.
Li L , Zhang F , Wang W , Zhang Y , Hu Y .
A discussion on deep-well combined drill string technology for ultra-deep drilling engineering [深井复合钻柱技术在特深科学钻探中的应用探讨].
Geology in China. 2019 ; 46 (5): 1200-1208. [doi][doi]
135.
Basin S , LIU S , GAO Y , YIN Y , LIU H , LI H , WANG P .
Fine description and geological age delineation of sedimentary sequences of the second member of Denglouku Formation based on ICDP scientific drilling borehole in Songliao Basin (SK2).
2019 ;
134.
Fu W , Hou H , Gao R , Liu C , Yang J , Guo R .
Fine structure of the lithosphere beneath the Well SK-2 and its adjacent: Revealed by deep seismic reflection profile ["松科二井"邻域岩石圈精细结构特征及动力学环境-深地震反射剖面的揭示].
Acta Geophysica Sinica. 2019 ; 62 (4): 1349-1361. [doi][doi]
133.
Xu J , Zhu Y , Wu X , Wang W , Zhang H , Yan J , Cao L , Xu L , Zhang L , Zheng W .
High-temperature core drilling fluid technology of Well Songke-2; [松科二井取心钻进高温钻井液技术].
Geology in China. 2019 ; 46 (5): 1184 – 1193. [doi][doi]
132.
Wang C . Initial report of continental scientific drilling project of the Cretaceous Songliao Basin (SK-1) in China. Amsterdam, The Netherlands ; Cambridge, MA: Elsevier; 2019 .
2018
131.
Jones M , Ibarra D , Gao Y , Sageman B , Selby D , Chamberlain C , Graham S .
Evaluating Late Cretaceous OAEs and the influence of marine incursions on organic carbon burial in an expansive East Asian paleo-lake.
Earth and Planetary Science Letters. 2018 ; 484 41-52. [doi][doi]
130.
Jie X , Xiaoming W , Wenshi W , Jia Y , Hengchun Z , Longlong C .
Ultra-high temperature drilling fluid technology of well Songke-2.
钻井液与完井液. 2018 ; 35 (2): 29-34. [doi][doi]
129.
Sun Y , Shi Y , Wang Q , Yao Z .
Study on speed characteristics of hydraulic top drive under fluctuating load.
Journal of Petroleum Science and Engineering. 2018 ; 167 277-286. [doi][doi]
128.
Zou C , Zhang X , Zhao J , Peng C , Zhang S , Li N , Xiao L , Niu Y , Ding Y , Qin Y , Lin F .
Scientific Results of Geophysical Logging in the Upper Cretaceous Strata, CCSD SK-2 East Borehole in the Songliao Basin of Northeast China [松辽盆地科学钻探工程松科二井东孔上白垩统地球物理测井科学成果].
Acta Geoscientica Sinica. 2018 ; 39 (6): 679-690. [doi][doi]
127.
Liwei C , Chenguang Z , Sujiang Z , Ailing J , Guiyun L .
Research on the protection technology and the effects of cores in well SK-2.
CHINA MINING MAGAZINE. 2018 ; 27 (8): 159-163.
126.
Song Y , Qian Z , Zhang J , Andrei S .
Morphology of detrital zircon and its application in provenance analysis: Example from Cretaceous Continental Scientific Drilling borehole in Songliao Basin.
Diqiu Kexue. 2018 ; 43 (6): 1997-2006.
125.
Zhu Y , Wang W , Wu X , Zhang H , Xu J , Yan J , Cao L , Ran H , Zhang J .
Main technical innovations of Songke Well No.2 Drilling Project.
China Geology. 2018 ; 1 (2): 187-201. [doi][doi]
124.
Yang D , Huang Y , Huang Q , Ren Y , Wang C .
Late Santonian-early Campanian lake-level fluctuations in the Songliao Basin, NE China and their relationship to coeval eustatic changes.
Cretaceous Research. 2018 ; 92 138-149. [doi][doi]
123.
Hou H , Wang C , Zhang J , Ma F , Fu W , Wang P , Huang Y , Zou C , Gao Y , Zhang L , Yang J , Guo R .
Deep continental scientific drilling engineering in Songliao Basin: Progress in earth science research.
Geology in China. 2018 ; 45 (4): 641-657. [doi][doi]
122.
Li C , Shen L .
Design and Application of Long Servce Life Bit in Hard Rock Drilling for " SK-Ⅱ" Well.
Exploration Engineering (Rock & Soil Drilling and Tunneling). 2018 ; 45 (2): 56-60.
121.
Tong X , Hu J , Xi D , Zhu M , Song J , Peng P .
Depositional environment of the Late Santonian lacustrine source rocks in the Songliao Basin (NE China): Implications from organic geochemical analyses.
Organic Geochemistry. 2018 ; 124 215-227. [doi][doi]
120.
Hou H , Wang C , Zhang J , Ma F , Fu W , Wang P , Huang Y , Zou C , Gao Y , Gao Y , Zhang L , Yang J , Guo R .
Deep Continental Scientific Drilling Engineering Project in Songliao Basin: progress in Earth Science research.
China Geology. 2018 ; 1 (2): 173-186. [doi][doi]
119.
Zhang L , Wang C , Wignall P , Kluge T , Wan X , Wang Q , Gao Y .
Deccan volcanism caused coupled pCO2 and terrestrial temperature rises, and pre-impact extinctions in northern China.
Geology. 2018 ; 46 (3): 271-274. [doi][doi]
118.
Gao Y , Xi D , Qin Z , Ma P , Wang C .
Clay mineralogy of the first and second members of the Nenjiang Formation, Songliao Basin: Implications for paleoenvironment in the Late Cretaceous.
Science China Earth Sciences. 2018 ; 61 (3): 327-338. [doi][doi]
117.
Honghao L , GaoYoufeng W , Xuejiao Q , Xiang G , Haichao C .
Characteristics of top boundary of Shahezi Formation in Xujiaweizi fault depression, northern Songliao Basin: Illustrated by continental scientific drilling borehole SK2.
Global Geology. 2018 ; 37 (3): 838-849.
116.
Shaoli L , Shaoguang S .
Cementing technology for ultra-high temperature well Songke-2.
钻井液与完井液. 2018 ; 35 (2): 92-97. [doi][doi]
115.
Zhang S , Zou C , Peng C , Zhao J , Li N , Zhang X , Ma H , Niu Y .
Abnormally high natural radioactivity zones in the main borehole of the Continental Scientific Drilling Project of Cretaceous Songliao Basin: Geophysical log responses and genesis analysis [松科2井东孔营城组高放射性异常层测井响应特征及成因初探].
Acta Geophysica Sinica. 2018 ; 61 (11): 4712-4728. [doi][doi]
2017
114.
Gao X , Gao Y , Qu X , Li H , Chen T , Wang P .
Volcanic-sedimentary succession description of the Lower Cretaceous Yingcheng Formation based on the ICDP scientific drilling borehole in the Songliao Basin (SK-2).
Earth Science Frontiers. 2017 ; 24 (1): 265-275. [doi][doi]
113.
Cao H , Hu J , Peng P , Xi D .
The variation of paleo-lake environment in the Lower Member 2 of Qingshankou Formation in the Songliao Basin.
Earth Science Frontiers. 2017 ; 24 (1): 205 – 215. [doi][doi]
112.
Wan X , Wu H , Xi D , Liu M , Qin Z .
Terrestrial biota and climate during Cretaceous greenhouse in NE China.
Earth Science Frontiers. 2017 ; 24 (1): 18 – 31. [doi][doi]
111.
Zhao J , Zou C , Fu H , Xiao L , Peng C , Niu Y .
Pore structure characterization of the Cretaceous Quantou Formation: Results from microresistivity imaging logs in the second scientific drilling borehole (SK-2 east borehole) Songliao basin, northeast China.
Journal of Petroleum Science and Engineering. 2017 ; 159 915-926. [doi][doi]
110.
Gao Y , Wang C , Huang Y , Hu B .
Progress in the study of paleoclimate change in continental scientific drilling projects.
Earth Science Frontiers. 2017 ; 24 (1): 229 – 241. [doi][doi]
109.
Qu X , Yang L , Xue X , Gao Y , Wang P .
Prediction of the bottom hole geotemperature, formation pressure and formation fracture pressure of the Continental Scientific Drilling of Cretaceous Songliao Basin (SK2).
Earth Science Frontiers. 2017 ; 24 (1): 257 – 264. [doi][doi]
108.
Xu Z , Yang J , Wang C , An Z , Li H , Wang Q , Su D .
Fifteen years of the Chinese continental scientific drilling program.
Scientific Drilling. 2017 ; 22 1-18. [doi][doi]
107.
Li H , Zhou T , Zhang S , Liu G , Wu H , Yang T , Zhao K .
Magnetic records from the Nenjiang Formation of core SK-1s and their implications.
Earth Science Frontiers. 2017 ; 24 (1): 143 – 153. [doi][doi]
106.
Wang P , Liu H , Ren Y , Wan X , Wang S , Qu X , Meng Q , Huang Y , Huang Q , Gao Y , Wang C .
How to choose a right drilling site for the ICDP Cretaceous Continental Scientific Drilling in the Songliao Basin (SK2), Northeast China.
Earth Science Frontiers. 2017 ; 24 (1): 216-228. [doi][doi]
105.
Liu S , Chen Z , Meng Q , Zhou H , Li C , Liu B .
Effect of graphene and graphene oxide addition on lubricating and friction properties of drilling fluids.
Nanoscience and Nanotechnology Letters. 2017 ; 9 (4): 446-452. [doi][doi]
104.
Yoshino K , Wan X , Xi D , Li W , Matsuoka A .
Campanian–Maastrichtian palynomorph from the Sifangtai and Mingshui formations, Songliao Basin, Northeast China: Biostratigraphy and paleoflora.
Palaeoworld. 2017 ; 26 (2): 352-368. [doi][doi]
103.
Peng C , Zou C , Pan L , Niu Y .
Application of geochemical logging for palaeoenvironmental research in the Late Cretaceous Qingshankou Formation from the Chinese Continental Scientific Drilling Project-SK-2e, Songliao Basin, NE China.
Journal of Geophysics and Engineering. 2017 ; 14 (4): 865 – 877. [doi][doi]
102.
Gao Y , Qu X , Jiang L , Wang S , Wang P .
Lithology and stratigraphic interfaces prediction of the Continental Scientific Drilling Project of Cretaceous Songliao Basin (SK2).
Earth Science Frontiers. 2017 ; 24 (1): 242 – 256. [doi][doi]
2016
101.
Batten D , Li J , Peng J .
Megaspores attributable to Ghoshispora in Late Cretaceous deposits of the Songliao Basin, north-east China: Taxonomic clarification and distribution.
Review of Palaeobotany and Palynology. 2016 ; 232 40-60. [doi][doi]
100.
Wang P , Mattern F , Didenko N , Zhu D , Singer B , Sun X .
Tectonics and cycle system of the Cretaceous Songliao Basin: An inverted active continental margin basin.
Earth-Science Reviews. 2016 ; 159 82-102. [doi][doi]
99.
Cao W , Xi D , Huang Q , Cheng Y , Qu H , Gao L , Wan X .
Seawater incursion event in Songliao Basin: New evidence from calcareous nannofossils of SK-1.
Geological Bulletin of China. 2016 ; 35 (6): 866 – 871.
98.
Liu B , Liu S , Chen Z , Meng Q , Li C .
Oxide and diamond nanoparticles modified drilling fluid for deep, complicated drilling conditions.
Journal of Nanoscience and Nanotechnology. 2016 ; 16 (12): 13007-13013. [doi][doi]
97.
Xi D , Cao W , Huang Q , Do Carmo D , Li S , Jing X , Tu Y , Jia J , Qu H , Zhao J , Wan X .
Late Cretaceous marine fossils and seawater incursion events in the Songliao Basin, NE China.
Cretaceous Research. 2016 ; 62 172-182. [doi][doi]
96.
Wang T , Ramezani J , Wang C , Wu H , He H , Bowring S .
High-precision U-Pb geochronologic constraints on the Late Cretaceous terrestrial cyclostratigraphy and geomagnetic polarity from the Songliao Basin, Northeast China.
Earth and Planetary Science Letters. 2016 ; 446 37-44. [doi][doi]
95.
Zhang L , Wang C , Cao K , Wang Q , Tan J , Gao Y .
High elevation of Jiaolai Basin during the Late Cretaceous: Implication for the coastal mountains along the East Asian margin.
Earth and Planetary Science Letters. 2016 ; 456 112-123. [doi][doi]
94.
Zou C , Xiao L , Niu Y , Hou J , Peng C .
General design of geophysical logging of the CCSD-SK-2 East Borehole in the Songliao Basin of Northeast China.
Earth Science Frontiers. 2016 ; 23 (3): 279 – 287. [doi][doi]
93.
Wang P , Chen C , Liu H .
Aptian giant explosive volcanic eruptions in the Songliao Basin and northeast Asia: A possible cause for global climate change and OAE-1a.
Cretaceous Research. 2016 ; 62 98-108. [doi][doi]
92.
Sun Y , Zhang F , Wang Q , Gao K .
Application of "Crust 1" 10k ultra-deep scientific drilling rig in Songliao Basin Drilling Project (CCSD-SKII).
Journal of Petroleum Science and Engineering. 2016 ; 145 222-229. [doi][doi]
2015
91.
Hu J , Peng P , Liu M , Xi D , Song J , Wan X , Wang C .
Seawater incursion events in a cretaceous paleo-lake revealed by specific marine biological markers.
Scientific Reports. 2015 ; 5 [doi][doi]
90.
Ji L , Zhang M , Song Z .
The palynological record from Coniacian to lower Campanian continental sequences in the Songliao Basin, northeastern China and its implications for palaeoclimate.
Cretaceous Research. 2015 ; 56 226-236. [doi][doi]
89.
Liu M , Hu J , Xiaoqiao W .
The organic geochemical evidences for the lake water stratification in Lower Nenjiang Formation, Songliao Basin.
Journal of Lake Sciences. 2015 01 ; 27 190-194. [doi][doi]
88.
Cao X , Li Y , Wang L , Yin Q , Song Z , Zhao D .
The distribution of polycyclic aromatic hydrocarbons (PAHs) in sediments from Upper Cretaceous Nenjiang Formation of Songliao Basin and its paleoclimate significance.
Geochimica. 2015 ; 44 536-545.
87.
Wang P , Zhao R , Meng Q , Qu X , Zhu D , Gao Y .
The Cretaceous Songliao Basin: Dynamic background from volcanic rift to interior sag basin..
Earth Science Frontiers. 2015 ; 22 (3): 99-117. [doi][doi]
86.
Li W , Xinxing C , Yan L , others  .
The carbon isotopic composition of individual biomarkers in lacustrine source rocks from Songliao Basin and its biogeochemical implication.
Geochimica. 2015 ; 44 (4): 337-347.
85.
Gao Y , Ibarra D , Wang C , Caves J , Chamberlain C , Graham S , Wu H .
Mid-latitude terrestrial climate of East Asia linked to global climate in the Late Cretaceous.
Geology. 2015 ; 43 (4): 287-290. [doi][doi]
84.
Ibarra D , Chamberlain C .
Quantifying closed-basin lake temperature and hydrology by inversion of oxygen isotope and trace element paleoclimate records.
American Journal of Science. 2015 ; 315 (9): 781-808. [doi][doi]
83.
Xu J , Wu X , Zhu Y , Chikhotkin V , Xu M , Wu C , Zheng W .
Laboratory study on ultra high temperature water base mud.
Drilling Fluid and Completion Fluid. 2015 ; 32 (1): 10–13 and 97. [doi][doi]
82.
Wang G , Cheng R , Wang P , Gao Y , Wang C , Ren Y , Huang Q .
High resolution continuous sedimentary records of Upper Cretaceous obtained from the continental drilling (SK-1) borehole in Songliao Basin: Sifangtai and Mingshui Formations.
Geoscience Frontiers. 2015 ; 6 (6): 895-912. [doi][doi]
81.
Wenlong Z , Xiaoming W , Yongyi Z , Wenshi W , Linsheng Z , Jie X .
Drilling fluid technique for special drilling technology in SK-2 Well.
石油钻采工艺. 2015 ; 37 (3): 32-35.
80.
Qiu J .
Dinosaur climate probed.
Science. 2015 ; 348 (6240): 1185. [doi][doi]
79.
Gao Y , Wang C , Liu Z , Du X , Ibarra D .
Diagenetic and paleoenvironmental controls on late cretaceous clay minerals in the Songliao basin, Northeast China.
Clays and Clay Minerals. 2015 ; 63 (6): 469-484. [doi][doi]
78.
Wang L , Song Z , Cao X , Li Y .
Compound-specific carbon isotope study on the hydrocarbon biomarkers in lacustrine source rocks from Songliao Basin.
Organic Geochemistry. 2015 ; 87 68-77. [doi][doi]
2014
77.
Qu H , Xi D , Li S , Colin J , Huang Q , Wan X .
Late cretaceous-early paleocene ostracod biostratigraphy of scientific drilling Sk1(N) in the Songliao Basin, northeast China.
Journal of Paleontology. 2014 ; 88 (4): 786-798. [doi][doi]
76.
Song Y , Ren J , Stepashko A , Li J .
Post-rift geodynamics of the Songliao Basin, NE China: Origin and significance of T11 (Coniacian) unconformity.
Tectonophysics. 2014 ; 634 1-18. [doi][doi]
75.
Zhao J , Wan X , Xi D , Jing X , Li W , Huang Q , Zhang J .
Late Cretaceous palynology and paleoclimate change: Evidence from the SK1 (South) core, Songliao Basin, NE China.
Science China Earth Sciences. 2014 ; 57 (12): 2985-2997. [doi][doi]
74.
Wagreich M , Lein R , Sames B .
Eustasy, its controlling factors, and the limno-eustatic hypothesis - Concepts inspired by Eduard Suess.
Austrian Journal of Earth Sciences. 2014 ; 107 (1): 115-131.
73.
Wu H , Zhang S , Hinnov L , Jiang G , Yang T , Li H , Wan X , Wang C .
Cyclostratigraphy and orbital tuning of the terrestrial upper Santonian-Lower Danian in Songliao Basin, northeastern China.
Earth and Planetary Science Letters. 2014 ; 407 82-95. [doi][doi]
72.
Qu X , Wang P , Gao Y , Wan X .
Chronostratigraphy of Huoshiling Formation in the Songliao Basin, NE China: An overview.
Earth Science Frontiers. 2014 ; 21 (2): 234-250. [doi][doi]
71.
Nie Z , Huang Q , Xi D , Wan X .
Biomarker characteristics of source rocks in Well SK1 in Songliao Basin.
Earth Sci. Front.. 2014 ; 21 (2): 265-274.
2013
70.
Wan X , Zhao J , Scott R , Wang P , Feng Z , Huang Q , Xi D .
Late Cretaceous stratigraphy, Songliao Basin, NE China: SK1 cores.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 31-43. [doi][doi]
69.
Chamberlain C , Wan X , Graham S , Carroll A , Doebbert A , Sageman B , Blisniuk P , Kent-Corson M , Wang Z , Chengshan W .
Stable isotopic evidence for climate and basin evolution of the Late Cretaceous Songliao basin, China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 106-124. [doi][doi]
68.
Li H , Zhang S , Wu H , Zhao K , Yang T , Zhao L .
Rock magnetic records of the Qingshankou Formation of SK-1 south borehole in Songliao Basin, Northeast China, and their paleoclimate implications.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 71-82. [doi][doi]
67.
Huang C , Retallack G , Wang C , Huang Q .
Paleoatmospheric pCO2 fluctuations across the Cretaceous-Tertiary boundary recorded from paleosol carbonates in NE China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 95-105. [doi][doi]
66.
Chen J , Zhao P , Wang C , Huang Y , Cao K .
Modeling East Asian climate and impacts of atmospheric CO2 concentration during the Late Cretaceous (66Ma).
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 190-201. [doi][doi]
65.
Huang Y , Yang G , Gu J , Wang P , Huang Q , Feng Z , Feng L .
Marine incursion events in the Late Cretaceous Songliao Basin: Constraints from sulfur geochemistry records.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 152-161. [doi][doi]
64.
Meng Q , Huang Q , Wan X , Deng C , He H .
Magnetopolarity zone and geological age of the Nenjiang Formation at the CCSD-SK-1 drill core in the Songliao Basin.
Journal of Stratigraphy. 2013 ; 37 (2): 139-143.
63.
Li S , Zhang Y , Qu H , Wang M , Wan X , Sinica AM , others  .
Late Cretaceous--early Paleogene charophytes from Songliao Basin, North China: SK1 (N) Core.
Acta Micropalaeontologica Sinica. 2013 ; 30 (1): 1-16.
62.
Wang P , Huang Y , Wang C , Feng Z , Huang Q .
Pyrite morphology in the first member of the Late Cretaceous Qingshankou Formation, Songliao Basin, Northeast China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 125-136. [doi][doi]
61.
Wang C , Scott R , Wan X , Graham S , Huang Y , Wang P , Wu H , Dean W , Zhang L .
Late Cretaceous climate changes recorded in Eastern Asian lacustrine deposits and North American Epieric sea strata.
Earth-Science Reviews. 2013 ; 126 275-299. [doi][doi]
60.
Wang C .
Environmental/climate change in the Cretaceous greenhouse world: Records from Terrestrial scientific drilling of Songliao Basin and adjacent areas of China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 1-5. [doi][doi]
59.
Wang C , Feng Z , Zhang L , Huang Y , Cao K , Wang P , Zhao B .
Cretaceous paleogeography and paleoclimate and the setting of SKI borehole sites in Songliao Basin, northeast China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 17-30. [doi][doi]
58.
Mei-gui X , Shao-nan Z , Mei-yan F , Xiao-cong F .
Contrast experiment about dissolution of feldspar in different freshwater diagenetic systems.
Geoscience. 2013 ; 27 (4): 925.
57.
Feng Z , Wang C , Graham S , Koeberl C , Dong H , Huang Y , Gao Y .
Continental Scientific Drilling Project of Cretaceous Songliao Basin: Scientific objectives and drilling technology.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 6-16. [doi][doi]
56.
Gao Y , Wang C , Liu Z , Zhao B , Zhang X .
Clay mineralogy of the middle Mingshui Formation (upper Campanian to lower Maastrichtian) from the SKIn borehole in the Songliao Basin, NE China: Implications for palaeoclimate and provenance.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 162-170. [doi][doi]
55.
Deng C , He H , Pan Y , Zhu R .
Chronology of the terrestrial Upper Cretaceous in the Songliao Basin, northeast Asia.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 44-54. [doi][doi]
54.
Wu H , Zhang S , Jiang G , Hinnov L , Yang T , Li H , Wan X , Wang C .
Astrochronology of the Early Turonian-Early Campanian terrestrial succession in the Songliao Basin, northeastern China and its implication for long-period behavior of the Solar System.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 55-70. [doi][doi]
53.
Song Z , Qin Y , George S , Wang L , Guo J , Feng Z .
A biomarker study of depositional paleoenvironments and source inputs for the massive formation of Upper Cretaceous lacustrine source rocks in the Songliao Basin, China.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 137-151. [doi][doi]
52.
Zhao B , Wang C , Wang X , Feng Z .
Late Cretaceous (Campanian) provenance change in the Songliao Basin, NE China: Evidence from detrital zircon U-Pb ages from the Yaojia and Nenjiang Formations.
Palaeogeography, Palaeoclimatology, Palaeoecology. 2013 ; 385 83-94. [doi][doi]
2012
51.
Scott R , Wan X , Wang C , Huang Q .
Late Cretaceous chronostratigraphy (Turonian-Maastrichtian): SK1 core Songliao Basin, China.
Geoscience Frontiers. 2012 ; 3 (4): 357-367. [doi][doi]
50.
He H , Deng C , Wang P , Pan Y , Zhu R .
Toward age determination of the termination of the Cretaceous Normal Superchron.
Geochemistry, Geophysics, Geosystems. 2012 ; 13 (2): [doi][doi]
49.
Gao X , Wang P , Li D , Peng Q , Wang C , Ma H .
Petrologic characteristics and genesis of dolostone from the campanian of the SK-I well core in the Songliao Basin, China.
Geoscience Frontiers. 2012 ; 3 (5): 669-680. [doi][doi]
48.
Gang H , Wenjing Z , Qinghua H , others  .
Boundary stratotype of the Cretaceous Qingshankouan stage in the Songliao Basin.
Journal of Stratigraphy. 2012 ; 36 (3): 569-578.
47.
Xi D , Li S , Wan X , Jing X , Huang Q , Colin J , Wang Z , Si W .
Late Cretaceous biostratigraphy and paleoenvironmental reconstruction based on non-marine ostracodes from well SK1 (south), Songliao Basin, northeast China.
Hydrobiologia. 2012 ; 688 (1): 113-123. [doi][doi]
46.
Gang H , Wen-Jing Z , Qing-Hua H , Yuan-Lin M .
Geological and geochemical characteristics of anoxic event bed in the Qingshankou Formation of Late Cretaceous in Songliao Basin.
Geoscience. 2012 ; 26 (4): 741.
45.
Meiyan F , Shaonan Z , Xiaoqi D , Qiming L , Di X , Zhiliang Z .
Characteristics and petroleum geologic significances of clay rims in sandstones of Mingshui Formation, well Songke 1, Songliao Basin.
石油实验地质. 2012 ; 34 (6): 585-593.
44.
Cai J , Wu X , Gu S .
Anti-collapse drilling fluids for the Cretaceous scientific drilling in Songliao basin, China: A case study.
Applied Mechanics and Materials. 2012 ; 170-173 1196-1201. [doi][doi]
2011
43.
Lu H , Wang L , Song Z , Greenwood P , Yin Q .
Occurrence and distribution of series long-chain alkyl naphthalenes in Late Cretaceous sedimentary rocks of the Songliao Basin, China.
Geochemical Journal. 2011 ; 45 (2): 125-135. [doi][doi]
42.
Huo Q , Zeng H , Fu L , Ren Z .
The Advance of Delta lgR Method and Its Application in Songliao Basin.
Journal of Jilin University(Earth Science Edition). 2011 ; 41 (2): 586-591.
41.
Li J , Batten D , Zhang Y .
Palynological record from a composite core through Late Cretaceous-early Paleocene deposits in the Songliao Basin, Northeast China and its biostratigraphic implications.
Cretaceous Research. 2011 ; 32 (1): 1-12. [doi][doi]
40.
Wang L , Song Z , Yin Q , George S .
Paleosalinity significance of occurrence and distribution of methyltrimethyltridecyl chromans in the Upper Cretaceous Nenjiang Formation, Songliao Basin, China.
Organic Geochemistry. 2011 ; 42 (11): 1411-1419. [doi][doi]
39.
Qinghong M , Hengchun Z , Yule H , others  .
Optimum design and application of balling-preventing bit.
Coal Geology & Exploration. 2011 ; 39 (1): 71-73.
38.
Wu X , Guo J , Huang Y , Fu J .
Well logging proxy of the Late Cretaceous palaeoclimate change in Songliao Basin.
Journal of Palaeogeography. 2011 ; 13 103-110.
37.
Huang Q , Wu H , Wan X , He H , Deng C .
New progress of integrated chronostratigraphy of the Cretaceous in Songliao Basin.
Journal of Stratigraphy. 2011 ; 35 (3): 250-257.
36.
CHENG Ri-Hui ZS .
Centimeter-scale sedimentary sequence description of Upper Cretaceous-Lower Paleocene Mingshui Formation: Lithostratigraphy,facies and cyclostratigraphy, based on the scientific drilling (SK1) borehole in the Songliao Basin..
Earth Science Frontiers. 2011 ; 18 (6): 285-328.
35.
Guo-Dong W , Ri-Hui C , Pu-Jun W , Wei-Feng G , Cheng-Shan W , Yan-An L , Qing-Hua H .
Centimeter-scale sedimentary sequence description of Upper Cretaceous Sifangtai Formation: Lithostratigraphy, facies and cyclostratigraphy, based on the scientific drilling (SK1) borehole in the Songliao Basin..
Earth Science Frontiers. 2011 ; 18 (6): 263.
34.
Pu-Jun W , Wei-Feng G , Ri-Hui C , Guo-Dong W , He-Yong T , Xiao-Qiao M , Gan-Sheng Y , Zhong-Xin H .
Centimeter-scale sedimentary sequence description of Upper Cretaceous Nenjiang Formation (upper numbers 3-5): Lithostratigraphy, facies and cyclostratigraphy, based on the scientific drilling (SK1) borehole in the Songliao Basin..
Earth Science Frontiers. 2011 ; 18 (6): 218.
33.
Wei-Feng G , Pu-Jun W , Ri-Hui C , Guo-Dong W , Xiao-Qiao M , He-Yong T , Shu-Hua W , Mo-Lin L .
Centimeter-scale sedimentary sequence description of Upper Cretaceous Nenjiang Formation (lower numbers 1&2): Lithostratigraphy, facies and cyclostratigraphy, based on the scientific drilling (SK1) borehole in the Songliao Basin..
Earth Science Frontiers. 2011 ; 18 (6): 195.
32.
Xiao-Qiao M , Chao W , others  .
Attempt to the Late Cretaceous Ostracod Carapace Stable Isotope Measurement—Case Study on the SK1 Drill Cores.
Geoscience. 2011 ; 25 (3): 401.
31.
Xi D , Wan X , Feng Z , Li S , Feng Z , Jia J , Jing X , Si W .
Discovery of Late Cretaceous foraminifera in the Songliao Basin: Evidence from SK-1 and implications for identifying seawater incursions.
Chinese Science Bulletin. 2011 ; 56 (3): 253-256. [doi][doi]
2010
30.
Zhi-qiang F , Cheng-zao J , Xi-nong X , Shun Z , Zi-hui F , Cross T .
Tectonostratigraphic units and stratigraphic sequences of the nonmarine Songliao basin, northeast China.
Basin Research. 2010 ; 22 (1): 79-95. [doi][doi]
29.
高翔  , 王平康  , 李秋英  , 王成善  , 高远  .
The precise naming and mineralogical characteristics of ferruginous lacustrine dolomite in Well CCSD-SK.
Acta Petrologica Et Mineralogica. 2010 ; 29 (2): 213-218.
28.
Wang L , Song Z .
The distribution of methylated-2-methyltrimethyltride-cylchromans and geochemical implication in Nenjiang Formation of the Late Cretaceous from Songliao Basin.
Geochimica. 2010 ; 39 469-478.
27.
Youfeng G , Pujun W , Xuejiao Q , Guodong W .
Sedimentary facies and cyclostratigraphy of the Cretaceous first member of Nenjiang Formation in the Southeast uplift zone, Songliao Basin and its correlation with the CCSD-SK-I..
Acta Petrologica Sinica. 2010 ; 26 (1): 99-108.
26.
Ning W , Fu L , Huo Q .
Productivity of Paleo-Songliao lake during the late Cretaceous in well Songke-1, Songliao Basin.
Journal of Jilin University (Earth Science Edition). 2010 ; 40 (5): 1020-1026.
25.
Gu J , Huang Y , Wang C .
Mudstone lithofacies in the Cretaceous Qingshankou Formation of Well Sk I, Songliao Basin, Northeastern China.
China Mining Magazine. 2010 ; 19 161-165.
24.
Qiu J .
Geology: A trip to dinosaur time.
Nature. 2010 ; 467 (7312): 150-151. [doi][doi]
23.
Wang G , Cheng R , Wang P , Gao Y .
Coniacian seismites: Structure, sequence and volcanogenic origin of Qingshankou Formation in the Cretaceous Songliao Basin.
Acta Petrologica Sinica. 2010 ; 26 (1): 121-129.
2009
22.
Zhang L , Wang Y , Li S , Han J , Zhang X , Zhu Y , Wang G , Yang T .
High-resolution sequence stratigraphic characteristic and favorable hydrocarbon accumulation prediction of Sifangtai to Mingshui formation in the north of Songliao Basin.
Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology). 2009 ; 40 (6): 1679 – 1688.
21.
Wei-Feng G , Cheng-Shan W , Pu-Jun W , Xiao-Qiao M , Yan-An L , Ri-Hui C , Guo-Dong W .
Well site selecting, core section characteristics and distribution of the special lithological layers in CCSD-SK-In borehole, Songliao Basin..
Earth Science Frontiers. 2009 ; 16 (6): 104.
20.
Ri-Hui C , Guo-Dong W , Pu-Jun W , Wei-Feng G .
Uppermost Cretaceous sediments: Sedimentary microfacies and sedimentary environment evolution of Sifangtai Formation and Mingshui Formation in SK-Ⅰ (n)..
Earth Science Frontiers. 2009 ; 16 (6): 85.
19.
Wang C , Huang Y , Zhao X .
Unlocking a cretaceous geologic and geophysical puzzle: Scientific drilling of Songliao Basin in northeast China.
The Leading Edge. 2009 ; 28 (3): 340-344. [doi][doi]
18.
Wu H , Zhang S , Jiang G , Huang Q .
The floating astronomical time scale for the terrestrial Late Cretaceous Qingshankou Formation from the Songliao Basin of Northeast China and its stratigraphic and paleoclimate implications.
Earth and Planetary Science Letters. 2009 ; 278 (3-4): 308-323. [doi][doi]
17.
Zhong Y , Guo J , Wang L , Song Z .
Sedimentary organic matter characteristics and hydrocarbon potential of Qingshankou Formation of SK-1 drilling from Songliao Basin.
Geochimica. 2009 ; 38 487-497.
16.
Hui K , Yong-Jian H , Qing-Hua H , Wen-Jing Z , Lei X , Hua-Gong L , Xiao-Yun X .
Organic geochemical characteristics of anoxic levels in the Cretaceous Qingshankou Formation of Songliao Basin..
Earth Science Frontiers. 2009 ; 16 (6): 96.
15.
Gao Y , Wang P , Cheng R , Wang G , Wan X , Wu H , Wang S , LIANG W .
Description of Cretaceous Sedimentary Sequence of the First Member of the Qingshankou Formation Recovered by CCSD-SK-Is Borehole in Songliao Basin: Lithostratigraphy, Sedimentary Facies, and Cyclic Stratigraphy.
Dixue Qianyuan/ Earth Science Frontiers. 2009 ; 16 (2): 314-323. [doi][doi]
14.
FANG Wei WX .
Geochemical research on the Late Cretaceous strata of Well SK1 in Songliao Basin..
Earth Science Frontiers. 2009 ; 16 (5): 181-191.
13.
Cheng R , Wang G , Wang P , Gao Y , Ren Y , Wang C , Zhang S , Wang Q .
Description of Cretaceous Sedimentary Sequence of the Yaojia Formation Recovered by CCSD-SK-Is Borehole in Songliao Basin: Lithostratigraphy, Sedimentary Facies and Cyclic Stratigraphy.
Dixue Qianyuan/ Earth Science Frontiers. 2009 ; 16 (2): 140-151. [doi][doi]
12.
Wang P , Gao Y , Cheng R , Wang G , Wu H , Wan X , Yang G , Wang Z .
Description of Cretaceous Sedimentary Sequence of the Second and Third Member of the Qingshankou Formation Recovered by CCSD-SK-Is Borehole in Songliao Basin: Lithostratigraphy, Sedimentary Facies and Cyclic Stratigraphy.
Dixue Qianyuan/ Earth Science Frontiers. 2009 ; 16 (2): 288-313. [doi][doi]
11.
Wang G , Cheng R , Wang P , Gao Y , Wang C , Ren Y , Huang Q .
Description of Cretaceous Sedimentary Sequence of the Quantou Formation Recovered by CCSD-SK-Is Borehole in Songliao Basin: Lithostratigraphy, Sedimentary Facies and Cyclic Stratigraphy.
Dixue Qianyuan/ Earth Science Frontiers. 2009 ; 16 (2): 324-338. [doi][doi]
10.
Zhang Y , Bao L .
Cretaceous phytoplankton assemblages from songke core-1, North and South (SK-1, N and S) of Songliao Basin, Northeast China.
Acta Geologica Sinica (English Edition). 2009 ; 83 (5): 868-874. [doi][doi]
9.
Yuanliang L , Xiaoming W , Yongyi Z , Xiaofen L .
Anti-sloughing drilling fluid technology for bare hole in CCSD-SK1.
石油钻采工艺. 2009 ; 31 (4): 53-56.
8.
Wang PJ , Gao YF , Ren YG , Liu WZ , Zhang JG .
40 Ar /39Ar age and geochemical features of mugearite from the Qingshankou Formation; Significances for basin formation, hydrocarbon generation and petroleum accumulation of the Songliao Basin in Cretaceous.
Acta Petrologica Sinica. 2009 ; 25 (5): 1178 – 1190.
2008
7.
Yongyi Z , Wenshi W .
Coring Drilling technology in Well-1 (main shaft) of Songliao scientific drilling.
Exploration Engineering (Rock & Soil Drilling and Tunneling). 2008 ; 35 (9): 1-5.
6.
Huaichun W , Zhang S , Huang Q .
Establishment of floating astronomical time scale for the terrestrial Late Cretaceous Qingshankou Formation in the Songliao Basin of Northeast China.
Earth Science Frontiers. 2008 ; 15 (4): 159-169.
5.
Wang C , Feng Z , Wu H , Wang P , Kong F , Ren Y , Yang G , Wan X , Huang Y , Zhang S .
Preliminary achievement of the Chinese Cretaceous continental scientific drilling project-SK-I.
Acta Geologica Sinica (English Edition). 2008 ; 82 (1): 9-20.
4.
Huang Y , Wang C .
Scientific drilling of the terrestrial Cretaceous Songliao Basin.
Scientific Drilling. 2008 ; (6): 60-61. [doi][doi]
3.
Wang G , Cheng R , Wang P , Gao Y .
The forming mechanism of Dolostone of Nengjiang Formation in Songliao Basin - Example from CCSD-SK II.
Acta Geologica Sinica (English Edition). 2008 ; 82 (1): 48 – 54.
2.
Gao Y , Wang P , Wang C , Ren Y , Wang G , Liu W , Cheng R .
Well site selecting, core profile characteristics and distribution of the special lithology in CCSD-SK II.
Acta Geologica Sinica (English Edition). 2008 ; 82 (5): 669 – 675.
2007
1.
Rihui C , Guodong W , Pujun W , Youfeng G .
Microfacies of Deep-water Deposits and Forming Models of the Chinese Continental Scientific Drilling-SKII.
Acta Geologica Sinica - English Edition. 2007 ; 81 (6): 1026-1032. [doi][doi]

To top