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周雷

(重慶大學百人計劃特評研究員)

鎖定
周雷,男,漢族,重慶人,博士重慶大學百人計劃特評研究員,重慶大學資源與安全學院博士生導師。
中文名
周雷
畢業院校
德國克勞斯塔爾工業大學
學位/學歷
博士
職    業
教師
專業方向
石油天然氣工程
職    務
博士生導師
職    稱
研究員

周雷人物經歷

2009年9月-2014年3月,德國克勞斯塔爾工業大學(TU Clausthal),石油天然氣工程專業,博士學位
2007年10月-2009年8月,德國克勞斯塔爾工業大學(TU Clausthal),岩土環境工程專業,碩士學位
2005年10月-2007年9月,德國克勞斯塔爾工業大學(TU Clausthal),岩土環境工程專業,學士學位
2003年9月-2007年7月,四川大學,環境工程專業, 學士學位 [1] 

周雷研究方向

研究方向涉及到石油與天然氣工程、深部地熱開發、二氧化碳地下封存、能源地下儲存和岩土工程專業領域和岩石力學、流體和滲流力學、斷裂力學、岩鹽力學、孔隙介質多相流理論、流固耦合理論、數值方法、應用數學等多個綜合學科。 [1] 

周雷學術成果

周雷研究項目

1. 國家自然科學青年基金(51504043):結合支撐劑變形嵌入的緻密氣水力壓裂多場耦合模擬研究。(課題承擔人)
2. 德國石油天然氣和煤炭科學聯合會項目(DGMK 680):I. Numerical investigations of fracture propagation in tight gas reservoirs using the FDM-code FLAC3D – Feasibility study; II. Investigation and optimization of multiple fractures; III. Proppant transport in fluid and closure process; IV. Simulation study on the hydraulic stimulation in shale gas reservoir based on multiphysics and multiphase flow. (課題主要承擔人)
3. 德國聯邦環保部項目(0325662F):Micro-seismic Activities of Geothermal Systems - From Single System to Large-Field Using(課題主要承擔人) [1] 

周雷發表專著

1.Zhou Lei. New numerical approaches to model hydraulic fracturing in tight reservoirs with consideration of hydro-mechanical coupling effects. Cuvillier Verlag Goettingen, ISBN 978 3 95404 656 0 [1] 

周雷發表論文

1.Zhou Lei, Chen Junchao, Gou Yang, Feng Wentao. Numerical investigation of the time-dependent and the proppant dominated stress shadow effects in a transverse multiple fracture system and optimization. Energies. 2017;10:83.
2. Zhou Lei, Su Xiaopeng, Hou Zhengmeng, Lu Yiyu, Gou Yang. Numerical investigation of the hydromechanical response of a natural fracture during fluid injection using an efficient sequential coupling model. Environ Earth Sci. 2016; 75:1263.
3.Zhou Lei ,Gou Yang ,Hou Zhengmeng,Were Patrick. Numerical modeling and investigation of fracture propagation with arbitrary orientation through fluid injection in tight gas reservoirs with combined XFEM and FVM,Environmental Earth Sciences,2015,73(10):5801-5813.
4.Zhou Lei,Hou MZ,Gou Y,Li MT. Numerical investigation of a low-efficient hydraulic fracturing operation in a tight gas reservoir in the North German Basin,Journal of Petroleum Science and Engineering,2014,120:119-129。
5.Zhou Lei ,Hou MZ. A new numerical 3D-model for simulation of hydraulic fracturing in consideration of hydro-mechanical coupling effects,International Journal of Rock Mechanics and Mining Sciences,2013,60:370-380。
6. Zhou Lei,Guo Jianchun. 3D modeling of hydraulic fracturing in tight gas reservoirs by using of FLAC3D and validation through comparison with FracPro,1st International Conference on Energy and Environmental Protection, ICEEP 2012,1293-1299,Hohhot,2012.6.23-2012.6.24。
7. Feng Wengtao, Were Patrick, Li Mengting, Hou Zhengmeng, Zhou Lei*. Numerical study on hydraulic fracturing in tight gas formation in consideration of thermal effects and THM coupled processes, J PETROL SCI ENG, 2016, 146, 241-254.
8. 彭輝華,周雷*,盧義玉. 甲烷氣通過頁岩粗糙裂隙特性的實驗研究. 岩石力學與工程學報. 2016, 35(supp 2):3644-3652.
9. Gou Yang,Zhou Lei*,Zhao Xing,Hou Zhengmeng,Were Patrick. Numerical study on hydraulic fracturing in different types of georeservoirs with consideration of (HM)-M-2-coupled leak-off effects,Environmental Earth Sciences,2015,73(10):6019-6034。
10. Feng Wentao ,Hou, Zhengmeng,Zhou Lei*,Li Mengting,Were Patrick. Semi-analytical and numerical investigation of hydraulic fracturing and geological barrier integrity based on a case study,Environmental Earth Sciences,2015,73(10):5825-5842。
11. Hou Zhengmeng,Zhou Lei*. Numerical Investigation and Optimization of Multiple Fractures in Tight Gas Reservoirs,Oil Gas: European Magazine,2013,39(3):129-135。
12. Li Bo, Liang Yunpei, Li Xiaosen, Zhou Lei. A pilot-scale study of gas production from hydrate deposits with two-spot horizontal well system. Applied Energy. 2016, 176: 12-21.
13. 謝和平, 侯正猛, 高峯, 周雷, 高亞楠. 煤礦井下抽水蓄能發電新技術:原理、現狀及展望. 煤炭學報. 2015;5: 965-972.
14. Gou Yang, Hou Zhengmeng, Liu Hejuan, Zhou Lei, Were Patrick. Numerical simulation of carbon dioxide injection for enhanced gas recovery (CO2-EGR) in Altmark natural gas field. Acta Geotechnica. 2014, 9(1): 45-58. [1] 
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