世界地质    2019 38 (3): 759-766   ISSN: 1004-5589  CN: 22-1111/P  

油页岩原位开采生烃过程数值模拟及井位讨论
孙旭, 薛林福, 王英英
吉林大学地球科学学院, 长春 130061
收稿日期 2019-03-20  修回日期 2019-05-05  网络版发布日期 null
参考文献  [1] 钱家麟, 尹亮. 油页岩:石油的补充能源[M].北京:中国石化出版社, 2011:1-150. QIAN Jia-lin, YIN Liang. Oil shale:supplementary energy for oil[M]. Beijing:China Petrochemical Press, 2011:1-150
[2] 刘招君, 董清水, 叶松青, 等. 中国油页岩资源现状[J]. 吉林大学学报(地球科学版), 2006, 36(6):869-876. LIU Zhao-jun, DONG Qing-shui, YE Song-qing, et al. The situation of oil shale resources in China[J]. Journal of Jilin University(Earth Science Edition), 2006, 36(6):869-876.
[3] 李术元, 何继来, 侯吉礼, 等. 世界油页岩勘探开发加工利用近况:并记2014年国外两次油页岩国际会议[J]. 中外能源, 2015, 20(1):25-32. LI Shu-yuan, HE Ji-lai, HOU Ji-li, et al. Current status of the world's exploration and utilization of oil shale:a review of two oil shale international symposiums held in 2014[J]. Sino-Global Energy, 2015, 20(1):25-32.
[4] 刘德勋, 王红岩, 郑德温, 等. 世界油页岩原位开采技术进展[J]. 天然气工业, 2009, 29(5):128-132,148. LIU De-xun, WANG Hong-yan, ZHENG De-wen, et al. World progress of oil shale in-situ exploitation methods[J]. Natural Gas Industry, 2009, 29(5):128-132,148.
[5] 赵金岷. 油页岩原位竖井压裂化学干馏提取页岩油气的方法及工艺[P]. 中国,发明专利,CN103232852B. 2013. ZHAO Jin-min. Method and process for extracting shale oil and gas by oil shale in-situ shaft fracturing chemical dry distillation[P]. China,Patent,CN103232852B. 2013.
[6] 宋青磊, 刘招君, 胡菲, 等. 松辽盆地扶余-长春岭地区上白垩统青山口组油页岩品质特征及意义[J]. 世界地质, 2016, 35(2):487-494. SONG Qing-lei, LIU Zhao-jun, HU Fei, et al. Oil shale characteristics of Upper Cretaceous Qiangshankou Formation in Fuyu-Changchunling area of Songliao Basin and its significance[J]. Global Geology, 2016, 35(2):487-494.
[7] Braun R L, Burnham A K. Mathematical model of oil generation, degradation, and expulsion[J]. Energy Fuels, 1990, 4(2):132-146.
[8] 姜鹏飞, 孙友宏, 郭威, 等. 压裂-注氮原位裂解油页岩加热工艺及传热模拟[J]. 东北大学学报(自然科学版), 2015, 36(9):1353-1357,1368. JIANG Peng-fei, SUN You-hong, GUO Wei, et al. Heating technology and heat transfer simulation for oil shale of in-situ pyrolysis by fracturing and nitrogen injection[J]. Journal of Northeastern University(Natural Science), 2015, 36(9):1353-1357,1368.
[9] 薛晋霞. 油页岩物理力学特性实验及其原位开采非稳态热传导数学模型研究:硕士学位论文[D]. 太原:太原理工大学, 2007. XUE Jin-xia. The experiment research on physical & mechanicical characteristics of oil shale and its unsteady heat conduction mathematical model of in-situ processing:master's degree thesis[D]. Taiyuan:Taiyuan University of Technology, 2007.
[10] 雷光伦, 李姿, 姚传进, 等. 油页岩注蒸汽原位开采数值模拟[J]. 中国石油大学学报(自然科学版), 2017, 41(2):100-107. LEI Guang-lun, LI Zi, YAO Chuan-jin, et al. Numerical simulation on in-situ upgrading of oil shale via steam injection[J]. Journal of China University of Petroleum(Edition of Natural Science), 2017, 41(2):100-107.
[11] Symington W A, Olgaard D L, Otten G A, et al. Exxon Mobil's electrofrac process for in-situ oil shale conversion[J]. Oil Shale:A Solution to the Liquid Fuel Dilemma, 2010, 1032:185-216.
[12] Lee K J, Moridis G, A Ehlig-Economides C. Numerical simulation of diverse thermal in-situ upgrading processes for the hydrocarbon production from kerogen in oil shale reservoirs[J].Energy Exploration & Exploitation, 2017, 35(3):315-337.
[13] Fan Y, Durlofsky L J, Tchelepi H A. Numerical simulation of the in-situ upgrading of oil shale[J]. SPE Journal, 2010, 15(2):368-381.
[14] 王健. 油页岩原位开采温度场的数值模拟:硕士学位论文[D]. 长春:吉林大学, 2011. WANG Jian. Numerical simulation of temperature field for the in-situ upgrading of oil shale:master's degree thesis[D]. Changchun:Jilin University, 2011.
[15] 赵阳升,冯增朝,杨栋, 等. 对流加热油页岩开采油气的方法[P]. 中国,发明专利,CN1676870.2010. ZHAO Yang-sheng, FENG Zeng-zhao, YANG Dong, et al. Method for convective heating oil shale to produce oil and gas[P]. China,Patent,CN1676870.2010.
[16] 王磊, 杨栋, 康志勤, 等. 注蒸汽原位开采油页岩热解温度确定及可行性分析[J]. 科学技术与工程, 2015, 15(29):109-113. WANG Lei, YANG Dong, KANG Zhi-qin, et al. Experimental study on feasibility and proper temperature in-situ mining based overheat steam heating oil shale[J]. Science Technology and Engineering, 2015, 15(29):109-113.
[17] 康志勤. 油页岩热解特性及原位注热开采油气的模拟研究:博士学位论文[D]. 太原:太原理工大学, 2008. KANG Zhi-qin. The pyrolysis characteristics and in-situ hot drive simulation research that exploit oil-gas of oil shale:doctor's degree thesis[D]. Taiyuan:Taiyuan University of Technology, 2008.
[18] Han H, Zhong N N, Huang C X, et al. Numerical simulation of in situ conversion of continental oil shale in Northeast China[J]. Oil Shale, 2016, 33(1):45-57.
[19] Wellington S L, Berchenko I E, De Rouffignac E P, et al. In-situ thermal processing of an oil shale formation to produce a condensate[P]. United States,Patent, US20020131235.2002.
[20] Braun R L, Burnham A K. PMOD:a flexible model of oil and gas generation, cracking, and expulsion[J].Organic Geochemistry, 1992, 19(1/3):161-172.
[21] 李宝毅, 罗威, 刘天琳, 等. 油页岩低温干馏不同阶段的产物特征[J]. 世界地质, 2015, 34(3):870-878. LI Bao-yi, LUO Wei, LIU Tian-lin, et al. Characteristics of grading low temperature carbonizationproducts of oil shale[J]. Global Geology, 2015, 34(3):870-878.
[22] 马建雄, 薛林福, 赵金岷, 等. 油页岩原位裂解开采温度场数值模拟与设计方案优化[J]. 科学技术与工程, 2019, 19(5):94-103. MA Jian-xiong, XUE Lin-fu, ZHAO Jin-min, et al. Numerical simulation and design optimization of temperature field of oil shale in-situ pyrolysis and exploitation[J]. Science Technology and Engineering, 2019, 19(5):94-103.
[23] 李玉博, 薛林福, 马建雄. 油页岩原位开采过程中孔隙度和渗透率变化数值模拟[J]. 科学技术与工程, 2018, 18(34):43-50. LI Yu-bo, XUE Lin-fu, MA Jian-xiong. Numerical simulation of the changes of porosity and permeability in in-situ pyrolysis of oil shale[J]. Science Technology and Engineering, 2018, 18(34):43-50.
[24] 李强. 油页岩原位热裂解温度场数值模拟及实验研究:博士学位论文[D]. 长春:吉林大学, 2012. LI Qiang. Simulation of temperature field and experiment of in-situ oil shale pyrolysis:doctor's degree thesis[D]. Changchun:Jilin University, 2012.
[25] 孔朝阳, 鲁玺, 董秀成, 等. 基于能源投入回报方法的我国页岩油生产效率评价研究:以抚顺页岩油为例[J]. 生态经济, 2018, 34(9):94-98. KONG Chao-yang, LU Xi, DONG Xiu-cheng, et al. Estimation of the production efficiency of China's shale oil production:a case study of Fushun[J]. Ecological Economy, 2018, 34(9):94-98.

通讯作者: 薛林福(1962),男,博士生导师,主要从事层序地层学、盆地模拟及三维地质建模方面研究.E-mail:190780877@qq.com