Numerical simulation of gas and water flow mechanism in hydraulically fractured shale gas reservoirs
文献类型:期刊论文
作者 | Shen WJ(沈伟军)![]() |
刊名 | JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING (影响因子:2.718 [JCR-2016], 2.81 [5-Year])
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出版日期 | 2016 |
卷号 | 35期号:A页码:726-735 |
通讯作者邮箱 | wjshen763@imech.ac.cn |
关键词 | Shale gas Hydraulic fractures Reservoir properties Water retention Gas rate |
ISSN号 | 1875-5100 |
产权排序 | [Shen, Weijun] Chinese Acad Sci, Inst Mech, Key Lab Mech Fluid Solid Coupling Syst, Beijing 100190, Peoples R China; [Shen, Weijun] Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA 94720 USA; [Shen, Weijun] Chinese Acad Sci, Inst Porous Flow & Fluid Mech, Langfang 065007, Hebei, Peoples R China; [Xu, Yanmei; Li, Xizhe; Huang, Weigang; Gu, Jiangrui] PetroChina Res Inst Petr Explorat & Dev, Langfang Branch, Langfang 065007, Hebei, Peoples R China |
通讯作者 | Shen WJ, Key Laboratory for Mechanics in Fluid Solid Coupling Systems, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China |
中文摘要 |
The problem of the fracturing water remaining in hydraulically fractured shale gas reservoirs has become one of the major concerns in terms of gas productivity and operating costs. The fracturing water retention is influenced by reservoir properties and production parameters, such as matrix porosity and permeability, fracture porosity and permeability, Langmuir pressure and volume, diffusion coefficient, shut-in time, drawdowns and injection rate. In this study, a horizontal well with six-stage hydraulicfracturing treatment was constructed to understand the water retention and gas production performance in shale gas reservoirs. Gas diffusion, gas adsorption/desorption and Darcy flow as well as non-Darcy flow were considered in this model. The process of water retention and gas production performance was analyzed, and the effects of reservoir and production properties on this problem were performed. The results show that only 34% of the fracturing water can flow back to the surface, most of which remains in shale formations to interfere with gas production. The increasing of matrix porosity, fracture porosity, Langmuir pressure and drawdowns will reduce water retention while water retention in shale matrix will increase with the increasing of matrix permeability and Langmuir volume, and consequently impact gas production. But the trapped water and gas rate increase with the higher fracture permeability. Furthermore, the diffusion coefficient, shut-in time and injection rate do not have a significant effect on water retention and gas productivity. These results can provide insights into a better understanding of gas and water flow in the shale gas reservoirs and the effects of reservoir and production parameters onwater retention and gas production. |
学科主题 | 渗流力学,油气田开发 |
分类号 | 二类/Q2 |
类目[WOS] | Energy & Fuels ; Engineering, Chemical |
研究领域[WOS] | Energy & Fuels ; Engineering |
关键词[WOS] | Shale gas; Hydraulic fractures; Reservoir properties; Water retention; Gas rate |
收录类别 | SCI ; EI |
原文出处 | http://www.sciencedirect.com/science/article/pii/S1875510016306394 |
语种 | 英语 |
WOS记录号 | WOS:000388543900066 |
源URL | [http://dspace.imech.ac.cn/handle/311007/59789] ![]() |
专题 | 力学研究所_流固耦合系统力学重点实验室(2012-) |
推荐引用方式 GB/T 7714 | Shen WJ,Xu YM,Li XZ,et al. Numerical simulation of gas and water flow mechanism in hydraulically fractured shale gas reservoirs[J]. JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING (影响因子:2.718 [JCR-2016], 2.81 [5-Year]),2016,35(A):726-735. |
APA | Shen WJ,Xu YM,Li XZ,Huang WG,&Gu JR.(2016).Numerical simulation of gas and water flow mechanism in hydraulically fractured shale gas reservoirs.JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING (影响因子:2.718 [JCR-2016], 2.81 [5-Year]),35(A),726-735. |
MLA | Shen WJ,et al."Numerical simulation of gas and water flow mechanism in hydraulically fractured shale gas reservoirs".JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING (影响因子:2.718 [JCR-2016], 2.81 [5-Year]) 35.A(2016):726-735. |
入库方式: OAI收割
来源:力学研究所
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