Seepage model and productivity prediction of fractured wells in shale gas reservoirs with discontinuous micro-fractures
-
摘要: 根據頁巖氣儲層納微米孔隙和微裂縫結構特征,建立含微裂縫表面層基質-裂縫雙重介質球形模型.綜合考慮擴散和滑移對頁巖氣產能的影響,利用Langmuir等溫吸附方程描述頁巖氣的解吸吸附,通過Laplace變換和Stehfest數值反演,得到頁巖氣藏壓裂井定產和定壓條件下的井底流壓和產量的解析解,并進行頁巖氣藏壓裂井產能預測及影響因素分析.結果表明:微裂縫是頁巖氣基質微觀孔隙和宏觀裂縫運移的主要滲流通道;微裂縫的滲透率越大和長度越長,頁巖氣井產量越大.Abstract: A dual-porosity medium with micro-fractured spherical matrix blocks was achieved on the basis of the structure characteristics of nano-micro pores and micro-fractures in shale gas reservoirs. The Laplace space solution of the dimensionless bottom hole pressure of fractured well production was obtained in consideration of the seepage,diffusion and desorption mechanism of shale gas and applying the Laplace transform and the Stehfest numerical inversion. Type curves of dimensionless production were plotted and the influencing factors of the type curves were identified. The results show that the matrix surface improves gas transfer from the matrix medium to the fracture network due to matrix micro fractures. Increasing the permeability and length of micro fractures accelerate the productivity significantly.
-
Key words:
- shale gas /
- fractures /
- seepage /
- mathematical models /
- productivity
-

計量
- 文章訪問數: 330
- HTML全文瀏覽量: 116
- PDF下載量: 7
- 被引次數: 0