Integrated reservoir flow and geomechanical model to generate type curves for pressure transient responses in shale gas reservoirs

Citations

SCOPUS

2

초록

Although a number of researches for modeling of shale gas reservoirs have been conducted, there is a definite lack of literature that concentrates on the geomechanical effects. To account for geomechanical effects with stress dependent porosity and permeability, linear elastic geomechanical model and two stress dependent correlations were applied to the reservoir model. Through coupling of flow and geomechanical models for well/reservoir/hydraulic fracture combinations, new approach has been established to predict the pressure transient behavior and to generate type curves. Geomechanical mechanisms influence production from 1 to 5 % in shale gas reservoir. This study provides insight into the characteristics of a hydraulically fractured horizontal well and the newly developed type curves yield more unique and accurate results.

키워드

Exponential correlationGeomechanicsPower law correlationShale gasType curvesGeologic modelsGeomechanicsHorizontal wellsOffshore gas fieldsPetroleum reservoir engineeringPetroleum reservoirsRoad constructionShale gasExponential correlationFractured horizontal wellsGeomechanical modelPower-law correlationsPressure transientReservoir modelingShale gas reservoirsType curvesShale
제목
Integrated reservoir flow and geomechanical model to generate type curves for pressure transient responses in shale gas reservoirs
저자
Kim, T.H.Park, K.Choi, J.Lee, Kun Sang
발행일
2015-06
유형
Conference Paper
저널명
Proceedings of the International Offshore and Polar Engineering Conference
2015-January
페이지
6 ~ 13