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Pressure transient and rate decline analysis for hydraulic fractured vertical wells with finite conductivity in shale gas reservoirs

机译:页岩气储层有限导水力压裂垂直井压力瞬变和速率下降分析

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Producing gas from shale strata has become an increasingly important factor to secure energy over recent years for the considerable volume of natural gas stored. Unlike conventional gas reservoirs, gas transport in shale reservoirs is a complex process. In the organic nano pores, slippage effect, gas diffusion along the wall, viscous flow due to pressure gradient, and desorption from Kerogen coexist; while in the micro fractures, there exist viscous flow and slippage. Hydraulic fracturing is commonly used to enhance the recovery from these ultra-tight gas reservoirs. It is important to clearly understand the effect of known mechanisms on shale gas reservoir performance. This article presents the pressure transient analysis (PTA) and rate decline analysis (RDA) on the hydraulic fractured vertical wells with finite conductivity in shale gas reservoirs considering multiple flow mechanisms including desorption, diffusive flow, Darcy flow and stress sensitivity. The PTA and RDA models were established firstly. Then, the source function, Laplace transform, and the numerical discrete methods were employed to solve the mathematical model. At last the type curves were plotted and different flow regimes were identified. The sensitivity of adsorption coefficient, storage capacity ratio, inter-porosity flow coefficient, fracture conductivity, fracture skin factor, and stress sensitivity were analyzed. This work is important to understand the transient pressure and rate decline behaviors of hydraulic fractured vertical wells with finite conductivity in shale gas reservoirs.
机译:由于储存了大量的天然气,近年来,从页岩地层生产天然气已成为确保能源使用的越来越重要的因素。与常规气藏不同,页岩气藏中的天然气输送是一个复杂的过程。在有机纳米孔中,存在滑移效应,气体沿壁扩散,由于压力梯度而产生的粘性流以及由干酪根解吸的现象。而在微裂缝中,存在粘性流动和滑动。水力压裂通常用于增强从这些超致密气藏的采收率。重要的是要清楚地了解已知机制对页岩气储层性能的影响。本文介绍了页岩气储层中有限电导率的水力压裂垂直井的压力瞬态分析(PTA)和速率下降分析(RDA),其中考虑了多种解吸,扩散流,达西流和应力敏感性等流动机理。首先建立了PTA和RDA模型。然后,使用源函数,拉普拉斯变换和数值离散方法求解数学模型。最后绘制了类型曲线,并确定了不同的流态。分析了吸附系数的敏感性,储能比,孔间流动系数,断裂电导率,断裂表皮因子和应力敏感性。这项工作对于了解页岩气储层中电导率有限的水力压裂垂直井的瞬态压力和速率下降行为具有重要意义。

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