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首页> 外文期刊>Journal of Petroleum Science & Engineering >Effect of distinguishing apparent permeability on flowing gas composition, composition change and composition derivative in tight- and shale-gas reservoir
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Effect of distinguishing apparent permeability on flowing gas composition, composition change and composition derivative in tight- and shale-gas reservoir

机译:表观渗透率的区分对致密页岩气储层流动气体组成,组成变化和组成导数的影响

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摘要

Multi-flow mechanisms co-exist in tight- and shale-gas reservoirs such as slip flow, transition flow, and free molecular flow, thus apparent permeability is used to correct the flow deviation caused by the traditional Darcy's law. Strictly speaking, apparent permeability is also different for different gas components, which we call as multi-component permeability (MCP). In this paper, we use a compositional model incorporating extended Langmuir isotherm and slippage corrected MCP to study the effect of distinguishing apparent permeability for different components on the curves of wellhead flowing composition (WHFC) and its derivative. A fully implicit iterative numerical solution based on PEBI (Perpendicular Bisection) gridding generates 12 simulations to investigate WHFC, composition change (dc) and composition derivative (dc') with and without using MCP for a fractured vertical well in the reservoirs with different adsorption capacities. We find that MCP is an important factor for CH4 component variance, especially CH4 component variance is solely caused by MCP for reservoirs without adsorption gas, which shows that MCP can improve interpretation accuracy based on the measured composition. Another finding is that the behavior of WHFC is obviously different between reservoirs with and without adsorbed gas, which can be used to determine whether reservoirs contain adsorption gas or not. (C) 2015 Elsevier B.V. All rights reserved.
机译:在致密和页岩气储层中同时存在多种流动机制,例如滑流,过渡流和自由分子流,因此表观渗透率可用于校正由传统达西定律引起的流量偏差。严格来说,表观渗透率对于不同的气体组分也有所不同,我们称之为多组分渗透率(MCP)。在本文中,我们使用结合了扩展的Langmuir等温线和滑移校正的MCP的成分模型来研究区分不同组分的表观渗透率对井口流动成分(WHFC)及其导数曲线的影响。基于PEBI(垂直二等分)网格的完全隐式迭代数值解可生成12个模拟,以研究WHFC,组分变化(dc)和组分导数(dc')在有不同吸附能力的储层中是否使用MCP压裂垂直井。我们发现,MCP是影响CH4组分变化的重要因素,尤其是CH4组分变化完全是由MCP引起的,不含吸附气的储层,这表明MCP可以根据测得的成分提高解释精度。另一个发现是,在有和没有吸附气体的储层之间,WHFC的行为明显不同,这可以用来确定储层中是否包含吸附气体。 (C)2015 Elsevier B.V.保留所有权利。

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