首页> 外文期刊>Journal of Petroleum Science & Engineering >Transient temperature behavior and analysis of single-phase liquid-water geothermal reservoirs during drawdown and buildup tests: Part I. Theory, new analytical and approximate solutions
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Transient temperature behavior and analysis of single-phase liquid-water geothermal reservoirs during drawdown and buildup tests: Part I. Theory, new analytical and approximate solutions

机译:单相液态水地热储层在降落和增高测试过程中的瞬态温度行为和分析:第一部分:理论,新的解析和近似解

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This work focuses on transient temperature responses of single-phase liquid-water geothermal reservoirs to constant-rate drawdown and buildup tests. New analytical and approximate solutions are presented for predicting drawdown and buildup sand-face transient temperature behaviors of a fully penetrating vertical well in an infinite-acting homogeneous reservoirs. The solutions account for the effects of Joule-Thomson (J-T) heating/cooling, transient adiabatic fluid expansion/compression, convection, and conduction. The solutions are compared and verified with the solutions from three different non-isothermal simulators that solve the mass and thermal energy balance equations rigorously and simultaneously. The impacts of various parameters such as wellbore storage, skin zone near the wellbore, thermal conductivity, and outer reservoir boundary conditions on the sand-face temperature responses are also investigated and discussed. Drawdown and buildup sand-face temperature data are shown to exhibit three infinite-acting radial flow (IARF) periods (represented by semi-log straight-line equations); early-time IARF reflecting the adiabatic expansion/compression effects in the skin zone if it exists, intermediate-time IARF reflecting the J-T effect in the skin zone, and late-time IARF reflecting the J-T effect in the non-skin zone. In an accompanying paper (Part II), we present an interpretation and analysis methodology based on the analytical solutions derived here for parameter estimation from temperature transient data jointly with pressure transient data. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作着眼于单相液态水地热储层对恒速降压和增产试验的瞬态温度响应。提出了新的分析和近似解决方案,用于预测无限作用均质油藏中完全渗透的垂直井的沉降和积聚砂面瞬态温度行为。该解决方案考虑了焦耳-汤姆森(J-T)加热/冷却,瞬态绝热流体膨胀/压缩,对流和传导的影响。将这些解决方案与来自三种不同的非等温模拟器的解决方案进行比较和验证,这些模拟器分别同时严格地解决了质量和热能平衡方程。还研究和讨论了诸如井眼存储,井眼附近的表皮区,导热系数和储层外部边界条件等各种参数对砂面温度响应的影响。沉降和积聚的沙面温度数据显示出三个无限作用的径向流(IARF)周期(以半对数直线方程表示)。早期IARF反映了皮肤区域中的绝热膨胀/压缩效应(如果存在),中期IARF反映了皮肤区域中的J-T效应,而后期IARF反映了皮肤区域中的J-T效应。在随附的论文(第二部分)中,我们基于在此导出的用于从温度瞬态数据与压力瞬态数据一起进行参数估计的解析解决方案,介绍了一种解释和分析方法。 (C)2016 Elsevier B.V.保留所有权利。

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