首页> 外文会议>Workshop on Geothermal Reservoir Engineering >THERMAL SINGLE-WELL INJECTION-WITHDRAWAL TRACER TESTS FOR DETERMINING FRACTURE-MATRIX HEAT TRANSFER AREA
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THERMAL SINGLE-WELL INJECTION-WITHDRAWAL TRACER TESTS FOR DETERMINING FRACTURE-MATRIX HEAT TRANSFER AREA

机译:热单孔注射抽出跟踪示踪试验,用于确定骨折 - 矩阵传热区域

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Single-well injection-withdrawal (SWIW) tracer tests involve injection of traced fluid and subsequent tracer recovery from the same well, usually with some quiescent time between the injection and withdrawal periods. SWIW are insensitive to variations in advective processes that arise from formation heterogeneities, because upon withdrawal, fluid parcels tend to retrace the paths taken during injection. However, SWIW are sensitive to diffusive processes, such as diffusive exchange of conservative or reactive solutes between fractures and rock matrix. This paper focuses on SWIW tests in which temperature itself is used as a tracer. Numerical simulations demonstrate the sensitivity of temperature returns to fracture-matrix interaction. We consider thermal SWIW response to the two primary reservoir improvements targeted with stimulation, (1) making additional fractures accessible to injected fluids, and (2) increasing the aperture and permeability of pre-existing fractures. It is found that temperature returns in SWIW tests are insensitive to (2), while providing a strong signal of more rapid temperature recovery during the withdrawal phase for (1).
机译:单井注射 - 取出(SWIW)示踪剂试验涉及从相同的井注射跟踪的流体和随后的示踪剂回收,通常在注射和戒断时段之间存在一些静止的时间。 SWIW对来自形成异质性产生的平均过程的变化不敏感,因为在取出时,流体包裹倾向于追溯在注射期间采取的路径。然而,SWIW对扩散过程敏感,例如裂缝和岩石基质之间的保守或反应性溶质的漫射交换。本文侧重于SWIW测试,其中温度本身用作示踪剂。数值模拟证明了温度恢复到裂缝矩阵相互作用的敏感性。我们考虑热的SWIW对刺激的两个初级储层改善的响应,(1)使额外的骨折可获得注射的流体,(2)增加预先存在的骨折的孔径和渗透性。结果发现,SWIW试验中的温度返回对(2)不敏感,同时在取出(1)中的提取相期间提供更快的温度恢复的强信号。

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