首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >MATHEMATICAL MODELING OF THE GEOTHERMAL RESERVOIR WITH MULTI-BOREHOLE CIRCULATING SYSTEM
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MATHEMATICAL MODELING OF THE GEOTHERMAL RESERVOIR WITH MULTI-BOREHOLE CIRCULATING SYSTEM

机译:多孔循环系统在地热储层数学模拟中的应用

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A three-dimensional model (FRACSIM-3D) developed in Tohoku University for numerical simulation of heat and fluid flow within the fractured media is used in the analysis of geothermal reservoir performance. The model effectively simulates two main stages of the geothermal reservoir exploitation, namely, (ⅰ ) hydraulic stimulation of the existing natural fractures within the Hot Dry Rock (HDR) reservoir and (ⅱ) forced convection through the fractured media when the filtrating fluid extracts the heat from the hot rock and delivers it to the production well. Since the heat accumulated by the fluid within the system of injection boreholes can constitute a substantial fraction of the total thermal output of the geothermal power plant, the model of heat and mass transfer in the fractured media at the heat extraction stage should be coupled with the equations which describe the heat transport in the system of injection and production wells. Mathematical modeling of heat flow within the multi-borehole circulating system is proposed in this study. On the basis of this model the major parameters that affect the thermal productivity of the geothermal power plant are analyzed. The effective regimes of the fluid circulation and optimal geometry of the multi-borehole system are proposed.
机译:东北大学开发的三维模型(FRACSIM-3D)用于对裂隙介质内的热和流体流动进行数值模拟,用于分析地热储层的性能。该模型有效地模拟了地热油藏开发的两个主要阶段,即(ⅰ)对干热岩(HDR)油藏内现有天然裂缝的水力压裂,以及(ⅱ)当过滤流体提取油藏时强迫通过对流介质的对流。来自热岩石的热量并将其传递到生产井。由于注入井眼系统中的流体积聚的热量可能构成地热发电厂总热量输出的很大一部分,因此在采热阶段,裂隙介质中的传热和传质模型应与热力耦合。这些方程描述了注入井和生产井系统中的热传递。本研究提出了多孔循环系统内热流的数学模型。在此模型的基础上,分析了影响地热发电厂热生产率的主要参数。提出了流体循环的有效方式和多井眼系统的最佳几何形状。

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