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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >The simulation of thermo-hydro-chemical coupled heat extraction process in fractured geothermal reservoir
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The simulation of thermo-hydro-chemical coupled heat extraction process in fractured geothermal reservoir

机译:骨折地热储层热水化学耦合热萃取过程的模拟

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Chemical reaction effect is a critical issue in the heat extraction process of a fractured geothermal reservoir. In this study, the thermo-hydro-chemical coupled condition is simulated based on a unified pipe-network method (UPM) by considering interconnected fracture networks embedded in the rock mass. The chemical reaction kinetics of silica precipitation and dissolution is incorporated to capture and examine the effects of the silica water interaction on the evolution of fracture apertures. The chemical influenced heat transfer between solid and fluid phases in the fractured porous media is characterized by a local thermal non-equilibrium (LTNE) model introduced based on two energy balance equations. A pipe equivalent technique is used to discretize the multiphysical coupled equations and unify the fracture-matrix information at the interface through the superposition principle in the UPM framework. Convergence tests are performed to verify the proposed model with one large fracture embedded in a doublet system for geothermal development. Fracture networks are then introduced in a case study where the influences of different injection temperature, saturation condition, injection pressure differential and initial fracture aperture on the silica reaction related alteration of fracture apertures as well as the heat production are analyzed.
机译:化学反应效应是裂缝地热储层的散热过程中的临界问题。在该研究中,通过考虑嵌入在岩体中的互连的裂缝网络,基于统一的管网方法(UPM)来模拟热水化学耦合状态。掺入二氧化硅沉淀和溶解的化学反应动力学,以捕获和检查二氧化硅水相互作用对骨折孔的演变的影响。裂缝多孔介质中固体和流体相之间的化学影响的热传递通过基于两个能量平衡方程引入的局部热非平衡(LTNE)模型。管道等效技术用于将多体耦合方程离散化,并通过UPM框架中的叠加原理统一界面处的裂缝矩阵信息。进行收敛试验以验证所提出的模型,其中一个大骨折嵌入在双层系统中,用于地热发育。然后,分析了骨折网络的情况下,分析了不同喷射温度,饱和条件,注射压力差异和初始断裂孔对裂缝孔的二氧化硅反应的改变以及热量产生的影响。

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