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Parameter sensitivity analysis and optimization strategy research of enhanced geothermal system: A case study in Guide Basin, Northwestern China

机译:增强地热系统参数敏感性分析及优化策略研究 - 以中国西北地区导航盆地为例

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Guide Basin is a potential site for enhanced geothermal system development in China. The optimal strategy is needed to maximize heat production potential and provide support for the future stimulation design. In this work, sensitivity analysis of influence factors on water flow path, production water temperature, and flow impedance is performed on the basis of hydraulic-thermal model of Guide Basin. The factors include reservoir parameters (length, width, height, permeability, and temperature) and operation parameters (injection rate, injection temperature, open hole length, and height difference of open hole). Results indicate that the main affecting factors of water flow path are stimulated reservoir permeability and injection rate. The most significant influencing factor of flow impedance is stimulated reservoir permeability. Reservoir geometry has the greatest influence on production water temperature. The stable period of production water temperature is mainly affected by reservoir geometry and the height difference of open hole. In the theoretically optimal strategy, the electrical powers of 150, 400, and 450 kg/s are 12.3, 32.7-33.3, and 36.2-37.6 MW, respectively. In the practically optimal strategy, the maximum injection rate is 80 kg/s and electrical power ranges from 0 to 1.25 MW. For future applications, the shallow reservoirs with high temperature are expected. (C) 2020 Elsevier Ltd. All rights reserved.
机译:导游盆地是增强中国地热系统开发的潜在现场。需要最佳策略来最大限度地提高热量生产潜力,并为未来的刺激设计提供支持。在这项工作中,基于导向盆地的液压 - 热模型进行水流动路径,生产水温和流量阻抗对水流动路径,生产水温和流量阻抗的敏感性分析。这些因素包括储层参数(长度,宽度,高度,渗透率和温度)和操作参数(注射速率,注入温度,开孔长度和开放孔的高度差)。结果表明,水流动路径的主要影响因素受到灌溉储层渗透性和注射率。最显着的流动阻抗的因素是刺激储层渗透性。水库几何形状对生产水温影响最大。稳定的生产水温主要受储层几何形状的影响和开孔的高度差异。在理论上最佳的策略中,150,400和450kg / s的电力分别为12.3,32.7-33.3和36.2-37.6 mw。在实际上最佳的策略中,最大喷射速率为80kg / s,电源范围为0至1.25 mw。对于未来的应用,预期具有高温的浅水库。 (c)2020 elestvier有限公司保留所有权利。

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