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Performance evaluation of enhanced geothermal system (EGS): Surrogate models, sensitivity study and ranking key parameters

机译:增强地热系统(EGS)的性能评估:替代模型,敏感性研究和关键参数排名

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Designing an efficient system to extract heat from an enhanced geothermal system (EGS) requires proper understanding of the behavior of the reservoir over a long period. Five key parameters namely well spacing, fracture spacing, well inclination angle, injection temperature and injection rate are considered in this study for a doublet well system. To study and evaluate the performance of an EGS, second order surrogate models for 'produced water temperature', at certain time intervals are developed as a function of these five factors. The in-situ properties of a candidate reservoir for designing the simulations are taken from the FORGE site, Utah. Simulations are designed using 'Box-Behnken' design of experiments techniques to minimize the number of simulations. The models are trained and tested with the simulated results. Fitness of the models is calculated by estimating the errors using the coefficient of determination (R-2) and the normalized root mean square error (NRMSE). These surrogate models are used to study the sensitivity of the aforementioned factors on the temperature of the produced water and the heat recovery over a time period of 30 years. Finally, the hierarchy of factors, as they impact the total heat recovery are represented as a tornado plot. (C) 2018 Elsevier Ltd. All rights reserved.
机译:设计一种有效的系统以从增强型地热系统(EGS)提取热量的过程需要长期正确了解储层的行为。在这项研究中,考虑了双井系统的五个关键参数,即井距,裂缝间隔,井倾角,注入温度和注入速率。为了研究和评估EGS的性能,根据这五个因素,在一定的时间间隔开发了“产出水温度”的二阶替代模型。用于设计模拟的候选储层的原位特性取自犹他州的FORGE站点。使用实验技术的“ Box-Behnken”设计来设计模拟,以最大程度地减少模拟次数。使用模拟结果对模型进行训练和测试。通过使用确定系数(R-2)和归一化均方根误差(NRMSE)估算误差来计算模型的适用性。这些替代模型用于研究上述因素对产出水温度和30年内的热量回收的敏感性。最后,将影响总热量回收的因素层次表示为龙卷风图。 (C)2018 Elsevier Ltd.保留所有权利。

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