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Modeling study of deep direct use geothermal on the West Virginia university campus-morgantown, WV

机译:西弗吉尼亚大学校园深度直接用地热的建模研究 - Morgantown,WV

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摘要

To reduce the geothermal exploration risk, a feasibility study is performed for a deep direct-use (DDU) system proposed at the West Virginia University (WVU) Morgantown campus. This study applies numerical simulations to investigate reservoir impedance and thermal production. Because of the great depth of the geothermal reservoir, few data are available to characterize reservoir features and properties. As a result, the study focuses on the following three aspects: 1. model choice for predicting reservoir impedance and thermal breakthrough: after investigating three potential models (one single permeability model and two dual permeability models) for flow through fractured rock, it is decided only the single permeability model is needed; 2. well placement (horizontal vs. vertical) options: horizontal well placement seems to be more robust to heterogeneity and the impedance is more acceptable; 3. Prediction uncertainty: the most influential parameters are identified using a First-Order-Second-Moment uncertainty propagation analysis, and the uncertain range of the model predictions is estimated by performing a Monte Carlo simulation. Heterogeneity has a large impact on the prediction, therefore, heterogeneity is included in the predictive model and uncertainty analysis. The numerical model results and uncertainty analysis will be used for further economic studies.
机译:为降低地热勘探风险,对西弗吉尼亚大学(WVU)莫尔加敦校区提出的深度直接使用(DDU)系统进行了可行性研究。本研究适用于调查水库阻抗和热产量的数值模拟。由于地热储层的深度很大,很少有数据可用于储存器特征和属性。结果,研究专注于以下三个方面:1。预测储层阻抗和热突破的模型选择:研究了三种潜在模型(一个单一渗透性模型和两个双渗透性模型)进行了裂缝岩石的流量,确定只需要单一渗透性模型; 2.井放置(水平与垂直)选项:水平井放置似乎对异质性更加强大,阻抗更容易接受; 3.预测不确定性:使用一阶二阶的不确定性传播分析来识别最有影响力的参数,并且通过执行蒙特卡罗模拟来估计模型预测的不确定范围。异质性对预测产生很大影响,因此,异质性包括在预测模型和不确定性分析中。数值模型结果和不确定性分析将用于进一步的经济研究。

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