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Optimization of Well Configuration for a Sedimentary Enhanced Geothermal Reservoir

机译:沉积强化地热油藏井网配置的优化

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The extraction of geothermal energy in the form of hot water from sedimentary rock formations could expand the current geothermal energy resources toward new regions. From previous work, we observed that sedimentary geothermal reservoirs with relatively low permeability would require the application of enhancement techniques (e.g., well hydraulic stimulation) to achieve commercial production/injection rates. In this paper we extend our previous work to develop a methodology to determine the optimum well configuration that maximizes the hydraulic performance of the geothermal system. The geothermal systems considered consist of one vertical well doublet system with hydraulic fractures, and three horizontal well configurations with open-hole completion, longitudinal fractures and transverse fractures, respectively. A commercial thermal reservoir simulation is used to evaluate the geothermal reservoir performance using as design parameters the well spacing and the length of the horizontal wells. The results obtained from the numerical simulations are used to build a response surface model based on the multiple linear regression method. The optimum configuration of the sedimentary geothermal systems is obtained from the analysis of the response surface model. The proposed methodology is applied to a case study based on a reservoir model of the Lyons sandstone formation, located in the Wattenberg field, Denver-Julesburg basin, Colorado.
机译:从沉积岩层中提取热水形式的地热能可以将当前的地热能资源扩展到新的地区。从以前的工作中,我们观察到渗透率相对较低的沉积地热储层将需要应用增强技术(例如井水力增产)来实现商业化的生产/注入速度。在本文中,我们扩展了以前的工作,以开发一种方法来确定最佳的井眼配置,从而使地热系统的水力性能最大化。所考虑的地热系统包括一个带水力压裂的垂直井双井系统和三个分别具有裸眼完井,纵向压裂和横向压裂的水平井构造。商业热储层模拟被用来评估地热储层的性能,使用井距和水平井的长度作为设计参数。从数值模拟获得的结果用于基于多元线性回归方法构建响应面模型。沉积地热系统的最佳配置是通过响应面模型的分析获得的。所提出的方法论被应用于基于里昂砂岩地层储层模型的案例研究中,该模型位于科罗拉多州丹佛-祖勒斯堡盆地的沃滕贝格油田。

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