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An Assessment of Some Design Constraints on Heat Production of a 3D Conceptual EGS Model Using an Open-Source Geothermal Reservoir Simulation Code

机译:使用开源地热储层模拟代码对3D概念EGS模型的热量生产的一些设计限制的评估

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Performance of heat production process over a 30-year period is assessed in a conceptual EGS model with a geothermal gradient of 65K per km depth in the reservoir. Water is circulated through a pair of parallel wells connected by a set of single large wing fractures. The results indicate that the desirable output electric power rate and lifespan could be obtained under suitable material properties and system parameters. A sensitivity analysis on some design constraints and operation parameters indicates that 1) the fracture horizontal spacing has profound effect on the long-term performance of heat production, 2) the downward deviation angle for the parallel doublet wells may help overcome the difficulty of vertical drilling to reach a favorable production temperature, and 3) the thermal energy production rate and lifespan has close dependence on water mass flow rate. The results also indicate that the heat production can be improved when the horizontal fracture spacing, well deviation angle, and production flow rate are under reasonable conditions. To conduct the reservoir modeling and simulations, an open-source, finite element based, fully implicit, fully coupled hydrothermal code, namely FALCON, has been developed and used in this work. Compared with most other existing codes that are either closed-source or commercially available in this area, this new open-source code has demonstrated a code development strategy that aims to provide an unparalleled easiness for user-customization and multi-physics coupling. Test results have shown that the FALCON code is able to complete the long-term tests efficiently and accurately, thanks to the state-of-the-art nonlinear and linear solver algorithms implemented in the code.
机译:在30年期间,热量生产过程的性能在概念egs模型中评估了储层在储层中65k每公里深度的地热梯度。水通过一组单个大翼骨折连接的一对平行孔循环。结果表明,在合适的材料特性和系统参数下,可以获得所需的输出电力速率和寿命。一些设计约束和操作参数的灵敏度分析表明,裂缝水平间距对热量的长期性能进行了深远的影响,2)并行双层井的向下偏向角可能有助于克服垂直钻井的难度为了达到有利的生产温度,3)热能生产率和寿命依靠水质流量依赖性。结果还表明,当水平骨折间距,偏差角度和生产流速都在合理条件下,可以提高热量产量。为了开展储层建模和仿真,已经开发并在这项工作中开发并使用了基于源的基于,有限元,完全隐含的完全耦合的热热代码,即猎鹰。与本领域的闭合源或商业上的大多数其他现有代码相比,这一新的开放源代码展示了一种代码开发策略,旨在为用户定制和多物理耦合提供无与伦比的容易性。测试结果表明,由于在代码中实现的最先进的非线性和线性求解器算法,猎鹰代码能够有效准确地完成长期测试。

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