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Determination of optimum parameters of doublet system in a horizontally fractured geothermal reservoir

机译:水平裂缝地热油藏双重构造系统最佳参数的确定

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摘要

The parameters for the optimum production temperature of a geothermal well were determined by using both an analytical and convective conductive heat transfer numerical model. The numerical model was verified with the available analytical solutions. The production temperatures for different mass flow rate, number of fractures, fracture width, and production time were combined to obtain the minimum fracture length and the half spacing. The velocity profile in a single fracture was incorporated in the numerical model in deriving the minimum fracture length that allows for target production temperature. A nomo-gram solution is also presented for the evaluation of the production temperature that incorporates the mass flow rate, fracture width, fracture length, number of conductive fractures, host rock temperature, and the production time. The minimum fracture half spacing was investigated in order to prevent thermal interference between the fluid-carrying fractures by using the numerical model. The minimum fracture length is determined to be 600 m for maintaining 10% thermal drawdown after 10 years of production with 20 fractures when the mass flow rate and fracture width are 40 kg/sec and 100 m, respectively. The results from this study can provide a preliminary guideline to optimize the various design parameters involved in hydraulic stimulation and geothermal production in the EGS reservoir.
机译:通过使用解析和对流传导传热数值模型确定了地热井最佳生产温度的参数。数值模型已通过可用的分析解决方案进行了验证。结合不同质量流量,裂缝数量,裂缝宽度和生产时间的生产温度,以获得最小的裂缝长度和一半的间距。在得出允许目标生产温度的最小裂缝长度时,将单个裂缝中的速度剖面合并到数值模型中。还提出了用于评估生产温度的诺克图解决方案,该解决方案综合了质量流量,裂缝宽度,裂缝长度,导电性裂缝数,基质岩石温度和生产时间。通过使用数值模型,研究了最小裂缝半间距,以防止流体裂缝之间的热干扰。当质量流量和裂缝宽度分别为40 kg / sec和100 m时,最小裂缝长度确定为600 m,以在生产10年后保持20条裂缝后保持10%的热压降。这项研究的结果可以为优化EGS油藏水力增产和地热生产中涉及的各种设计参数提供初步指导。

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