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Sensitivity analysis of deep geothermal reservoir: Effect of reservoir parameters on production temperature

机译:深层地热储层敏感性分析:储层参数对生产温度的影响

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This study aims to guide reservoir engineers/managers in the selection of a combination of parameters from amongst various possible alternatives in developing deep geothermal reservoirs which can meet the desired temperature at the production wellhead for sustainable energy production. The work presents an approach for predicting the long-term performance of a deep geothermal reservoir using multiple combinations of various reservoir parameters. The finite element method and factorial experimental design are applied to forecast which of the parameters has the most influence on long-term reservoir productivity. The solver employed is validated using known analytical solution and experimental measurements with good agreement. After the validation, an investigation is then performed based on the Soultz lower geothermal reservoir. The results showed that fluid injection temperature is the parameter that influences the experiment the most during exploitation involving production temperature, whereas injection pressure rate happens to have a more significant impact on reservoir cooling. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究旨在指导油藏工程师/经理从开发深部地热油藏的各种可能选择中选择参数的组合,这些深层地热油藏可以满足生产井口的所需温度,以实现可持续的能源生产。这项工作提出了一种使用各种储层参数的多种组合来预测深层地热储层长期性能的方法。应用有限元方法和阶乘实验设计来预测哪个参数对长期储层产能影响最大。使用已知的分析解决方案和实验测量值对所采用的求解器进行了很好的验证。验证之后,然后根据Soultz下部地热储层进行调查。结果表明,流体注入温度是在开采过程中对生产过程影响最大的参数,而注入压力速率恰好对油藏冷却有较大影响。 (C)2017 Elsevier Ltd.保留所有权利。

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