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IMPROVED POWER PRODUCTION EFFICIENCY OF HYDROTHERMAL RESERVOIRS USING DOWNHOLE PUMPS

机译:利用井下泵提高水热储层的电力生产效率

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This study investigates the potential of using electric submersible pumps (ESP) for power production in high temperature geothermal fields currently being produced using two phase flashing systems. The use of downhole pumps is predicted to have two benefits, the first being an increase in mass flow per well which could potentially reduce the number of wells and subsequently, drilling costs. The second benefit the pumps can provide is the prevention of exergy loss due to the flashing process, which occurs under conventional two phase wellbore flow. It is predicted that the power consumed by the pump can be recovered at the power plant resulting in higher energy output for each wellbore drilled. In addition to increased power production the study investigates the economic benefits of increasing the mass flow from each well to determine if pump maintenance costs and power consumption could be offset to yield higher returns for plant owners. A brief summary of potential social and environmental benefits for a closed loop approach is also discussed as the authors predict these may become of increasing importance in coming years.
机译:本研究调查了使用两相闪烁系统生产的高温地热场中使用电动潜水泵(ESP)的电力生产。预测井下泵的使用具有两个好处,首先是每孔的质量流量增加,这可能会降低井的数量和随后的钻井成本。泵可以提供的第二种益处是由于闪光过程导致的防止损失,这在传统的两相井筒流中发生。据预测,泵消耗的功率可以在发电厂中恢复,导致每个井筒钻的能量输出更高。除了增加的电力生产外,研究还调查了增加每个孔的质量流量的经济效益,以确定泵维护成本和功耗是否可以抵消,以产生更高的工厂所有者的回报。对于闭环方法的潜在社会和环境效益的简要概述也被讨论,因为作者预测,这些可能会在未来几年增加重要性。

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