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Thermal performance of a standing column well geothermal heat exchanger system using re-injection of bleeding water

机译:再注入渗水的立柱井地热热交换器系统的热性能

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A study on the change in thermal conductivity according to the bleeding rate of a standing column well (SCW)-type geothermal heat exchanger is experimentally performed in which the thermal conductivity of the geothermal heat exchanger is improved by approximately 165.4% at a bleeding rate of 10%. In studies conducted overseas, a numerical analysis was conducted, in which the effective thermal conductivity was improved by approximately 186.8% at a maximum bleeding rate of 30%. In this study, the change in the thermal conductivity was investigated when the bleeding water of a submerged heat-exchanger was re-injected into other adjacent SCW-type subsea heat exchangers using an artificial recharging method. The thermal conductivity in the two-well type SCW geothermal heat exchanger was 4.0 times higher than that of a single-well type SCW geothermal heat exchanger measured at the same bleeding rate. We consider that the two wells in the SCW geothermal heat exchangers are connected to each other by 90 and 280 m underground. Additionally, we consider that the bled discharge water in each geothermal heat exchanger is returned to the other underground heat-exchanger.
机译:实验研究了根据立柱井式(SCW)型地热换热器的渗漏率改变导热系数的方法,该方法在渗漏率为5%的情况下使地热换热器的导热率提高了约165.4%。 10%。在国外进行的研究中,进行了数值分析,其中最大导热率为30%时,有效导热率提高了约186.8%。在这项研究中,研究了当使用人工充电方法将浸没式换热器的放出水重新注入其他相邻的SCW型海底热交换器时,热导率的变化。在相同的泄漏率下测得,两井型SCW地热热交换器的热导率是单井型SCW地热热交换器的4.0倍。我们认为,SCW地热换热器中的两口井通过地下90 m和280 m相互连接。此外,我们认为每个地热热交换器中排放的废水都返回到另一个地下热交换器中。

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