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Study on the influencing factors of the coupled thermal — Hydrologic flow processes in water source heat pump

机译:水源热泵热-水文耦合流动过程影响因素研究

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A numerical model of the coupled thermal — hydrologic in production and injection of multi-wells of water source heat pump was built by TOUGH software. We analyzed some influencing factors of bringing out thermal breakthrough, which include pumping flux, the distance between multi-wells, the osmosis ratio and groundwater flow velocity on the numerical experiments. The temperature of aquifer relative equations were given on multi-wells system in production and injection of water source heat pump: The pumping and injecting flux VS the temperature of aquifer (y=−0.188x+12.46); the distance between wells VS the temperature of aquifer (y=−0.001×2+0.196x+3.792); the osmosis ratio VS the temperature of aquifer (y=−0.143x+11.59). The thermal breakthrough happens among the key value of geological factors on the model: the maximum groundwater flux is 2014m3/d; the distance should be more than 49m. This paper will supply theoretical basis and references for engineering design of multi-well system in production and injection of water source heat pump.
机译:利用TOUGH软件建立了多源水源热泵生产和注水过程中热-水文耦合的数值模型。在数值实验中,分析了影响热突破的一些因素,包括泵送通量,多井之间的距离,渗透率和地下水流速。在水源热泵生产和注水的多井系统中,给出了含水层温度的相对关系式:抽水流量与注水量VS含水层温度(y = -0.188x + 12.46);井间距离与含水层温度的关系(y = -0.001×2 + 0.196x + 3.792);渗透率与含水层温度的关系(y = -0.143x + 11.59)。热突破发生在该模型的地质因素关键值之间:最大地下水通量为2014m 3 / d;最大通量为2014m 3 / d。距离应大于49m。本文将为水源热泵生产注水多井系统的工程设计提供理论依据和参考。

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