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The numerical simulation and experiment study on the coupled thermal conduction and groundwater advection heat transfer process under the intermittent operation of the ground-coupled heat pump system

机译:地面耦合热泵系统间歇运行下耦合热导通和地下水平流传热过程的数值模拟与实验研究

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The three-dimension coupled thermal conduction and groundwater advection unsteady state heat transfer model in this paper is developed according to the heat-transfer process between the vertical U tube underground and its ambient soil. The feasibility of this model is verified by intermittent experiment of ground source heat pump in winter. In the model, boundary layer is replaced by velocity equation in inlet boundary condition based on the saturated soil and groundwater in order to be more close to the actual. The soil recovery temperature influenced by the thermal conductivity and environmental element (the temperature of the air, solar radiation energy, velocity of wind) in the intermittent operation is studied in this paper. The result has guiding significance to the intermittent operation of the ground source heat pump.
机译:本文三维耦合热导通和地下水平程非稳态传热模型是根据垂直U管地下和环境土壤之间的传热过程开发的。冬季地下源热泵间歇试验验证了该模型的可行性。在该模型中,基于饱和土壤和地下水的入口边界条件中的速度方程代替边界层,以便更接近实际。本文研究了受电导率和环境元素(空气温度,风的温度,风的温度,风的温度,风的温度)的土壤回收温度在本文中研究。结果具有对地源热泵的间歇操作的引导意义。

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