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Dynamic thermal performance of horizontal ground source heat pumps - The impact of coupled heat and moisture transfer

机译:卧式地源热泵的动态热性能-热量和水分传递耦合的影响

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摘要

A ground heat exchanger is a key component of a ground source heat pump system, and heat and moisture transfer occurs simultaneously in soil with a horizontal ground heat exchanger in operation. A new method has been developed to generate moisture and temperature profiles in soil with spatially and temporally varying properties. The profiles are used as initial data for accurate solution of the equations for transient heat and moisture transfer in soil containing a buried horizontal ground heat exchanger. The impacts of initial conditions of soil and coupled heat and moisture transfer are assessed on the thermal performance of a horizontal ground heat exchanger for a ground source heat pump for different installation depths and soil textures. Seasonal heat transfer through a horizontal heat exchanger increases with installation depth and a heat exchanger installed at 2 m deep can transfer 19% more heat than that at 1 m deep. Heat transfer in sandy soil is 17% higher than in loamy sand soil which is 14.5% higher than in clay loam soil. The maximum differences between models with and without moisture transfer for the prediction of heat transfer through a heat exchanger are 24%, 17% and 18% in clay sand, loamy sand and sandy soils, respectively. In conclusion, it is necessary to use a coupled heat and moisture transfer model in order to predict accurately the seasonal thermal performance of a ground heat exchanger in shallow ground. (C) 2018 Elsevier Ltd. All rights reserved.
机译:地面热交换器是地面源热泵系统的关键组件,并且在运行中使用水平地面热交换器时,土壤中会同时发生热量和水分传递。已经开发出一种新方法来在土壤中产生具有时空变化特性的水分和温度曲线。这些剖面用作初始数据,可以精确求解方程式,以便在包含地下卧式热交换器的土壤中进行瞬态传热和水分传递。针对不同安装深度和土壤质地的地面源热泵的水平地面热交换器的热性能,评估了土壤初始条件以及传热和水分耦合的影响。通过水平换热器的季节性换热随着安装深度的增加而增加,安装在2 m深的换热器可比在1 m深的换热器多传递19%的热量。沙质土壤的热传递比壤土砂土的热传递高17%,比粘土壤土的热传递高14.5%。在有水分传递和没有水分传递的模型中,用于预测通过热交换器的热传递的最大差异分别是在粘土砂,壤质砂和沙质土壤中分别为24%,17%和18%。总之,为了准确预测浅层地面中地面热交换器的季节性热性能,有必要使用热与湿耦合的耦合模型。 (C)2018 Elsevier Ltd.保留所有权利。

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