首页> 外文会议>The 6th International Symposium on Heating,Ventilating and Air Conditioning(第六届国际暖通空调学术会议)论文集 >Numerical Analysis of the Heat Transfer Characteristics of Vertical U-Tube Ground Heat Exchanger Used in Ground Coupled Heat Pump
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Numerical Analysis of the Heat Transfer Characteristics of Vertical U-Tube Ground Heat Exchanger Used in Ground Coupled Heat Pump

机译:地面耦合热泵用垂直U型管地面换热器传热特性的数值分析

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A heat transfer model of vertical U-tube ground heat exchanger (GHE) used in ground coupled heat pump (GCHP) is developed based on the energy conservation. The model takes the temperature variation of fluid along the depth into consider, and the thermal interference between the two adjacent legs of U-tube is also incorporated by introducing the idea of thermal interact angle and equivalent distance. Based on the model, the numerical analysis on the heat transfer characteristics of GHE is performed, the results show that the increase of the conductivity of the soil and grout, the flow rate and the decrease of the thermal interact angle can all improve the heat transfer performance of GHE, and the influence of the soil conductivity is predominate among these parameters. However, the increase of grout conductivity should have a limit, the enhancement of thermal interference between the two adjacent legs resulting from the increase of grout conductivity should be considered in the determination of grout conductivity. At the same time, the increase of flow rate should be constrained by the flow resistance, and could be optimized by a variable flow design.
机译:在节能的基础上,建立了用于地面耦合热泵(GCHP)的垂直U型管地面换热器(GHE)的传热模型。该模型考虑了流体沿深度的温度变化,并且通过引入热相互作用角和等效距离的概念,还考虑了U型管两个相邻支脚之间的热干扰。在该模型的基础上,对GHE的传热特性进行了数值分析,结果表明,提高土壤和水泥浆的电导率,提高流速和减小热相互作用角都可以改善传热性能。在这些参数中,GHE的性能以及土壤电导率的影响是最主要的。然而,灌浆电导率的增加应该有一个极限,在灌浆电导率的确定中应考虑到由于灌浆电导率的增加而导致的两个相邻腿之间的热干扰的增加。同时,流量的增加应受到流阻的限制,并可以通过可变流量设计进行优化。

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