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Transient heat transfer simulation, analysis and thermal performance study of double U-tube borehole heat exchanger based on numerical heat transfer model

机译:基于数值传热模型的双U型管钻孔换热器的瞬态传热仿真,分析及热性能研究

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摘要

This paper proposes numerical unsteady heat transfer model that predicts the transient heat transfer in the double U-tube borehole heat exchanger (BHE) where the U-tubes can operate with either different or equal mass flow rate and inlet fluid temperature. The implicit numerical method applied on heat transfer equations, obtained from energy balance on fluid, grout and ground nodes, was utilized to get the solution. The profile of the borehole loading as well as the net heat exchange on each leg of the U-tube along the borehole depth were obtained for simultaneous charging, discharging, and charging-discharging conditions. Axial variation of the mean fluid temperature, grout and borehole wall average temperature for charging and discharging cases were investigated. The model is extended to consider the axial and radial variation of ground temperature outside the borehole. Dynamic simulation was performed for different operating conditions to investigate various temperature response, borehole thermal resistance as well as thermal performance of the BHE. The proposed model was verified with the previously published experimental results. The performed modeling, simulation and analysis are important for the vertical BHE system optimization, efficiency testing as well as for the quick investigation of the impact of the borehole parameters and thermal properties on the overall performance of the BHE. The model is crucial in the design, optimization and performance study of ground source heat pump and borehole thermal energy storage systems.
机译:本文提出了数值不稳定的传热模型,其预测双U型管钻孔热交换器(BHE)中的瞬态传热,其中U形管可以以不同的或等于质量流量和入口流体温度操作。利用在流体,灌浆和地节点上的能量平衡中获得的传热方程上施加的隐式数值方法来获得解决方案。获得钻孔载荷的轮廓以及沿着钻孔深度的U形管的每条腿上的净热交换用于同时充电,放电和充电排出条件。研究了用于充电和放电壳体的平均流体温度,灌浆和钻孔壁的轴向变化。该模型扩展以考虑钻孔外部温度的轴向和径向变化。对不同的操作条件进行动态模拟,以研究各种温度响应,钻孔热阻以及BHE的热性能。通过先前公布的实验结果验证了所提出的模型。所进行的模拟,仿真和分析对于垂直BHE系统优化,效率测试以及对BHE的整体性能的快速调查来说是重要的。该模型对地面热泵和钻孔热能存储系统的设计,优化和性能研究至关重要。

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