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Numerical Analysis of Heat and Moisture Transfer in Underground Air-conditioning Systems

机译:地下空调系统热湿传递的数值分析

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In view of the influence of humidity of room air on room heat load, indoor environment and building energy consumption in underground intermittent air-conditioning systems, numerical simulation was used to dynamically analyze the coupling condition of room air temperature and relative humidity. Based on an experimental simplified model that considers dynamical moisture transfer on the soil wall, an energy equation with variable of enthalpy is solved, with the addition of solving the transport equation of water vapor percent in moist air. Results are presented in terms of temperature, humidity and heat flux at the interface between room air and the floor, showing the importance of the approach presented and the model robustness for long-term simulations with a high time step. Finally, the results are compared with those of simulation without consideration of humidity. The results show that room air temperature with moisture transfer is 0.6~1.5℃ less, and the average conjugate heat flux on soil wall is 20% higher than that without humidity.
机译:针对室内间歇空调系统中室内空气湿度对室内热负荷,室内环境和建筑能耗的影响,利用数值模拟动态分析了室内空气温度与相对湿度的耦合条件。基于考虑土壤水分动态传递的实验简化模型,求解了具有焓变的能量方程,并求解了湿空气中水蒸气百分比的传递方程。结果以房间空气与地板之间的界面处的温度,湿度和热通量的形式给出,显示了所提出方法的重要性以及模型的鲁棒性,可用于长时间步长的长期仿真。最后,将结果与不考虑湿度的模拟结果进行比较。结果表明,带水分传递的室内空气温度比不带水分的室内空气温度低0.6〜1.5℃,平均共轭热通量比非湿度高20%。

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