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Simultaneous heat and moisture transfer in soils combined with building simulation

机译:结合建筑物模拟的土壤中热量和水分的同时传递

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In order to precisely predict ground heat transfer, room air temperature and humidity, a combined model has been developed and conceived to calculate both the coupled heat and moisture transfer in soil and floor and the psychrometrics condition of indoor air. The present methodology for the soil is based on the theory of Philip and De Vries, using variable thermophysical properties for different materials. The governing equations were discretized using the finite-volume method and a three-dimensional model for describing the physical phenomena of heat and mass transfer in unsaturated moist porous soils and floor. Additionally, a lumped transient approach for a building room and a finite-volume multi-layer model for the building envelope have been developed to integrate with the soil model. 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.
机译:为了精确预测地面传热,室内空气的温度和湿度,已经开发并构想了一个组合模型来计算土壤和地板中的热与湿耦合的耦合以及室内空气的湿度测量条件。目前的土壤方法是基于Philip和De Vries的理论,对不同材料使用了可变的热物理性质。控制方程使用有限体积法和三维模型离散化,用于描述非饱和湿润多孔土壤和地面中传热和传质的物理现象。另外,已经开发出用于建筑物房间的集总瞬态方法和用于建筑物围护结构的有限体积多层模型,以与土壤模型集成。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。

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