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Modelling of heat and moisture transfer in buildings Ⅰ. Model program

机译:建筑物中的湿热传递模型Ⅰ。模型程序

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The overall objective of this work is to develop an accurate model for predicting heat and moisture transfer in buildings including building envelopes and indoor air. The model is based on the fundamental thermodynamic relations. Darcy's law, Fick's law and Fourier's law are used in describing the transfer equations. The resultant nonlinear system of partial differential equations is discretised in space by the finite element method. The time marching scheme, Crank-Nicolson scheme, is used to advance the solution in time. The final numerical solution provides transient temperature and moisture distributions in building envelopes as well as temperature and moisture content for building's indoor air subject to outdoor weather conditions described as temperature, relative humidity, solar radiation and wind speed. A series measurements were conducted in order to investigate the model performance. The simulated values were compared against the actual measured values. A good agreement was obtained.
机译:这项工作的总体目标是开发一个精确的模型,以预测建筑物(包括建筑物围护结构和室内空气)中的热量和水分传递。该模型基于基本的热力学关系。达西定律,菲克定律和傅立叶定律用于描述传递方程。所得的偏微分方程非线性系统通过有限元方法在空间上离散。时间行进方案(Crank-Nicolson方案)用于及时解决问题。最终的数值解提供了建筑物围护结构中温度和湿度的瞬态分布,以及建筑物的室内空气在室外气候条件(例如温度,相对湿度,太阳辐射和风速)下的温度和水分含量。为了调查模型性能,进行了一系列测量。将模拟值与实际测量值进行比较。获得了良好的协议。

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