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Effects of Coupled Heat and Moisture Transfers through Walls upon Indoor Environment Predictions

机译:墙体传热和水分耦合对室内环境预测的影响

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The non-uniform behaviour of the air inside a room, which is important in comfort analysis, can be evaluated by zonal models. While not as fine-grained as CFD simulation, they do give useful information about temperature and moisture distributions that is not available from lumped-parameter models. Therefore, we have developed a tool, called SimSPARK, to automatically build dynamic zonal simulations of a building zone. Its model library includes different models to describe heat and moisture transfers across the building zone envelope, with two of them taking into account moisture adsorption/desorption by building materials. To illustrate the applicability of this tool, we compare two zonal models including adsorption and desorption processes with one that ignores these phenomena, in a ventilated room modelled using 27 cells. The results indicate that adsorption/desorption by building materials does affect indoor air behaviour in a hot and humid climate.
机译:可以通过区域模型评估房间内部空气的不均匀行为,这在舒适性分析中很重要。尽管没有CFD模拟那么细,但它们确实提供了有关温度和湿度分布的有用信息,而集总参数模型无法提供这些信息。因此,我们开发了一个名为SimSPARK的工具,可以自动构建建筑区域的动态区域模拟。它的模型库包括描述模型在整个建筑区域范围内的热量和水分传递的不同模型,其中两个模型考虑了建筑材料对水分的吸附/解吸。为了说明该工具的适用性,我们在一个使用27个单元建模的通风室内,比较了包括吸附和解吸过程在内的两个分区模型,其中一个忽略了这些现象。结果表明,在炎热和潮湿的气候下,建筑材料的吸附/解吸确实会影响室内空气的行为。

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