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Fungal Growth Prediction on Building Materials by Reaction-Diffusion Model Coupled with Heat and Moisture transfer

机译:结合湿热传递的反应扩散模型预测建筑材料的真菌生长

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A mathematical model that reproduces fungal proliferation and morphological colony formation was developed on the basis of a reaction diffusion modeling approach. In this modeling, fungus was separated into two states, active and inactive, and it was assumed that active fungus moves by diffusion and reaction while generating and producing inactive fungus. The effects of temperature and humidity on fungal growth were explicitly incorporated in the reaction term of nutrient consumption/generation of active fungus in this governing equation. The damping function, which reproduces the effects of temperature and humidity on fungal growth, was developed and explicitly based on the fungal index proposed by Abe. In order to estimate the sensitivity of the proposed numerical fungal growth model, fungal growth on the surface of building materials was analyzed for four types of building materials, and the prediction results were compared with the results of WUFI-Bio.
机译:在反应扩散建模方法的基础上,建立了再现真菌增殖和形态集落形成的数学模型。在此模型中,真菌被分为活跃状态和非活跃状态两种状态,并假定活跃真菌在产生和产生非活跃真菌时会通过扩散和反应而移动。在该控制方程中,温度和湿度对真菌生长的影响已明确纳入营养物消耗/活性真菌生成的反应项中。阻尼功能可再现温度和湿度对真菌生长的影响,并根据安倍晋三提出的真菌指数进行了明确开发。为了估计所提出的数值真菌生长模型的敏感性,分析了四种类型的建筑材料在建筑材料表面的真菌生长,并将预测结果与WUFI-Bio的结果进行了比较。

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