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The dynamic thermal characteristics of lightweight building elements with a forced ventilated cavity and radiation barriers

机译:具有强制通风腔和辐射屏障的轻质建筑元件的动态热特性

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This paper presents an analysis of the dynamic thermal characteristics of lightweight building elements (LBEs) with a forced ventilated cavity and radiation barriers. A two-dimensional numerical model was used for the analysis, which was verified with an analytical method and outdoor experiments. The influence of the temperature boundary conditions at the cavity inlet and along the ambient surface of the cavity on the dynamic thermal characteristics of the LBEs was analyzed separately. The influence of the LBE width, the cavity width, the specific air flow rate and the cavity surface emissivities was also demonstrated. Multi-parametric equations were derived for predicting the heat flux amplitude and the decrement factor along the length of the LBE.
机译:本文介绍了具有强制通风腔和辐射屏障的轻型建筑元件(LBE)的动态热特性分析。分析使用二维数值模型,并通过分析方法和室外实验进行了验证。分别分析了腔体入口处以及沿腔体周围表面的温度边界条件对LBE的动态热特性的影响。还说明了LBE宽度,腔体宽度,比空气流速和腔体表面发射率的影响。导出了多参数方程,用于预测沿LBE长度方向的热通量振幅和减量因子。

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