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Experimental and Theoretical Study on the Thermal Environment Based on Simultaneously Model in a Room

机译:基于同时模型在房间中的热环境的实验与理论研究

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A simultaneously solving model is presented for a small room with single thermal environment, and the model is used to predict inner surface temperature and air temperature. Combined heat transfer consists of thermal conduction, convection, and radiation, which exist on building inner surface temperature and air temperature that are coupled through each other. The construction thought of simultaneously solving model: Based on the principle of energy conservation, heat conservation equations are established for inner surface by considering thermal conduction, convection, and radiation, and air heat conservation equations are also established by using indoor air as control volume. Inner surface temperature and air temperature can be received by simultaneously solving and iterative calculation. Direct radiation absorption model and Gebhart absorption coefficient model are considered, respectively, in heat conservation equations of simultaneously solving model. Taking environmental laboratory (5 × 3.5 × 2.5 m) as physical model, condition calculation and experimental verification have taken. Under variety of conditions such as different wall heat flow and different air supply volume, inner surface temperature and air temperature are calculated by simultaneously solving model. The simultaneously solving model based on Gebhart absorption coefficient model is more exact than the model based on direct radiation absorption model. The calculation results of two kinds of simultaneously solving model are compared with test date and provide some important information for applying radiation model of simultaneously solving model.
机译:具有单个热环境的小型房间的同时解决模型,该模型用于预测内表面温度和空气温度。组合的传热由热传导,对流和辐射组成,其存在于构建内表面温度和彼此连接的空气温度上。同时解决模型的施工思想:基于节能原理,通过考虑热传导,对流和辐射来建立内表面的热保守方程,以及通过使用室内空气作为控制体积建立空气热保守方程。通过同时解决和迭代计算,可以接收内表面温度和空气温度。分别考虑了直接辐射吸收模型和Gebhart吸收系统的热保守方程,同时解决模型。采取环境实验室(5×3.5×2.5米)作为物理模型,条件计算和实验验证。在各种条件下,诸如不同的壁热流和不同的空气供应量,通过同时求解模型来计算内表面温度和空气温度。基于Gebhart吸收系统模型的同时解决模型比基于直接辐射吸收模型的模型更精确。将两种同时解决模型的计算结果与测试日期进行比较,并提供了应用同时解决模型的辐射模型的一些重要信息。

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