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Study on an Unsteady and Synchronous Solving Model for Low Sidewall Air Supply System in the Large-Space Building

机译:大空间建筑低侧壁供气系统的非定常同步求解模型研究

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In large-space building, the distribution of vertical temperature has obvious difference. According to this feature, the energy consumption in air-conditioning would be greatly reduced if the designs of airflow are preferable in these buildings. The low sidewall air supply system is widely installed in the large-space buildings since it can directly sent the handled air to the personnel activity area, thereby has lower energy consumption than other systems. In this paper, a Gebhart-Block synchronous solving model is built to solve the vertical temperature distribution of an actual large-space building with low sidewall air supply system. The simulative physical model is divided into eight blocks in the vertical direction. According to the mechanism of heat transfer, unsteady-state heat balance equation is established for indoor air and wall in each block. The unsteady and synchronous solving model is established with integrating these balance equations. Furthermore, to predict the temperature distribution of indoor air and inner wall surface, the theoretical values of this model are calculated with programming by Visual Basic.
机译:在大空间建筑中,垂直温度分布存在明显差异。根据这一特征,如果在这些建筑物中采用气流设计,将大大降低空调的能耗。低侧壁供气系统被广泛地安装在大空间的建筑物中,因为它可以将处理后的空气直接输送到人员活动区域,因此比其他系统具有更低的能耗。本文建立了一个Gebhart-Block同步求解模型,以求解一台低侧壁供气系统的实际大空间建筑物的垂直温度分布。模拟物理模型在垂直方向上分为八个块。根据传热机理,建立室内空气和墙体各块的非稳态热平衡方程。通过整合这些平衡方程,建立了非定常和同步求解模型。此外,为了预测室内空气和内壁表面的温度分布,通过Visual Basic编程计算了该模型的理论值。

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