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Study of indoor thermal environment and stratified air-conditioning load with low-sidewall air supply for large space based on Block-Gebhart model

机译:基于Block-Gebhart模型的大空间低侧壁供气室内热环境和分层空调负荷的研究

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At present, the commonly used mathematical calculation method of stratified air-conditioning load for large space building was proposed by the form of nozzle air supply. However, there is no complete cooling load calculation methods of stratified air-conditioning with low-sidewall air supply system for large space buildings which are widely used in recent years. This paper takes a scale model laboratory which has the airflow distribution of low-sidewall air supply system as study object and based on Block-Gebhart (B-G) model to predict the indoor thermal environment distributions. Afterwards, we used the calculation methods of radiative and convective heat transfer loads which were proposed by our research group to calculate the stratified air-conditioning load and verified by the experiments. The results show that the relative errors range of theoretical and experimental values of indoor air temperatures, inner wall temperatures and stratified air-conditioning load are ranging from -5.440% to 2.473%, -5.024%-3.277% and -6.47% to 4.04%, respectively. This indicates that the B-G model can accurately predict the indoor thermal environment distributions and the stratified air-conditioning load calculation method that described in this paper is also accurate and feasible. This study will make up for the insufficiency of traditional method which is unable to calculate the stratified air-conditioning load with low-sidewall air supply for large space buildings. In addition, the factors that influencing the indoor thermal environment and stratified air-conditioning load were analyzed, which it will contribute to the design and optimization of stratified air-conditioning system for large space buildings.
机译:目前,以喷嘴送风的形式提出了大空间建筑中分层空调负荷的常用数学计算方法。但是,近年来没有广泛的用于大型空间建筑物的低侧壁送风系统的分层空调的冷负荷计算方法。本文以规模化实验室为研究对象,该实验室以低侧壁送风系统的气流分布为研究对象,并基于Block-Gebhart(B-G)模型来预测室内的热环境分布。之后,我们使用研究小组提出的辐射和对流传热负荷的计算方法来计算分层空调负荷,并通过实验进行了验证。结果表明,室内空气温度,内壁温度和分层空调负荷的理论和实验值的相对误差范围为-5.440%至2.473%,-5.024%-3.277%和-6.47%至4.04% , 分别。这表明,B-G模型可以准确预测室内热环境分布,本文所述的分层空调负荷计算方法也是准确可行的。这项研究将弥补传统方法的不足,即传统方法的不足之处在于无法计算大型空间建筑物在低侧壁供气情况下的分层空调负荷。此外,分析了影响室内热环境和分层空调负荷的因素,这将有助于大空间建筑分层空调系统的设计和优化。

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