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Discussion of Design Method and Optimization on Airflow Distribution in a Large-Space Building with Stratified Air-Conditioning System

机译:分层空调系统的大空间建筑气流分布设计方法与优化的探讨

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摘要

Indoor air distribution is a major concern in designing indoor thermal environment of a large space, which is different from normal buildings. Today, stratified air conditioning is a common choice for large-space buildings. Indoor air distribution with the stratified air conditioning is affected by many design parameters. These parameters have direct effects on thermal comfort, environment noise and energy consumption. Selection of these parameters thus becomes the key problem in design of indoor thermal environment in a large space. In this paper, a large-space building is taken as the study object. It was found that the cooling load varies linearly with the stratified height. The calculations of the air distributions were performed under the conditions of different stratified height, diameter and quantity of the blast nozzles. Based on calculated results, the alignment charts were plotted in an effort to determine the design parameters such as the height, the diameter and the number of blast nozzles and their selection range for a large-space building. According to the charts, the relationship of design parameters and their optimized selection are analyzed. It is clear that the lower the height, the less the energy consumption demand is, however, the noise level would be higher. Based on above results, an optimized and practical methodology is formulated for the design of the air distribution in a large space.
机译:室内空气分配是设计大空间的室内热环境的主要问题,这与普通建筑物不同。如今,分层空调已成为大空间建筑的常见选择。采用分层空调的室内空气分配受许多设计参数的影响。这些参数直接影响热舒适性,环境噪声和能耗。因此,这些参数的选择成为大空间室内热环境设计中的关键问题。本文以大空间建筑为研究对象。发现冷却负荷随分层高度线性变化。空气分布的计算是在不同分层高度,喷嘴直径和喷嘴数量的条件下进行的。根据计算结果,绘制对准图,以确定大型空间建筑的设计参数,例如高度,喷嘴的直径和数量及其选择范围。根据这些图表,分析了设计参数与其优化选择之间的关系。显然,高度越低,能耗需求越小,但是,噪声水平会更高。基于以上结果,制定了一种优化实用的方法来设计大空间中的空气分配。

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