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Measurement and CFD simulation of the temperature stratification in an atrium using a floor level air supply method

机译:使用地面供气方法对中庭温度分层进行测量和CFD模拟

摘要

A glazed atrium is a common feature in shopping centres and in the lobbies of residential and commercial buildings. This research aimed to discover the vertical temperature distribution and cooling load reduction relating to displacement ventilation in atrium spaces. The air temperatures at different levels (0.1, 0.7, 1.2, 1.7, 3, 5 and 7 m), within a 25 m high exhibition atrium, were monitored. Using the measured surface temperatures as boundary conditions, three-dimensional computational fluid dynamic (CFD) simulations were performed to examine the vertical temperature distribution. Further, by using parametric studies, the influences of occupant load, equipment load, lighting load, floor and wall surface temperatures, and supply air conditions were investigated with 12 CFD simulation cases. Based on the simulation results, load reduction factors - with three grouping methods of heat sources - were then developed. Temperature stratification was present even under the condition of a low cooling load. Load reductions were lower for occupant and equipment loads than for a lighting load. The best grouping method was to consider the heat released from the floor as an individual group of heat sources, which is an indication that secondary heat from the floor should not be neglected during the design of displacement ventilation.
机译:在购物中心以及住宅和商业建筑的大厅中,玻璃中庭是常见的特征。这项研究旨在发现与中庭空间置换通风相关的垂直温度分布和冷却负荷降低。在25 m高的展览中庭内,监测了不同水平(0.1、0.7、1.2、1.7、3、5和7 m)的空气温度。使用测得的表面温度作为边界条件,进行了三维计算流体动力学(CFD)模拟,以检查垂直温度分布。此外,通过参数研究,在12个CFD模拟案例中研究了乘员负载,设备负载,照明负载,地板和墙壁表面温度以及送风条件的影响。基于仿真结果,然后使用三种热源分组方法开发了负荷降低因子。即使在低冷却负荷的条件下也存在温度分层。乘员和设备的负载减少量要少于照明负载。最好的分组方法是将地板释放的热量视为一组单独的热源,这表明在置换通风的设计过程中不应忽略地板的次级热量。

著录项

  • 作者

    Lau J; Niu JL;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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