GIS Retrofitting Technique for Hong Kong Sports Center with a Large Hall

M. Fong, Kai-Kwong Dennis Tsang
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Abstract

The energy consumption of air conditioning systems in large spaces is a concern due to inefficiencies caused by the high ceiling. This paper presents the Green aIr-distribution System (GIS) retrofitting technique as a solution to reduce energy consumption and optimize thermal comfort in a large Hong Kong sports center to achieve carbon neutrality. A comparison is made between the existing air distribution system with ceiling supply and return as baseline model and the GIS with occupied wall supply and ceiling return as retrofit models regarding ventilation performance, thermal comfort, and energy aspects. Computational fluid dynamics (CFD) is employed to analyze the average operative temperature, airspeed, and other thermal comfort parameters. The findings demonstrate that implementing the GIS in the large sports center allows for a 1.5 °C increase in the supply temperature without significantly compromising thermal comfort. The algorithm for developing GIS for the large space application is also discussed. Additionally, the GIS model exhibits notable improvements in ventilation factors, such as Local Mean Age (LMA), Local air change index (LACI), and Air Distribution Performance Index (ADPI), resulting in improved air quality and reduced energy use within the occupied space.
香港体育中心大礼堂的GIS改造技术
由于高天花板造成的效率低下,大空间空调系统的能源消耗是一个值得关注的问题。本文介绍了绿色空气分配系统(GIS)改造技术,作为香港一个大型体育中心减少能源消耗和优化热舒适的解决方案,以实现碳中和。在通风性能、热舒适和能源方面,对现有的以天花板送风和回风为基准模型的空气分配系统与以占用的墙壁送风和天花板回风为改造模型的GIS进行了比较。计算流体动力学(CFD)用于分析平均工作温度、空速和其他热舒适参数。研究结果表明,在大型体育中心实施GIS可以在不显著影响热舒适的情况下将供应温度提高1.5°C。讨论了面向大空间应用的GIS开发算法。此外,GIS模型在通风因素(如当地平均年龄(LMA)、当地空气变化指数(LACI)和空气分布性能指数(ADPI))方面表现出显著的改善,从而改善了空气质量,减少了占用空间内的能源使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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