热带高层住宅空调能耗和被动热舒适度与楼层的相关性

Kosisochukwu Chukwujindu, Ganapathy Kasiraman
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摘要

热带高层住宅建筑的热舒适度、建筑层高和暖通空调能耗之间的关系仍不明确。这些建筑因其巨大的高度和体积,以及热带地区炎热潮湿的天气而面临着巨大的制冷需求。建筑师和建筑开发商都知道,建筑楼层数的增加会增加能源需求,但对居住者热需求和空调能耗的影响还需要进一步研究。本研究旨在通过调查和实验方法,评估热带高层住宅建筑中被动热舒适度、空调能耗和楼层数之间的关系。结果表明,热感觉票数与建筑楼层之间以及空调能耗与楼层之间存在明显关系。研究还发现,热感觉票数与预测平均票数、空调能耗和预测不满意度之间存在很强的相关性。根据(TSV),夏季和季风季节热不满意度的最佳临界楼层分别是 22 层和 8 层。灵敏度为 90%,特异性为 92%。这项研究强调了解决高层建筑热舒适问题的重要性,以提高热带气候下的能源效率和热舒适度。
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Correlation of AC energy consumption and passive thermal comfort with floor levels in tropical high-rise residential dwellings
The relationship between thermal comfort, building floor levels, and HVAC energy consumption in tropical high-rise residential buildings remains unclear. These buildings face heavy cooling demands due to their immense height and volume, as well as hot-humid weather found in the tropics. Architects and building developers understand that an increase in a building's floor count increases its energy requirements, but the impact on occupant thermal requirements and AC energy consumption needs further investigation. This study aimed to evaluate the relationship between passive thermal comfort, AC energy consumption, and floor levels in tropical high-rise residential buildings through survey and experimental methods. The results showed a significant relationship between thermal sensation votes and building floor levels, as well as AC energy consumption and floor levels. The study also found a strong correlation between thermal sensation votes and predicted mean votes, AC energy use, and predicted people dissatisfied. The optimal cut-off floors for thermal dissatisfaction according to (TSV) are 22nd floor and 8th floor in summer and monsoon seasons respectively. With a 90% sensitivity and 92% specificity. This research highlights the importance of addressing thermal comfort in high-rise buildings to improve energy efficiency and thermal comfort in tropical climates.
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