在炎热的美国气候中,天空辐射减少了热质量需求,以实现100%的环境冷却

M. Sharp
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引用次数: 1

摘要

环境住宅是一种通过控制环境源的增益和损失,并在无源时利用热质量来调节温度变化,将室内温度保持在舒适范围内的建筑。在此之前,在美国的11个气候带中,被动式太阳能作为供暖源和通风作为制冷源已经确定了必要的建筑特征[1]。值得注意的是,在炎热的气候中,如亚利桑那州凤凰城,室外温度太热而无法冷却的时间很长,因此需要大量的热质量来避免室内过热。本文比较了美国所有16个气候带的天空辐射和夜间通风冷却的热质量需求,包括3C和4C海洋分区以及极冷和亚北极7和8区。研究表明,在拉斯维加斯、迈阿密、新奥尔良和凤凰城的炎热气候中,天空辐射提供了更短的冷却不可用间隔,并允许更小的热质量来实现全年的室内舒适,而在凉爽的气候中,它没有显著的好处,在那里,热质量更多地取决于在冬季多云时期减缓室内温度下降的需要。特别是在费尔班克斯,AK(第8区),冬季近三个月没有明显的太阳能增益,需要大量的热质量来保持室内舒适。需要最小的热质量来满足较小的夏季冷却需求,并且天空和通风冷却都足够。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sky radiation decreases thermal mass requirements to achieve 100% ambient cooling in hot US climates
Ambient House is a building that maintains indoor temperature within a comfortable range by controlling gains and losses from ambient sources and utilizing thermal mass to moderate temperature changes when the sources are unavailable. Previously, necessary building characteristics were determined for passive solar as the heating source and ventilation as the cooling source in eleven US climate zones [1]. It was noted that in hot climates, such as Phoenix, AZ, there are long periods during which outdoor temperature is too warm for cooling, necessitating large thermal mass to avoid indoor overheating. In this paper, thermal mass requirements are compared between sky radiation and nighttime ventilation cooling in all sixteen US climate zones, including marine subzones 3C and 4C and very cold and subarctic zones 7 and 8. It is shown that sky radiation provides shorter intervals of cooling unavailability and allows much smaller thermal mass to achieve year-round indoor comfort in the hot climates of Las Vegas, Miami, New Orleans and Phoenix, while it provides no significant benefits in cool climates, where thermal mass is dictated more by the need to slow the decrease in indoor temperature during cloudy periods in the winter. In Fairbanks, AK (zone 8), in particular, the lack of significant solar gains for almost three months during the winter requires large thermal mass to maintain indoor comfort. Minimal thermal mass is needed to meet the small summer cooling demand and both sky and ventilation cooling are sufficient.
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