Suppr超能文献

利用太阳能对送风进行干燥,降低热带地区办公室的热应激。

Reduced heat stress in offices in the tropics using solar powered drying of the supply air.

作者信息

Gunnarsen L, Santos A M B

机构信息

University of the Philippines.

出版信息

Indoor Air. 2002 Dec;12(4):252-62. doi: 10.1034/j.1600-0668.2002.07115.x.

Abstract

Many solutions to indoor climate problems known from developed countries may have prohibitive installation and running costs in developing countries. The purpose was to develop a low-cost solution to heat stress in a hot and humid environment based on solar powered drying of supply air. Dry supply air may facilitate personal cooling by increased evaporation of sweat. Heat acclimatized people with efficient sweating may in particular benefit from this cooling. A prototype solar powered supply system for dried-only air was made. Air from the system was mixed with room air, heated to six different combinations of temperature and humidity and led to Personal Units for Ventilation and Cooling (PUVAC) in six cubicles simulating office workplaces. A total of 123 heat acclimatized subjects were exposed 45 min in each of the cubicles. A model for the combined effect of operative temperature of room, moisture content of room air, temperature of supply air and moisture content of supply air was developed based on the experiments. Reduction of moisture content in the supply air by 1.6 g/kg had the same effect as lowering the operative temperature by 1 degree C. The solar-powered system for supplying dry air is a low-cost alternative to traditional air conditioning in hot and humid regions.

摘要

发达国家已知的许多解决室内气候问题的方案,在发展中国家可能会有高昂的安装和运行成本。目的是基于供应空气的太阳能干燥,开发一种针对炎热潮湿环境中热应激的低成本解决方案。干燥的供应空气可能通过增加汗液蒸发来促进人体降温。具有高效出汗能力的热适应人群可能尤其受益于这种降温方式。制作了一个仅用于供应干燥空气的太阳能原型系统。该系统输出的空气与室内空气混合,加热到六种不同的温度和湿度组合,然后引入六个模拟办公场所的小隔间中的个人通风与冷却装置(PUVAC)。共有123名热适应受试者在每个小隔间中暴露45分钟。基于这些实验,开发了一个关于室内运行温度、室内空气湿度、供应空气温度和供应空气湿度综合影响的模型。供应空气中水分含量每降低1.6克/千克,与运行温度降低1摄氏度具有相同的效果。在炎热潮湿地区,供应干燥空气的太阳能系统是传统空调的一种低成本替代方案。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验