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Development and Testing of an Integrated Residential Night Ventilation Cooling System

机译:集成式住宅夜间通风冷却系统的开发和测试

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摘要

A project completed in 2004 titled "Alternatives to Compressor Cooling" showed that carefully controlled mechanical ventilation cooling can significantly reduce summer peak load and can eliminate the need for vapor compression cooling in areas between the California coastline and the central valley. This technology is most applicable in dry climates where vapor compression cooling is needed only a few days of the year and hot, dry climates that have a dry-bulb temperature range approaching 30℉ (17℃), which include much of the West, Southwest, and areas of the Northeast. This paper describes the technology and its development, reviews field tests completed under the California Energy Commission and Department of Energy Building America program sponsorship, and presents computer simulation and monitoring results. For the California houses and climates evaluated, cooling demand was reduced 40% to 79% and cooling energy savings ranged from 0% to 65%.
机译:2004年完成的一个名为“压缩机冷却替代品”的项目表明,精心控制的机械通风冷却可以显着降低夏季的高峰负荷,并且可以消除加利福尼亚海岸线和中央山谷之间地区的蒸汽压缩冷却。该技术最适用于一年中仅需几天进行蒸气压缩冷却的干旱气候以及干球温度范围接近30℉(17℃)的炎热干燥气候,其中包括美国西部,西南部的大部分地区,以及东北地区。本文介绍了该技术及其发展,回顾了在加利福尼亚能源委员会和美国能源建筑部计划赞助下完成的现场测试,并介绍了计算机模拟和监测结果。对于所评估的加利福尼亚房屋和气候,制冷需求减少了40%至79%,制冷能耗节省了0%至65%。

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