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Hidden Power Drains: Residential Heating and Cooling Fan Power Demand

机译:隐藏式电源排水:住宅加热和冷却风扇电源需求

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This paper complies power draw, airflow, and static pressure measurements of residential air handlers taken during nine separate field tests of space conditioning systems in Arizona, California, Florida, nevada, and Canada. The firld tests show that air handler power draws exceed the standard assumptions and that the interactions between airflow and cooling capacity combine to degrade overall system efficiency. The findings support conclusions from previous research in Canada that called for a systems approach to improving air handler efficinecy. This study reports that fan power in U.S. air conditioners is about 40percent higher than estimates used in the DOE Central AC and Heat Pump Test Procedure when rating air conditioners. Some fan power draws approach 1000 watts, similar to adding a 1000 watt electric resistance heater in the air stream. The low assumed power draw: masks the need for continued improvements in air handler and overall system performance; creates operating cost penalties for customers; and increases utility demand on peak. Application of more effective filters without attention to static pressure considerations would exacerbate these effects by raising air horsepower and power draw.
机译:本文符合电力消耗,空气流通,并在亚利桑那州,加利福尼亚州,佛罗里达州,内华达州和加拿大空间调节系统的九个单独的现场测试采取住宅空气处理机组的静压测量。该firld试验表明,空气处理机功率吸引超过标准的假设和气流和冷却能力之间的相互作用结合起来,降低整体系统效率。这一发现支持从以前的研究结论在加拿大,呼吁对系统的办法来提高空气处理efficinecy。这项研究报告在美国空调风机功率大约是40percent比DOE中央空调和热泵测试程序时的评价空调使用的估计要高。一些风扇电源汲取方法千瓦特,类似于在空气流中加入1000瓦电阻加热器。低上台抽奖:口罩需要在空气处理机组和整体系统性能有了进一步的提高;创建工作为客户提供高性价比的处罚;并增加高峰实用需求。更有效的过滤器,而不重视应用静压考虑将加剧通过提高空气马力和功率消耗这些效果。

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