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Evaluation of Hydronic Forced-Air and Radiant Slab Heating and Cooling Systems

机译:水力强迫空气和辐射板坯加热和冷却系统的评估

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摘要

A contemporary house located in California has a unique HVAC system featuring radiant floor heating and cooling, forced-air hydronic heating and cooling, and a system that ventilates the house at night to reduce air conditioner energy use by pre-cooling building mass. The purpose of this study was to compare the energy consumption and electrical power demand characteristics of the various heating and cooling operating modes. Cooling season testing involved three different operating modes during similar weather conditions and comparable indoor comfort conditions. Heating testing involved operation in two test modes: hydronic radiant floor heating and hydronic forced-air heating, both by heating water with natural gas. Energy performance results reveal that slab pre-cooling caused some of the energy demand to shift from primarily in the afternoon. Coupling slab pre-cooling with nighttime ventilation air significantly shifted the energy demand load from primarily in the afternoon to late night with the load coming mainly from the fan. Also, during comparable outside conditions, there were appreciable energy differences among cooling modes and no identifiable energy advantage was noticed during the heating mode.
机译:位于加利福尼亚的一所现代房屋具有独特的HVAC系统,该系统具有辐射地板采暖和制冷,强制空气循环采暖和制冷的功能,以及一种在夜间为房屋通风的系统,以通过对建筑物进行预冷来减少空调能耗。这项研究的目的是比较各种加热和冷却操作模式的能耗和电力需求特征。在类似的天气条件和可比的室内舒适条件下,凉爽季节测试涉及三种不同的运行模式。采暖测试涉及两种测试模式的运行:水力辐射地板采暖和水力强迫空气采暖,两者都通过用天然气加热水来进行。能源绩效结果显示,板坯预冷导致部分能源需求从下午开始转移。板坯预冷与夜间通风空气的耦合将能源需求负荷从主要在下午转移到了深夜,负荷主要来自风扇。同样,在可比的外部条件下,冷却模式之间存在明显的能量差异,在加热模式下未发现明显的能量优势。

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