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The relationship between filter pressure drop, indoor air quality, and energy consumption in rooftop HVAC units

机译:屋顶HVAC装置的过滤器压降,室内空气质量和能耗之间的关系

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HVAC filters are commonly used to decrease exposure to paniculate matter, yet little is known about the energy impacts and air quality consequences of high efficiency filters installed in commercial buildings. To explore these effects, system airflow, filter and coil pressure drop, fan pressure rise, and power draw were measured, and cooling capacity and compressor power were modeled for at least four filter pressure drops in 15 rooftop units equipped with and without fan speed control. Energy implications and clean-air-delivery-rate were estimated for a large dataset of filters divided into four efficiency (MERV) categories. Field measurements conducted on units without fan speed control showed that increased filter pressure drop decreased flow, cooling capacity, and power. For a unit with fan speed control, the same increase in pressure drop resulted in the same magnitude change of fan power but in the opposite direction, and other parameters were unchanged. Replacing MERV 8 with MERV 13/14 resulted in higher energy consumption (2-4%) during cooling mode for both unit types, energy savings during fan-only mode (8-13%) in units without fan speed control, and increased energy consumption in fan-only mode (11-18%) in the unit with fan speed control. Energy consumption increases were offset by improvement in clean-air-delivery-rate, especially for PM_(2.5) (2.9-3.8 times increase going from MERV 8 to MERV 13/14), with larger benefits achieved for the unit with fan speed control. A comprehensive understanding of the impact of filtration is essential to selecting the appropriate efficiency of filters that ensures low-energy use and a healthy indoor environment.
机译:HVAC过滤器通常用于减少暴露于颗粒物,但是对于安装在商业建筑中的高效过滤器的能量影响和空气质量后果知之甚少。为了探究这些影响,测量了系统气流,过滤器和盘管压降,风扇压力上升以及功率消耗,并模拟了15个装有和不带风扇速度控制的屋顶单元中至少四个过滤器压降的冷却能力和压缩机功率。 。对于大型过滤器数据集(分为四类效率(MERV)),估计了能源影响和清洁空气传递率。在没有风扇速度控制的设备上进行的现场测量表明,增加的过滤器压降会降低流量,冷却能力和功率。对于具有风扇速度控制的设备,相同的压降增加会导致风扇功率的大小变化相同,但方向相反,其他参数不变。用MERV 13/14替换MERV 8会导致两种类型的设备在冷却模式下的能耗更高(2-4%),在没有风扇速度控制的设备中,仅风扇模式下的能耗节省(8-13%),并且能耗增加带风扇速度控制的设备在仅风扇模式下的能耗(11-18%)。能源消耗的增加被清洁空气输送率的提高所抵消,特别是对于PM_(2.5)(从MERV 8到MERV 13/14增长了2.9-3.8倍),带有风扇速度控制的装置获得了更大的收益。全面了解过滤的影响对于选择合适的过滤效率以确保低能耗和健康的室内环境至关重要。

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