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HVAC EQUIPMENT RIGHT-SIZING: OCCUPANT COMFORT AND ENERGY SAVINGS POTENTIAL

机译:HVAC设备右尺寸:乘员舒适和节能潜力

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HVAC equipment uses a significant amount of electricity and affects occupant comfort. In recent years, ventilation code requirements have often driven the size of the equipment upward resulting in mismatched cooling capacities. Oversized cooling equipment will experience shorter run cycles which reduces the ability to dehumidify air and reduces the life span of the equipment. Increased humidity levels can lead to mold conditions resulting in building damage and occupant health issues. It is important to correctly match cooling capacities with the "real" load requirements of a facility, as this will reduce costs and increase comfort. Facilities undergoing Capital Renewal HVAC renovations were evaluated for energy saving opportunities. Facilities that had been experiencing combined high humidity and energy usage had revised load calculations performed to correctly size the equipment. Load calculations were performed twice: once to size the air handling units for code required ventilation quantities and another to place the "real" ventilation load on the cooling systems. Consideration was also given to part load conditions on equipment so that multiple compressors could be provided to match load conditions that were lower than peak design. A case study shows an example of a failed renovation resulting in excessive humidity levels. Subsequent renovations had load calculations performed to prevent this situation from occurring again and resulted in improved energy performance and lowering of humidity levels as demonstrated in successful case studies. In addition, there is increased acceptance of this practice which is reinforcing the need for right-sizing of equipment in new facilities rather than just renovations. Right-sized equipment reduces first cost, extends life span of equipment and future replacement costs, reduces energy use, and improves occupant comfort.
机译:HVAC设备采用大量电力,影响乘员舒适性。近年来,通风代码要求经常推动设备的尺寸向上,导致冷却能力不匹配。超大冷却设备将经历更短的运行循环,从而降低了空气的能力并减少了设备的寿命。增加的湿度水平可能导致模具条件导致建立损坏和乘员健康问题。重要的是要正确地匹配冷却能力,以设施的“真实”负载要求,因为这将降低成本并增加舒适度。为节能机会评估了资本续订HVAC翻新的设施。已经经历过高湿度和能源使用的设施已经修改了载荷计算,以正确尺寸的设备。进行两次负载计算:一次到尺寸的空气处理单元,用于代码所需的通风量,另一个用于将“真实”通风负载放置在冷却系统上。还考虑了设备上的部件负载条件,以便提供多个压缩机以匹配低于峰值设计的负载条件。案例研究显示了失败的翻新的示例,导致过度湿度水平。随后的改造具有载荷计算,以防止这种情况再次发生,导致成功案例研究中所证明的能量性能和降低湿度水平。此外,还增加了这种做法的接受,这加强了对新设施中设备的右尺寸的需要,而不是改造。右尺寸设备可降低第一件成本,延长设备的寿命和未来的更换成本,降低能源使用,并提高乘员舒适。

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