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Field measurement and modeling of UVC cooling coil irradiation for heating, ventilating, and air conditioning energy use reduction (RP-1738)Part 2: Energy, indoor air quality, and economic modeling

机译:UVC冷却盘管照射的现场测量和建模,用于加热,通风和空调能量使用减少(RP-1738)第2部分:能量,室内空气质量和经济型号

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Ultraviolet germicidal irradiation of cooling coil airside surfaces is used to mitigate biofouling caused by viable microorganisms captured from the air. However, few peer-reviewed studies have investigated its effectiveness. Part 1 of this study presents the results of field measurements of changes in coil performance after treatment with ultraviolet germicidal irradiation. Part 2 reports modeled energy use and indoor air quality impacts of coil irradiation, as well as results of a life-cycle cost analysis that combines energy, indoor air quality, capital, and maintenance costs. Life-cycle costs with coil ultraviolet germicidal irradiation are compared to life-cycle costs with mechanical coil cleaning. Models from the U.S. Department of Energy Commercial Reference Buildings set were used to predict the benefit of ultraviolet germicidal irradiation treatment of fouled coils for 7 buildings in 16 climate zones using pressure drop reduction estimates bounded by experimental results from Part 1 and results reported in literature. Indoor air quality benefits were estimated using a stochastic implementation of the Wells-Riley equation to predict infection rates and monetized metrics appropriate to the various occupancies considered. Using lower estimates of ultraviolet germicidal irradiation energy use impact, ultraviolet germicidal irradiation was economically superior to mechanical cleaning only when collateral air treatment benefits were considered. At the higher level of estimated improvement, ultraviolet germicidal irradiation was superior even without consideration of air quality impact.
机译:紫外线杀菌照射的冷却盘管空气侧表面用于减轻由空气中捕获的可行微生物引起的生物污垢。然而,很少有同行评审研究已经调查了其有效性。本研究第1部分介绍了用紫外杀菌辐照处理后线圈性能变化的现场测量结果。第2部分报告了模型的能量使用和线圈辐照的空气质量影响,以及将能源,室内空气质量,资本和维护成本结合的生命周期成本分析的结果。使用线圈清洁的螺旋紫外线灭虫的生命周期成本与机械线圈清洁的生命周期成本进行比较。来自美国的模型,商业参考建筑物集合用于预测使用由第1部分和文献中的实验结果有限的压降减少估计,在16个气候区中对7个建筑物的紫外线杀菌辐射处理的效益。利用井里莱利方程的随机实施来估计室内空气质量效益,以预测适合各种占用的感染率和货币化指标。利用较低估计紫外杀菌辐射能量使用的影响,紫外线杀菌辐射仅在考虑抵押空气处理益处时,才能经济地优于机械清洁。在估计的估计改善水平较高,即使不考虑空气质量的影响,紫外线杀菌辐照也是优异的。

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