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Interactions between lighting and space conditioning energy use in US commercial buildings

机译:美国商业建筑中照明与空间调节能源使用之间的相互作用

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摘要

Reductions in lighting energy have secondary effects on cooling and heating energy consumption. In general, lighting energy reductions increase heating and decrease cooling requirements of a building. The net change in a building's annual energy requirements, however, is difficult to quantify and depends on the building characteristics, operating conditions, and climate. This paper characterizes the effects of lighting/HVAC interactions on the annual heating/cooling requirements of prototypical US commercial buildings through computer simulations using the DOE-2.1E building energy analysis program. Twelve building types of two vintages and five climates are chosen to represent the US commercial building stock. For each combination of building type, vintage, and climate, a prototypical building is simulated with varying lighting power densities, and the resultant changes in heating and cooling loads are recorded. These loads are used together with market information on the saturation of the different HVAC equipment in commercial buildings to determine the changes in energy use and expenditures for heating and cooling. Results are presented by building type for the US as a whole. Therefore, the data presented in this paper can be used to assess the secondary effects of lighting-related federal policies with widespread impacts, such as minimum efficiency standards. Generally, in warm climates the interactions will induce monetary savings and in cold climates the interactions will induce monetary penalties. For the commercial building stock in the US, a reduction in lighting en
机译:照明能量的减少对制冷和供暖能耗具有次要影响。通常,减少照明能源会增加建筑物的采暖并降低制冷需求。但是,建筑物的年度能源需求的净变化很难量化,并且取决于建筑物的特性,运行条件​​和气候。本文通过使用DOE-2.1E建筑能耗分析程序进行计算机模拟,描述了照明/ HVAC交互作用对美国典型商业建筑的年度供暖/制冷需求的影响。我们选择了十二个具有两个年份和五个气候的建筑类型来代表美国的商业建筑存量。对于建筑物类型,年份和气候的每种组合,将模拟具有不同照明功率密度的原型建筑物,并记录由此产生的供暖和制冷负荷变化。这些负载与有关商业建筑中不同HVAC设备的饱和度的市场信息一起使用,以确定能耗和供暖和制冷支出的变化。结果按建筑物的总体类型列出。因此,本文提供的数据可用于评估与照明相关的联邦政策的次要影响,这些政策具有广泛的影响,例如最低效率标准。通常,在温暖的气候中,这种相互作用将导致节省金钱,而在寒冷的气候中,这些相互作用将导致金钱的惩罚。对于美国的商业建筑,减少照明

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