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Simulated Influence of Roof Reflectance on the Building Energy Balance in Two Northern Cities

机译:北部两个城市的屋顶反射率对建筑能量平衡的模拟影响

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Solar irradiation on the roof surfaces of buildings affects cooling and heating energy demand. In this study the effect of enhanced roof reflectance is investigated using computer simulations of a prototype large retail building with four roof insulation levels (R-4 through R-24) driven by hourly weather data for Minneapolis, MN. The dark roof surface temperatures in the summer reach more than 160℉ (71℃); the white roof reaches about 100℉ (38℃), leadingto 6%-17% lower cooling energy consumption. Although the increased heating costs in the winter negate a portion of the cooling savings, the total energy cost savings of the white roof are still positive. Also, a reduction in the maximum hourly compressor power—responsible for the monthly billed electric peak demand—of 0.06 to 0.3 W/ft~2 (0.6 to 3 W/m~2) can be consistently attributed to the high albedo roof. The demand cost savings may be in excess of the energy cost savings. The total annual savings a white roof can attain are in a range between $27/1,000 ft~2 ($0.3/m~2) and $10/1,000 ft~2 ($0.1/m~2) for R-4 and R-24 insulation. For Denver, CO., which has a warmer climate and is located farther south than Minneapolis, limited simulation results indicate total savings twice as high. With higher insulation levels, savings of a white roof compared to a black roof are lower, but total cost savings of increased roof albedo can be higher than the cost savings of increased insulation. Also, the effects of snow cover and the operation of an outside air economizer on the energy savings of a reflective roof are investigated.
机译:建筑物屋顶表面的太阳辐射会影响制冷和供暖的能源需求。在这项研究中,使用明尼苏达州明尼阿波利斯的每小时天气数据驱动的具有四个屋顶隔热等级(R-4至R-24)的大型零售原型建筑的计算机模拟,研究了提高屋顶反射率的效果。夏季黑暗的屋顶表面温度达到160℉(71℃)以上。白色屋顶达到约100℉(38℃),从而使冷却能耗降低6%-17%。尽管冬季增加的采暖成本抵消了部分制冷节省,但白色屋顶的总能耗节省仍然是积极的。同样,最大的每小时压缩机功率的减少(负责每月计费的电高峰需求)减少了0.06至0.3 W / ft〜2(0.6至3 W / m〜2),这可以归因于高反照率屋顶。需求成本节省可能超过能源成本节省。对于R-4和R-24隔热材料,白色屋顶每年可节省的总费用在$ 27 / 1,000 ft〜2($ 0.3 / m〜2)到$ 10 / 1,000 ft〜2($ 0.1 / m〜2)之间。对于气候较温暖且比明尼阿波利斯更南的科罗拉多州丹佛市,有限的模拟结果表明,总节省量是原来的两倍。在较高的隔热等级下,白色屋顶与黑色屋顶相比节省的成本较低,但是增加屋顶反照率的总成本节省可以高于增加隔热的成本节省。此外,还研究了积雪和外部空气节约器的运行对反射式屋顶节能的影响。

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