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Estimates of cooling effect and energy savings for a cool white coating used on the roof of scale model buildings

机译:估计规模模型建筑物屋顶上使用的凉爽白色涂层的冷却效果和节能

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The solar reflectance and thermal emittance of uninsulated scale model buildings in Beijing were measured in the laboratory and the actual outdoor environment. The solar reflectance index (SRI), roof surface temperature and energy savings were estimated using DOE roof saving calculator. The roof albedo measured in the field tests is independent of the inverted pyranometer height. A 0.493 increase in solar reflectance (laboratory measurements) yields SRI increase by 67.5, roof surface temperature reduction by 25.5 °C, annual peak demand reduction by 0.1 kWm~(-2)yr~(-1), and annual net energy savings by 6.8 kWhm~(-2)yr~(-1), while a 0.459 increase in roof albedo (laboratory measurements) generates SRI increase by 62.3, roof surface temperature reduction by 23.5 °C, annual peak demand reduction by 0.1 kWm~(-2)yr~(-1), and annual net energy savings by 6.4 kWhm~(-2)yr~(-1). At the city scale, these savings would reduce emissions from China's power plants by 60 kton CO2, 1.1 kton NOx, 2.1 kton SO2 and 19.4 kton carbon dust for the laboratory tests and by 56.6 kton CO2, 1.0 kton NOx, 2.0 kton SO2 and 18.3 kton carbon dust for the field tests.
机译:在实验室和实际户外环境中测量了北京未质量的尺度模型建筑的太阳反射和热磁阻。使用DOE屋顶节省计算器估计太阳反射率指数(SRI),屋顶表面温度和节能。在现场测试中测量的屋顶是无关的倒置的拇指仪高度。太阳能反射率的增加(实验室测量)产量SRI增加67.5,屋顶表面温度降低25.5°C,年峰值需求减少0.1 kWm〜(-2)Yr〜(1),并节省年度净节能6.8 KWHM〜(-2)YR〜(-1),而屋顶的0.459增加(实验室测量)产生SRI增加62.3,屋顶表面温度降低23.5°C,减少0.1 kWm的年峰值需求〜( - 2)YR〜(-1),每年净节能6.4千瓦时〜(-2)Yr〜(-1)。在城市规模,这些节省将减少中国电厂的排放量60克尔顿二氧化碳,1.1克尔顿Nox,2.1克尔顿So2和19.4克尔顿碳粉尘,为56.6克尔顿二氧化碳,1.0克尔顿Nox,2.0 kton So2和18.3 Kton碳粉尘用于现场测试。

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