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首页> 外文期刊>Journal of the Institute of Engineering >Impact of Rise in Atmosphere Temperature on an Official Building’s Energy Consumption in Kathmandu
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Impact of Rise in Atmosphere Temperature on an Official Building’s Energy Consumption in Kathmandu

机译:气温升高对加德满都官方建筑能耗的影响

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The objective of this research is to study the impact of rise in atmospheric temperature, in buildings energy consumption in the future. An existing Typical Meteorological Year (TMY) weather file of time span 1973-1996 composed of weather data by Solar and Wind Energy Resource Assessment (SWERA) project is assumed as the baseline climate in this study. Monthly average temperature of future years in business as usual scenario predicted by Meteonorm is downscaled to hourly temperature data using downscaling method, morphing. This showed that annual average air temperature of the atmosphere will increase by 1.64?0C, 2.12?0C, 2.52?0C and 2.28?0C from baseline year in the years 2010, 2020, 2030, and 2040 respectively. Building energy simulation tool eQUEST is used to analyze the energy consumption pattern of a selected building located in Kathmandu. Study has shown that total energy consumption of the building for heating, cooling, lighting and miscellanies equipment will increase by 4.9%, 6.2%, 7.3% and 8.3% for the years 2010, 2020, 2030 and 2040 respectively from baseline year whereas cooling load will increase by 19%, 23%, 27% and 31%. The study also has shown that insulating a building will decrease the energy consumption. There will be decrease in the cooling energy consumption by 2.29%, 2.98%, 4.06% and 4.78% in the years 2010, 2020, 2030 and 2040 respectively after addition of insulation material mineral wool/fiber. Journal of the Institute of Engineering, 2017, 13(1): 102-107.
机译:这项研究的目的是研究未来气温升高对建筑物能耗的影响。本研究假设现有的1973-1996年典型气象年(TMY)气象文件是由太阳能和风能资源评估(SWERA)项目提供的气象数据构成的基线气候。将Meteonorm预测的照常运行的情况下,未来几年的月平均温度使用缩减方法(降级)缩减为每小时温度数据。这表明大气年平均气温将分别比2010年,2020年,2030年和2040年的基准年分别增加1.64°C,2.12°C,2.52°C和2.28°C。建筑能耗模拟工具eQUEST用于分析位于加德满都的选定建筑的能耗模式。研究表明,与基准年相比,到2010年,2020年,2030年和2040年,建筑物供暖,制冷,照明和杂项设备的总能耗将分别增长4.9%,6.2%,7.3%和8.3%。将分别增长19%,23%,27%和31%。研究还表明,对建筑物进行隔热将降低能耗。加入保温材料矿棉/纤维后,2010年,2020年,2030年和2040年的制冷能耗将分别下降2.29%,2.98%,4.06%和4.78%。工程学院学报,2017,13(1):102-107。

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