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Life-Cycle Cost Analysis on Glass Type of High-Rise Buildings for Increasing Energy Efficiency and Reducing CO_2 Emissions in Korea

机译:韩国用于提高能源效率和减少CO_2排放的玻璃高层建筑的生命周期成本分析

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As the heights of high-rise buildings increase, their building area and elevation area also increase, consequently increasing their yearly energy consumption. Energy efficiency has become an even more important issue, especially when glass is used for a building's exterior. In this study, the life-cycle cost (LCC) of the exterior glass of high-rise buildings was analyzed from the perspective of energy efficiency and CO_2 emissions. First, the LCC was analyzed according to changes in the selected types of glass. Reflective + Low-E (Type 1), double Low-E + Argon (Type 2), and triple Low-E + Argon (Type 3), which satisfy green building certification criteria and were used in the past for high-rise buildings in Korea, were selected as the exterior glass types. These types of exterior glass were applied to a case building and compared with the Low-E glass that was the existing glass type of a case building. The economic benefit of selected glasses for 40 years was greater in the order of Type 1, Type 3, and Type 2 compared to the existing glass. Second, these types of glass were applied to each orientation of the building. By changing the glass according to building orientation it is shown that in the east, west, and north, Type 1 was most economical, whereas Type 3 was most economical in the south. The results of this study will contribute to the improvement of energy efficiency, CO_2 emissions reduction, and cost efficiency of future high-rise buildings.
机译:随着高层建筑的高度增加,它们的建筑面积和高程面积也增加,因此增加了它们的年度能耗。能源效率已经成为一个更加重要的问题,尤其是当玻璃用于建筑物的外部时。在这项研究中,从能源效率和CO_2排放的角度分析了高层建筑的外墙玻璃的生命周期成本(LCC)。首先,根据所选玻璃类型的变化分析了LCC。反射+ Low-E(类型1),双重Low-E + Argon(类型2)和Triple Low-E + Argon(类型3),它们符合绿色建筑认证标准,过去曾用于高层建筑在韩国,被选为外部玻璃类型。将这些类型的外部玻璃应用于案例建筑,并与作为案例建筑的现有玻璃类型的Low-E玻璃进行比较。与现有玻璃相比,所选玻璃在40年内的经济效益按类型1,类型3和类型2的顺序更大。其次,将这些类型的玻璃应用于建筑物的每个方向。通过根据建筑物的方向更换玻璃,可以看出,在东部,西部和北部,类型1最经济,而类型3在南部最经济。这项研究的结果将有助于提高能源效率,减少CO_2排放并提高未来高层建筑的成本效率。

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