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首页> 外文期刊>Energies >Energy Performance Assessment of a 2nd-Generation Vacuum Double Glazing Depending on Vacuum Layer Position and Building Type in South Korea
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Energy Performance Assessment of a 2nd-Generation Vacuum Double Glazing Depending on Vacuum Layer Position and Building Type in South Korea

机译:韩国第二代真空双层玻璃的能源性能评估,取决于真空层位置和建筑物类型

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(1) Background: The application of high insulation to a building envelope helps reduce the heating load, but increases the cooling load. Evaluating the installation of high insulation glazing to buildings in climate zones with four distinct seasons, as in the case of South Korea, is very important; (2) Methods: This study compared the heating energy performance of four types of glazing, inside vacuum double glazing, outside vacuum double glazing, single vacuum glazing, and low-e double glazing, with fixed low-e coating positions on the inside of the room in a mock-up chamber under the same conditions. The annual energy consumption according to the building type was analyzed using a simulation; (3) Results: As the insulation performance of building envelopes has increased, the energy saving rate of inside vacuum double glazing has been increased further in office buildings. In residential buildings, the energy saving rate of inside vacuum double glazing with a low SHGC (solar heat gain coefficient) has become higher than that of outside vacuum double glazing; (4) Conclusions: Since the effects of SHGC on the energy saving rates are greater in high insulation buildings, SHGC should be considered carefully when selecting glazing in climate zones with distinct winter and summer seasons.
机译:(1)背景:在建筑物围护结构上使用高隔热层有助于减少热负荷,但增加了冷负荷。与韩国一样,评估在四个不同季节的气候带中建筑物的高隔热玻璃的安装非常重要; (2)方法:本研究比较了四种类型的玻璃的加热能性能:内部真空双层玻璃,外部真空双层玻璃,单真空玻璃和低辐射双层玻璃,在其内部固定低辐射涂层位置在相同条件下将房间放置在模拟房间中。通过模拟分析了根据建筑物类型的年度能耗; (3)结果:随着建筑围护结构隔热性能的提高,办公楼内部真空双层玻璃的节能率进一步提高。在住宅建筑中,SHGC(太阳能吸热系数)低的室内真空双层玻璃的节能率已经高于室外真空双层玻璃的节能率。 (4)结论:由于SHGC在高隔热建筑中对节能率的影响更大,因此在冬季和夏季不同的气候区选择玻璃时,应谨慎考虑SHGC。

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