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자료유형
학술저널
저자정보
유지현 (한양대학교) 박준석 (한양대학교)
저널정보
한국건축친환경설비학회 한국건축친환경설비학회 논문집 한국건축친환경설비학회 논문집 제16권 제3호
발행연도
2022.6
수록면
193 - 205 (13page)

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Recently, due to sick house syndrome, the importance of indoor air quality is emerging. The method of managing the indoor air quality includes mechanical ventilation and natural ventilation. However, the majority of occupants prefer using natural ventilation rather than mechanical ventilation and even don’t know the existence of mandatory mechanical ventilation in residential building. Therefore, recent studies have focused on natural ventilation, which can easily manage the indoor air quality, and propose a ventilation guideline by developing a ventilation module due to the opening of the window. However, hot and cold outdoor air through the window opening affects the indoor temperature, which in turn has a big impact on energy consumption. Previous studies researched the window opening behavior (opening frequency and hours) with outdoor factors and found that the outdoor temperature had the greatest effect on window opening behavior. However, with this only window opening behavior, we couldn’t predict the precise energy consumption and couldn’t purpose the natural ventilation guideline because we don’t know the accurate volume of the outdoor air comes into the building. Therefore, in this study, field measurement is conducted for 4 complexes and 30 samples. we analyze the window opening behavior as same as previous study and the ventilation rates through carbon dioxide decay method. As a result, the measurement period could represent the outdoor temperature of korea. However, despite that outdoor temperature was similar, the distribution of indoor temperature was different by all the samples, especially in heating period. The window opening behavior and ventilation rates have correlation with outdoor temperature. The ventilation load was low in heating period, because of the lack of ventilation behavior. In contrast, the ventilation load in cooling period was greater than that in heating period.

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