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논문 기본 정보

자료유형
학술저널
저자정보
문수영 (한국건설기술연구원) 장대희 (한국건설기술연구원)
저널정보
한국생태환경건축학회 KIEAE Journal KIEAE Journal Vol.12 No.2(Wn.54)
발행연도
2012.4
수록면
65 - 75 (11page)

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The rapid urbanization caused drastic temperature changes in Korea. Excessive urbanization and development result in unpredictable and abnormal climate change all over the world. These changes are reflected in Korean government policy and research about cities, such that various research endeavors have been undergone recently. There are lots of ways to improve the urban environment; the easiest way to solve the urban heat effect problem is to make green spaces within the city. Even though we can’t enlarge green spaces over the city limitlessly, it is desperately need for a methodology to efficiently create green space in limited area. Based on awareness of issues as mentioned earlier, we would like to propose landscaping method that can increase thermal comfort in the same area. For this study, simulating the change of temperature, mean radiant temperature, PMV were done due to number of species planted in apartment complex. To increase the reliability of the simulation, first above all, field measurement for temperature change was performed in apartment complex, where residential building are arranged in the form of ?. And based on this data, Envi-met simulation was performed varying 1-7 kinds of species divided by grass, shrubs, arbor (deciduous, conifers) planted in apartment complex. As a result, there was a change less than 1℃ with the increasing number of species in daytime, but the average radiation temperature about 6-7℃ was reduced. In addition, PMV index was improved by more than 0.5 point. Thermal comfort indicator improved significantly depending on the number of species during the day, on the other hand, there were no significant changes at night. As a consequence, this study has shown that not single-species planting but mixed planting varied the number of species would improve the thermal comfort in the same area of landscaping space at daytime.

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Abstract
1. 서론
2. 선행연구 고찰
3. 연구방법론 및 분석조건 설정
4. 식재유형 변화에 따른 온도변화 결과 분석
5. 결론 및 향후 연구방향
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