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The results of heat balance analysis show the latent heat consumption of evapotranspiration at greening system to prevent increase sensible heat. It became clear that light and thin rooftop greening had effect of mitigating the urban heat island effect from the above result. 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  1. 防災科研関係論文

軽量薄層型屋上緑化システムにおけるヒートアイランド緩和効果

https://nied-repo.bosai.go.jp/records/6664
https://nied-repo.bosai.go.jp/records/6664
585a7a92-0540-454c-881b-cff4dbac961d
Item type researchmap(1)
公開日 2024-06-03
タイトル
言語 ja
タイトル 軽量薄層型屋上緑化システムにおけるヒートアイランド緩和効果
タイトル
言語 en
タイトル Mitigating the Urban Heat Island Effect by Light and Thin Rooftop Greening
言語
言語 jpn
著者 山口 隆子

× 山口 隆子

ja 山口 隆子

en YAMAGUCHI Takako

Search repository
横山 仁

× 横山 仁

ja 横山 仁

en YOKOYAMA Hitoshi

Search repository
石井 康一郎

× 石井 康一郎

ja 石井 康一郎

en ISHII Kouichirou

Search repository
抄録
内容記述タイプ Other
内容記述 A main enumeration was carried out for mitigating the urban heat island effect by light and thin rooftop greening at the existent building. Six kinds of light and thin rooftop greening systems were installed on the existent building roof, and those heat characteristic and heat balance were analyzed. Surface temperature of the non-greening area was the highest, 60°C. Surface temperature of greening area was 30-35°C in the time when the irrigation was done regularly, and it was 35-45°C in the time when the irrigation was reduced. About accumulated evapotranspiration, in the time when the irrigation was reduced, Grass area was about 3kg/m&sup2, but Sedum Mexicanum Britton area was 0.4-2.0 kg/m&sup2. The results of heat balance analysis show the latent heat consumption of evapotranspiration at greening system to prevent increase sensible heat. It became clear that light and thin rooftop greening had effect of mitigating the urban heat island effect from the above result. It confirmed that mitigating the urban heat island effect by rooftop greening varied in the kind of plant, water condition and so on.
言語 ja
抄録
内容記述タイプ Other
内容記述 A main enumeration was carried out for mitigating the urban heat island effect by light and thin rooftop greening at the existent building. Six kinds of light and thin rooftop greening systems were installed on the existent building roof, and those heat characteristic and heat balance were analyzed. Surface temperature of the non-greening area was the highest, 60°C. Surface temperature of greening area was 30-35°C in the time when the irrigation was done regularly, and it was 35-45°C in the time when the irrigation was reduced. About accumulated evapotranspiration, in the time when the irrigation was reduced, Grass area was about 3kg/m&sup2, but Sedum Mexicanum Britton area was 0.4-2.0 kg/m&sup2. The results of heat balance analysis show the latent heat consumption of evapotranspiration at greening system to prevent increase sensible heat. It became clear that light and thin rooftop greening had effect of mitigating the urban heat island effect from the above result. It confirmed that mitigating the urban heat island effect by rooftop greening varied in the kind of plant, water condition and so on.
言語 en
書誌情報 ja : ランドスケープ研究 : 日本造園学会誌 : journal of the Japanese Institute of Landscape Architecture
en : Journal of The Japanese Institute of Landscape Architecture

巻 68, 号 5, p. 509-512, 発行日 2005-03-31
出版者
言語 ja
出版者 社団法人日本造園学会
出版者
言語 en
出版者 The Japanese Institute of Landscape Architecture
ISSN
収録物識別子タイプ ISSN
収録物識別子 1340-8984
DOI
関連識別子 10.5632/jila.68.509
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