Item type |
デフォルトアイテムタイプ_(フル)(1) |
公開日 |
2024-12-12 |
タイトル |
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タイトル |
How do heat waves affect the relationship between built environment patches of different compactness and land surface temperature? |
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言語 |
en |
作成者 |
Ji, Yifeng
Peng, You
Tang, Hongyu
Li, Zhitao
Xia, Yiting
Feng, Tao
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アクセス権 |
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アクセス権 |
embargoed access |
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アクセス権URI |
http://purl.org/coar/access_right/c_f1cf |
権利情報 |
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言語 |
en |
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権利情報 |
© 2024. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/ |
権利情報 |
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言語 |
en |
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権利情報 |
This is not the published version. Please cite only the published version. |
権利情報 |
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言語 |
ja |
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権利情報 |
この論文は出版社版ではありません。引用の際には出版社版をご確認、ご利用ください。 |
主題 |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
Heat waves |
主題 |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
Built environment |
主題 |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
Compactness |
主題 |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
Non-stationary relationship |
主題 |
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言語 |
en |
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主題Scheme |
Other |
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主題 |
Optimal parameters-based geographical detectors model |
内容記述 |
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内容記述 |
The compactness of the urban built environment significantly affects land surface temperature (LST), especially during heat waves (HW). However, the mechanisms by which the configuration of key building patches in built environments of varying compactness drives LST are unclear. This study proposes a new research framework combining local climate zones (LCZ), spatial pattern type (SPT) and landscape index (LI) to reveal the impacts of key building patches on LST. Taking Shenyang as an example, we utilized the geographically weighted regression (GWR) method to reveal the non-stationary relationship between building patches with different compactness and LST during heat and non-heat waves, and an optimal parameters-based geographical detectors model (OPGDM) to explore the mechanisms by which the configuration of key building patches drives LST. The results show that HW enhances the spatially non-stationary effects of different types of building patches on LST. The configuration of key building patches in the open built environment drives LST more strongly than those in the compact built environment. The relationship between LIs and LST in key building patches exhibits diverse characteristics during heat and non-heat waves, so differentiated configuration optimization strategies are required for built environments of different compactness. The interactions of patch configurations also require emphasis, especially the patch complexity. The research findings help to formulate urban planning strategies from a climate adaptation and mitigation perspective to cope with the increasing frequency of extreme heat events. |
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言語 |
en |
内容記述 |
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内容記述タイプ |
Other |
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内容記述 |
This work was supported by China Scholarship Council (grant number 202306370025). |
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言語 |
en |
出版者 |
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出版者 |
Elsevier |
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言語 |
en |
言語 |
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言語 |
eng |
資源タイプ |
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資源タイプ識別子 |
http://purl.org/coar/resource_type/c_6501 |
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資源タイプ |
journal article |
出版タイプ |
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出版タイプ |
AM |
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出版タイプResource |
http://purl.org/coar/version/c_ab4af688f83e57aa |
関連情報 |
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関連タイプ |
isVersionOf |
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識別子タイプ |
DOI |
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関連識別子 |
https://doi.org/10.1016/j.buildenv.2024.112044 |
開始ページ |
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開始ページ |
112044 |
書誌情報 |
en : Building and Environment
巻 266,
p. 112044,
発行日 2024-09-03
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旧ID |
55847 |
備考 |
The full-text file will be made open to the public on 3 September 2026 in accordance with publisher's 'Terms and Conditions for Self-Archiving' |