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生态空间格局对城市热岛效应的影响
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作者 朱杉杉 《区域治理》 2021年第48期46-49,共4页
城市热岛效应是生态环境质量的综合体现,探讨生态空间格局对热岛空间的影响对高品质生活空间的打造有着重要意义。本研究基于济南市2013年、2019年夏季Landsat8ETM遥感影像数据反演城市地表温度,从斑块、景观水平两个层面选取常见的生... 城市热岛效应是生态环境质量的综合体现,探讨生态空间格局对热岛空间的影响对高品质生活空间的打造有着重要意义。本研究基于济南市2013年、2019年夏季Landsat8ETM遥感影像数据反演城市地表温度,从斑块、景观水平两个层面选取常见的生态景观指数,分析济南市生态空间格局对热岛效应的影响,实验结果表明,生态景观指数中对地表温度影响最大的是水利板块类型面积与林地斑块类型面积,济南市热岛空间向东、西两个方向呈扩张趋势,集中的大面积水面为城市温度最低点。 展开更多
关键词 城市热岛空间 城市生态空间格局 Landsat8
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卫星遥感在城市化和城市热岛监测中的应用 被引量:2
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作者 廖代强 朱浩楠 +1 位作者 姜平 柴闯闯 《气象科技进展》 2021年第2期69-75,共7页
基于1992年以来重庆区域内的DMSP/OLS夜间灯光数据、30 m高分辨率土地利用资料和MODIS地表温度遥感数据,对重庆城市发展与热岛强度关系及其城市热岛的空间分布进行研究。结果表明:重庆市城市发展指数与热岛强度指数呈明显正相关;城市热... 基于1992年以来重庆区域内的DMSP/OLS夜间灯光数据、30 m高分辨率土地利用资料和MODIS地表温度遥感数据,对重庆城市发展与热岛强度关系及其城市热岛的空间分布进行研究。结果表明:重庆市城市发展指数与热岛强度指数呈明显正相关;城市热岛的空间分布是重庆西部最强,渝东北次之,渝东南最弱;季节特征是夏半年热岛效应较强,强热岛面积最大,冬半年热岛效应较弱,面积较小。 展开更多
关键词 城市热岛 城市发展指数 城市热岛空间分布
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THERMAL EFFECTS OF BUILDING′S EXTERNAL SURFACES IN CITY——Characteristics of Heat Flux into and out of External Wall Surfaces 被引量:2
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作者 ZHANGYi-ping HEYun-ling +3 位作者 LIUYu-hong MAYou-xin LIYou-rong DOUJun-xia 《Chinese Geographical Science》 SCIE CSCD 2004年第4期343-349,共7页
This study examined the thermal effects of building′s external wall surfaces, using observational data of spatial-temporal distribution of surface temperature, air temperature, and heat flux into and out of external ... This study examined the thermal effects of building′s external wall surfaces, using observational data of spatial-temporal distribution of surface temperature, air temperature, and heat flux into and out of external surface. Results indicate that external wall surface temperature and nearby air temperature vary with the change of orientation, height and season. In general, the external wall surface temperature is lower near the ground, and is higher near the roof, than nearby air temperature. But north wall surface temperature is mostly lower than nearby air temperature at the same height; south wall surface temperature during the daytime in December, and west wall surface temperature all day in August, is respectively higher than nearby air temperature. The heat fluxes into and out of external wall surfaces show the differences that exist in the various orientations, heights and seasons. In December, south wall surface at the lower sites emits heat and north wall surface at the higher sites absorbs heat. In April, all external wall surfaces, emit heat near the ground and absorb heat near the roof. In August, west wall surface all day emits heat, and other wall surfaces just show the commensurate behavior with that in April. 展开更多
关键词 external wall surface thermal effect heat flux intensity spatial-temporal distribution
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Spatial Variation of the Characteristics of Urban Heat Island Effect in Hong Kong 被引量:1
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作者 Hing Yim Mok Man Chi Wu Cheuk Yin Cheng 《Journal of Civil Engineering and Architecture》 2011年第9期779-786,共8页
Recent studies by the Hong Kong Observatory show that the urban centre of Hong Kong has considerable Urban Heat Island (UHI) effect that arises from the different thermal properties between urban and the surrounding... Recent studies by the Hong Kong Observatory show that the urban centre of Hong Kong has considerable Urban Heat Island (UHI) effect that arises from the different thermal properties between urban and the surrounding rural areas. The studies have also shown that the urban-rural temperature difference or UHI intensity in the urban centre of Hong Kong can be greater than 10℃. However, the characteristics of UHI in Hong Kong would not be unique were it not for its complex topography and the significant spatial variation in the degree of urbanization within the territory. Making use of the extensive spatial coverage of the automatic weather stations operated by the Observatory, this study attempts to document the spatial variation of the characteristics of UHI effect in Hong Kong in summer and winter through cases studies. Cases in summer and winter with meteorological conditions typical for high UHI effect (that is, clear sky, light wind and stable atmospheric condition) are selected for the study. The characteristics of UHI effect in terms of the daytime warming rates, nocturnal cooling rates and diurnal temperature ranges at the selected automatic weather stations are analysed. The territory of Hong Kong is then classified into different categories according to the identified characteristics with a view to portraying the spatial morphology of UHI effect in Hong Kong. 展开更多
关键词 Hong Kong Urban Heat Island heating rotes cooling rates diumal temperature ranges.
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