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Applying a novel urban structure classification to compare the relationships of urban structure and surface temperature in Berlin and New York City

机译:应用新颖的城市结构分类法比较柏林和纽约市的城市结构与地表温度的关系

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This study introduces a novel approach to classifying urban structure using land cover and building height. The goal of the study was to improve comparability of urban structure function relationships across cities through development of a novel classification framework that can facilitate urban studies of ecological patterns and processes. We tested the suitability of the classification in two very different urban settings continental Berlin and coastal New York City. Using Landsat temperature data as an ecological function variable, we compared how urban structures in both cities relate to temperature. Results show that in both cities a large range of urban structure classes show similar trends with respect to land surface temperature, despite differences in climate and structure of the two cities. We found that approximately 68% of the area of Berlin and 79% of the area of New York City can be represented with the same fifteen urban structure classes. Results indicate that these common classes share very similar temperature patterns and may indicate broader utility of the classification framework. Among the classes which have the most dissimilar temperature trends between the two cities, we find large differences in inner-class composition and neighboring classes. Findings also show that the presence of water has a strong influence on temperature regulation, as classes containing water have the lowest surface temperatures, indicating a need for prioritizing aquatic ecosystems in urban planning and management. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本研究介绍了一种使用土地覆盖物和建筑物高度对城市结构进行分类的新颖方法。该研究的目的是通过开发一种新型分类框架来改善整个城市的城市结构功能关系的可比性,该分类框架可以促进城市对生态模式和过程的研究。我们在柏林和纽约沿海两个截然不同的城市环境中测试了分类的适用性。使用Landsat温度数据作为生态功能变量,我们比较了两个城市的城市结构与温度的关系。结果表明,尽管两个城市的气候和结构存在差异,但大范围的城市结构类别在地表温度方面显示出相似的趋势。我们发现,柏林地区约68%的面积和纽约市面积的79%可以用相同的15种城市结构类别表示。结果表明,这些常见类别具有非常相似的温度模式,并且可能表明分类框架的用途更广。在两个城市之间温度趋势最不相似的类别中,我们发现内部阶层组成和邻近阶层之间存在很大差异。研究结果还表明,水的存在对温度调节有很大的影响,因为含水的类别具有最低的地表温度,表明在城市规划和管理中需要优先考虑水生生态系统。 (C)2014 Elsevier Ltd.保留所有权利。

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