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An effective Building Neighborhood Green Index model for measuring urban green space

机译:用于测量城市绿地的有效建筑邻里绿色指数模型

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Urban green space forms an integral part of urban ecosystems. Quantifying urban green space is of substantial importance for urban planning and development. Considering the drawbacks of previous urban green space index models, which established either through a grid method or green distribution, and the difficulty of the validation process of earlier urban green space index models, this study exploits the advantages of multisource high-resolution remote sensing data to establish a Building Neighborhood Green Index (BNGI) model. The model which analyzes the spatial configuration of built-up areas and the vegetation is based on the building-oriented method and considers four parameters - Green Index (GI), proximity to green, building sparsity, and building height. Comparing BNGI with GI in different types of characteristic building regions, it was found that BNGI evaluates urban green space more sensitively. It was also found that high-rise low-sparsity area has a lower mean value of BNGI (0.56) as compared with that of low-rise low-sparsity neighborhood (0.62), whereas mean GI (0.24) is equal for both neighborhoods. Taking characteristics of urban building and green types into consideration, BNGI model can be effectively used in many fields such as land suitability analysis and urban planning.
机译:城市绿地是城市生态系统的组成部分。量化城市绿地对于城市规划和发展至关重要。考虑到以前通过网格法或绿色分布建立的城市绿色空间指数模型的弊端,以及早期城市绿色空间指数模型验证过程的困难,本研究利用了多源高分辨率遥感数据的优势建立建筑物邻里绿色指数(BNGI)模型。该模型用于分析建成区和植被的空间配置,该模型基于面向建筑物的方法,并考虑了四个参数-绿色指数(GI),与绿色的接近度,建筑物稀疏度和建筑物高度。将BNGI与GI在不同类型的特色建筑区域中进行比较,发现BNGI对城市绿地的评估更为敏感。还发现,与低层低稀疏街区(0.62)相比,高层低稀疏区的BNGI平均值较低(0.56),而两个邻域的平均GI(0.24)均相等。考虑到城市建筑的特征和绿色类型,BNGI模型可以有效地用于土地适宜性分析和城市规划等许多领域。

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