城市内部和城市之间的行人通透性有何不同?对德国所有大城市的精细评估

IF 7.1 1区 地球科学 Q1 ENVIRONMENTAL STUDIES
Ariane Droin , Michael Wurm , Matthias Weigand , Carsten Gawlas , Manuel Köberl , Hannes Taubenböck
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引用次数: 0

摘要

行人通透性是城市环境可达性的一个重要方面。特别是,高渗透性可提高城市的步行能力,这也是可持续城市设计实践所倡导的。以往关于行人通透性的研究主要集中在单一的、非常具体的、有特点的和同质化的城市形态上,但迄今为止还没有在更大范围内进行过调查。在本文中,我们运用 "个体步行街区"(IWN)的概念,对德国所有居民人数超过 10 万的大城市进行了当地城市行人通透性的测量。我们的结果表明,城市内部和城市之间的行人通透性存在很大差异,并根据实例探讨了影响当地通透性的各种因素,如地形或结构类型。此外,通过大规模分析,我们还确定了德国城市高渗透性(如城市中心)或低渗透性(如独栋独立住宅区)的特征模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How does pedestrian permeability vary in and across cities? A fine-grained assessment for all large cities in Germany

Pedestrian permeability is a key aspect of the accessibility of urban environments. In particular, high permeability increases the walkability of cities, which is advocated by sustainable urban design practices. Previous research on pedestrian permeability has predominantly focused only on single and very specific, characteristic, and homogenous urban morphologies but investigations at a broader scale have not been conducted up to now. In this paper, we apply the concept of Individual Walkable Neighbourhoods (IWN) to measure local urban pedestrian permeability for all large cities in Germany with more than 100,000 inhabitants. Our results reveal great differences in intra- and inter-urban pedestrian permeability, and based on examples, we explore various factors that influence local permeability, such as topography or structural types. Furthermore, the large-scale analysis is used to identify characteristic patterns of high (e.g., urban centers) or low (e.g., neighbourhoods of single-family detached houses) permeability for German cities.

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来源期刊
CiteScore
13.30
自引率
7.40%
发文量
111
审稿时长
32 days
期刊介绍: Computers, Environment and Urban Systemsis an interdisciplinary journal publishing cutting-edge and innovative computer-based research on environmental and urban systems, that privileges the geospatial perspective. The journal welcomes original high quality scholarship of a theoretical, applied or technological nature, and provides a stimulating presentation of perspectives, research developments, overviews of important new technologies and uses of major computational, information-based, and visualization innovations. Applied and theoretical contributions demonstrate the scope of computer-based analysis fostering a better understanding of environmental and urban systems, their spatial scope and their dynamics.
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