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A Model for Assessing Pedestrian Corridors. Application to Vitoria-Gasteiz City (Spain)

机译:行人走廊评估模型。申请到维多利亚-加斯蒂兹市(西班牙)

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From a mobility perspective, walking is considered to be the most sustainable transport mode. One of the consequences of motor-oriented urban configuration on pedestrian mobility is urban fragmentation, which affects sustainability in cities. In this paper, we use a natural-based approach to landscape fragmentation and connectivity (inherited from landscape ecology) for pedestrian mobility planning. Our aim is to design a useful methodology to identify priority pedestrian corridors, and to assess the effects of implementing barrier-free pedestrian corridors in the city. For this purpose, we developed a method that integrates Geographical Information Systems (GIS) network analysis with kernel density methods, which are commonly used for designating habitat corridors. It was applied to Vitoria-Gasteiz (Spain). Pedestrian mobility was assessed by comparison of travel times between different scenarios. Results show that the implementation of pedestrian corridors reduces travel time by approximately 6%. Thus, an intervention in a small percentage of the city’s street network could considerably reduce pedestrian travel times. The proposed methodology is a useful tool for urban and transport planners to improve pedestrian mobility and manage motorised traffic.
机译:从机动性的角度来看,步行被认为是最可持续的交通方式。面向汽车的城市配置对行人出行的影响之一是城市碎片化,这影响了城市的可持续性。在本文中,我们使用一种基于自然的方法来进行景观破碎化和连通性(从景观生态学继承),用于行人交通规划。我们的目标是设计一种有用的方法来识别优先的人行通道,并评估在城市中实施无障碍人行通道的效果。为此,我们开发了一种将地理信息系统(GIS)网络分析与内核密度方法(通常用于指定栖息地走廊)的方法相集成的方法。它已应用于Vitoria-Gasteiz(西班牙)。通过比较不同情景之间的出行时间来评估行人的流动性。结果表明,行人走廊的实施将旅行时间减少了大约6%。因此,对城市街道网络的一小部分进行干预可以大大减少行人的出行时间。所提出的方法学是城市和交通规划者改善行人流动性和管理机动车交通的有用工具。

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