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Network criticality and the node-place-design model: Classifying metro station areas in Greater London

机译:网络重要性和节点位置设计模型:对大伦敦地铁站区域进行分类

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Centralisation of activities and developments around metro station areas is a key transit-oriented development (TOD) policy to encourage more public transport travel through providing maximum access to passengers, thereby enhancing economic efficiency, health, well-being and social inclusion. The node-place-design model is an analytical approach, which investigates the interaction between land use, transportation and the walking friendliness around station areas. Nevertheless, current research focuses on the role station areas plays at the local scale, and little consideration is given to the strategic network (system) level. In this research, we combine a strategic network indicator (criticality) with the node-place-design model to gain deeper insights into London metro station areas in terms of their transit-oriented-development at both local and system levels. Our research has three principal findings: first, most of station areas in Greater London show balanced situations between transport and land use development, except for some stations with a non-walking friendly environment such as Victoria station. Second, the two-tier approach finds that the system criticality of each station area can vary substantially even within the same cluster grouped by the original node-place-design model. Therefore, identifying station groups with relatively high network criticality and relatively low node-place-design score is of potential value. The promising transport connection and less-developed conditions of those station areas could help policymakers locate an intensification-diversification TOD group. Conversely, locations with high node place-design values but low criticality could point to stations suitable for network expansion (new lines or interchanges). Third, the result reconfirms the value of introducing the third dimension design into the TOD evaluation of stations at the local scale. The relatively low correlation between node and design value is consistent with previous findings that a transport service-intensive and functionally diverse metro station area does not necessarily produce an accessible friendly walking environment. Overall, the paper provides a platform for further studies integrating strategic network and node-place-design attributes.
机译:集中地铁站周边地区的活动和发展是一项关键的,以公交为导向的发展(TOD)政策,旨在通过提供最大程度的乘客出入来鼓励更多的公共交通旅行,从而提高经济效率,健康,福祉和社会包容性。节点-地点设计模型是一种分析方法,它研究土地使用,运输和车站周围步行友善性之间的相互作用。然而,当前的研究集中在车站区域在地方范围内所扮演的角色,而很少考虑战略网络(系统)层面。在这项研究中,我们将战略性网络指标(临界度)与节点放置设计模型相结合,以针对伦敦地铁车站区域在本地和系统层面的公交导向发展方面获得更深入的了解。我们的研究有三个主要发现:第一,大伦敦的大多数车站区域在交通和土地利用开发之间显示出平衡的状况,除了一些非步行友好环境的车站,例如维多利亚车站。其次,两层方法发现,即使在由原始节点放置设计模型分组的同一集群内,每个站点区域的系统关键性也可能发生很大变化。因此,识别具有相对较高的网络关键性和相对较低的节点位置设计得分的站点组具有潜在价值。这些车站地区有希望的交通连接和欠发达的条件可以帮助决策者找到集约化多元化TOD小组。相反,具有高节点布局设计值但低关键性的位置可能指向适合网络扩展的站点(新线路或互换)。第三,结果再次证明了将三维设计引入地方规模的站点的TOD评估中的价值。节点与设计值之间相对较低的相关性与先前的发现一致,即运输服务密集且功能多样的地铁站区域不一定会产生可访问的友好步行环境。总体而言,本文为整合策略网络和节点位置设计属性的进一步研究提供了平台。

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