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首页> 外文期刊>International journal of disaster resilience in the built environment >Resiliency cube A new approach for parametric analysis of earthquake resiliency in urban road networks
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Resiliency cube A new approach for parametric analysis of earthquake resiliency in urban road networks

机译:弹性立方体一种用于城市道路网地震弹性参数分析的新方法

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Purpose - This study aims to provide resiliency against earthquakes to the framework of an urban road network and to construct a comprehensive model with sufficient computational detail to assist metropolitan managers as a decision support tool in emergency situations via parametric analysis (model behaviour analysis with parameter changes) to quantify the consequences of decisions. Design/methodology/approach - Performed stages are: developing existing resilience assessment frameworks for use against earthquakes in urban road networks, identifying earthquake scenarios and estimating the weight of components using AHP, including an example modelling of Tehran; and developing modelling software (using Matlab®). Findings - This study produced a software that performs three-dimensional (3D) graphical modelling, resiliency index measurements and its parametric analyses for the road networks against earthquakes. Based on this model, a prioritized list of upgrades is also introduced. The developed tool also addresses issues regarding the allocation of limited resources between the network components. Research limitations/implications - Because of the novelty of the study, there is limited literature on this topic. Practical implications - The developed model provides urban managers with a comprehensive list of upgrades and empowering them to graphically and numerically evaluate the resiliency changes as they alter the parameters of these measures and balance their decisions based on available funding. Originality/value - In contrast to previous studies, this study has focused on all of these three keywords: resiliency, earthquake and road networks, and not only two of them.
机译:目的-这项研究旨在为城市道路网络的框架提供抗震能力,并构建具有足够计算细节的综合模型,以通过参数分析(具有参数变化的模型行为分析)协助大都会管理人员作为紧急情况下的决策支持工具。 )以量化决策的后果。设计/方法/方法-执行的阶段包括:开发现有的抗灾能力评估框架,以抗城市道路网络中的地震;确定地震场景,并使用AHP估算组件的重量,包括德黑兰的示例建模;并开发建模软件(使用Matlab®)。调查结果-这项研究开发了一种软件,该软件可以对地震路网进行三维(3D)图形建模,弹性指数测量及其参数分析。基于此模型,还介绍了升级的优先级列表。开发的工具还解决了有关在网络组件之间分配有限资源的问题。研究的局限性/含义-由于这项研究的新颖性,有关该主题的文献有限。实际意义-所开发的模型为城市管理人员提供了全面的升级清单,使他们能够以图形和数字方式评估弹性变化,因为他们可以更改这些措施的参数并根据可用资金来平衡决策。原创性/价值-与以前的研究相比,本研究重点关注所有这三个关键字:复原力,地震和道路网络,而不仅仅是其中两个。

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