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Multi-objective optimisation of bridge retrofit and post-event repair selection to enhance sustainability

机译:桥梁改造和事后维修选择的多目标优化,以提高可持续性

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摘要

The decaying state of our infrastructure paired with rising emphasis on sustainable engineering suggests the need for upgrades which are selected based on their ability to provide adequate performance under natural hazards and minimise negative impacts on the three pillars of sustainability: society, environment and economy. This paper poses a framework based on a multi-objective genetic algorithm to help identify optimal retrofit and repair combinations which ensure public safety while minimising lifetime environmental, economic and social performance measures of sustainability for infrastructure exposed to natural hazards. Assessment of the case-study application results reveals the relationship between life-cycle environmental, economic and social indicators of sustainability for a bridge subject to earthquakes. The framework is anticipated to help guide the selection of retrofit and repair combinations by providing a set of near-optimal' non-dominated solutions, which enhance sustainability while ensuring public safety and mitigating or repairing damage from natural disasters.
机译:基础设施的衰落状态以及对可持续工程的日益重视表明,需要进行升级,这些升级是根据其在自然灾害下提供适当性能并最大程度降低对可持续性三大支柱(社会,环境和经济)的负面影响的能力来选择的。本文提出了一个基于多目标遗传算法的框架,以帮助确定最佳的翻新和维修组合,从而确保公共安全,同时将暴露于自然灾害的基础设施的生命周期可持续性的环境,经济和社会绩效指标降至最低。对案例研究应用结果的评估揭示了地震桥梁的生命周期环境,经济和社会可持续性指标之间的关系。预计该框架将通过提供一组接近最佳的非主导解决方案来帮助指导改装和维修组合的选择,这些解决方案在确保公共安全以及减轻或修复自然灾害造成的损害的同时,增强了可持续性。

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