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首页> 外文期刊>Reliability Engineering & System Safety >Minimising the total cost of renewal and risk of water infrastructure assets by grouping renewal interventions
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Minimising the total cost of renewal and risk of water infrastructure assets by grouping renewal interventions

机译:通过将更新干预措施分组来最大程度地减少更新总成本和水基础设施资产的风险

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摘要

Planning the renewal of water infrastructure assets involves balancing the costs of renewal with the costs of risk. A considerable proportion of the renewal budget is spent on planning and mobilising resources to the intervention location. One may therefore reap benefits from the economies of scale by grouping the renewal of water mains which are spatially close. If one can express the total cost of renewal, risk and unavailability of a water main as a function of time, one may use this to find an optimal configuration of groups to be renewed together, where the benefits of grouping are balanced with the costs of shifting renewal investments in time. This paper demonstrates a methodology for optimising the grouping of renewals of connected water mains. The methodology is applied both to obtain an optimal set of groups for all mains in the network, as well as considering the contingency of renewing a group of mains in the event of a pipe burst. The methodology has been demonstrated with a case study, where the costs of leakage, and structural and hydraulic reliability are considered. The results show that there can be considerable monetary savings made by grouping the renewal of water mains. (C) 2015 Elsevier Ltd. All rights reserved.
机译:计划水基础设施资产的更新涉及平衡更新成本和风险成本。更新预算的很大一部分用于计划和动员资源到干预位置。因此,可以通过将空间上接近的自来水进行更新分组来从规模经济中获得收益。如果一个人可以表达总更新成本,总水管的风险和不可用情况随时间的变化,则可以使用它来找到要一起更新的组的最佳配置,其中分组的好处与维护的成本相平衡。及时转移更新投资。本文演示了一种用于优化已连接水管更新分组的方法。该方法既可用于为网络中的所有干线获得最佳的组集合,又可考虑在发生管道爆裂时更新一组干线的偶然性。通过案例研究证明了该方法,其中考虑了泄漏成本以及结构和水力可靠性。结果表明,通过对水管更新进行分组可以节省大量金钱。 (C)2015 Elsevier Ltd.保留所有权利。

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