地震灾害下水网恢复模型:电网的作用

G. A. Anwar, You Dong
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引用次数: 0

摘要

一个社区的社会经济福利取决于其关键基础设施系统的正常运作。两个最重要的关键基础设施系统,即供水网络(WN)系统和电力网络(EPN)系统,对于家庭的充分运作和公民的社会经济福祉至关重要。在极端事件发生后,家庭的功能会因网络和环境网络的破坏而降低。网络的功能也可能取决于环境保护网络的恢复,因此应考虑网络的功能恢复,以便更好地估计相互依赖的关键基础设施系统的功能恢复。考虑到对EPN网络的依赖性,本文对最大考虑地震灾害情景下的路网恢复模型进行了评估。利用易损性函数和后果函数对各部件进行损伤评估和修复时间评估。评估每个部件的修复时间,确定WN和EPN的总修复时间。通过网络模型评估WN和EPN恢复模型,其中节点表示网络的子组件,边缘表示连接恢复。在所考虑的示例中,地震事件发生后,WN在8天内完全修复,而EPN在10天内完全修复。因此,水网将在10天后完全发挥作用,因为水网的发电厂部分需要EPN网络的电力将水从水库泵入水箱。因此,重要的是要考虑WN对EPN的依赖性,以便更好地估计家庭关键公用事业的功能恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Restoration modelling of Water Network under seismic hazard: Role of Electrical and Power Network
The socio-economic wellbeing of a community depends on the proper functioning of its critical infrastructure system. Two most important critical infrastructure systems i.e., Water Network (WN) system, and Electrical and Power Network (EPN) system are crucial for the full functioning of the households, and socio-economic wellbeing of its citizens. After an extreme event, the functionality of the households will be reduced due to the damage in the WN and EPN. The functionality of the WN may also depend on the recovery of the EPN and should be considered for better estimates of the functionality recovery of interdependent critical infrastructure system. In this paper, the restoration modelling of WN is assessed under a maximum considered seismic hazard scenario, considering the dependence on the EPN network. The fragility and consequence functions are utilized for the damage and repair time assessment of each component. The repair times for each component are evaluated and the total repair time of the WN and EPN is determined. The WN and EPN restoration modelling is assessed through network models where the nodes represent the sub-components of a network and edges represent the connection restoration. In the considered example, the WN is fully repaired in 8 days after an earthquake event, while the EPN is fully repaired in 10 days. The WN will therefore be fully functional after 10 days since the power plant component of WN requires electricity from EPN network to pump water form reservoir to the water tank. It is therefore important to consider the dependencies of WN on the EPN for better estimates of functionality recovery of critical utilities to the households.
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