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Critical factors for restoration of water supply pipelines in the Hutt City, New Zealand after a magnitude 7.5 earthquake from the Wellington fault

机译:惠灵顿断层发生7.5级地震后,新西兰赫特市供水管线恢复的关键因素

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The water distribution network for Hutt City consists of nearly 700 km of pipes, 6500 valves, 4000 hydrants, and 21 reservoirs located on the surrounding hills. The bulk water is pumped to hillside reservoirs from trunk lines and some water for the city is also taken from artesian wells located on the floor of the Lower Hutt Valley. The Wellington fault, capable of generating an MW=7.5 earthquake with a return period about 600 years, lies at the western side of the Hutt Valley and passes through both residential and commercial areas. The shaking intensity from this earthquake is expected to be MMI 9 (where MMI is Modified Mercalli Intensity) or greater over the entire City. We simulate the damage to the pipelines using fragility curves derived from overseas data, which are functions of MMI, material type and soil condition. We use a Poisson process to generate damage locations along a pipe, given an expected break rate, then repair the network using an algorithm based on a likely restoration sequence. First all valves are closed. Then starting from a reservoir, a valve is opened and pressure is established. We account for pipe repair time (a function of pipe diameter), opening and closing of valves, checking hydrants and traveling from one location to another. Multiple crew repair parties are used. In the present study, we have excluded the repair time required for damages to the bulk supply pipes (trunk lines) that carry water from water treatment plants to the reservoirs of the surrounding hills in the Hutt City, the reservoirs, wells and the customers own pipes that link individual properties to the council-owned distribution system
机译:赫特市的供水网络包括近700公里的管道,6500个阀门,4000个消防栓以及位于周围丘陵上的21个水库。大量的水从干线被泵送到山坡上的水库,城市的一些水也从下哈特河谷底的自流井中取水。惠灵顿断层位于赫特河谷的西侧,能够产生MW = 7.5的地震,恢复期约为600年,它既穿过住宅区,又穿过商业区。预计该地震的震动强度在整个城市中为MMI 9(其中MMI为改良的Mercalli强度)。我们使用从国外数据得出的脆性曲线模拟管道的损坏,这些曲线是MMI,材料类型和土壤条件的函数。在给定预期断裂率的情况下,我们使用泊松过程来生成沿管道的损坏位置,然后使用基于可能的恢复顺序的算法修复网络。首先,关闭所有阀门。然后从油箱开始,打开阀门并建立压力。我们考虑了管道维修时间(与管道直径有关的时间),阀门的打开和关闭,消防栓的检查以及从一个位置到另一个位置的行程。使用了多个机组维修人员。在本研究中,我们排除了将自来水处理厂的水输送到赫特市周围山丘的水库,水库,水井和客户自己的大容量供水管(干线)损坏所需的维修时间。将个别财产链接到议会拥有的分配系统的管道

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