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Sustainable utility placement via Multi-Utility Tunnels

机译:通过多用途隧道可持续布置公用设施

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Due to the adoption of short-term planning cycles and the requirement for lowest initial construction costs, the conventional method for utility installation and maintenance in the UK is via open-cut. When taking a long-term sustainability perspective there is a growing body of evidence which indicates that this method is socially disruptive, environmentally damaging and significantly more expensive, i.e. unsustainable. One long-term solution to this problem could be the adoption of Multi-Utility Tunnels (MUTs); a tunnel that co-locates more than one utility underground facilitating their subsequent repair and renewal while eliminating the need for continuous surface excavation. Unfortunately considerably higher short-term direct costs remain a significant barrier to adoption of MUTs. However, there is a lack of research to show where the economic tipping point between the two methods occurs and how it might be influenced by utility type, pipe number (i.e. density), pipe diameter, number of excavation and reinstatement (E&R) procedures avoided, location (i.e. undeveloped, suburban and urban areas), and the choice of MUT being adopted (i.e. flush-fitting, shallow and deep). This paper aims to fulfil this research need by investigating the effect of these influences on the economic viability of various types of MUTs. The results indicate that MUTs can provide a more economically sustainable method of utility placement in all three local contexts, with the tipping points occurring where street works are likely more frequent and/or where utility density is high.
机译:由于采用了短期计划周期,并且要求最低的初始建设成本,因此英国公用事业安装和维护的常规方法是通过露天开采。从长期可持续性的角度来看,越来越多的证据表明该方法具有破坏社会,破坏环境,成本高得多的优点,即不可持续。解决此问题的一种长期解决方案可能是采用多用途隧道(MUT)。一条将多个公用事业布置在地下的隧道,便于后续维修和更新,而无需进行连续的地面开挖。不幸的是,较高的短期直接成本仍然是采用MUT的重大障碍。但是,缺乏研究来表明这两种方法之间的经济临界点发生在哪里,以及如何受到公用事业类型,管道数量(即密度),管道直径,避免开挖和修复(E&R)程序的影响,位置(即未开发的郊区和市区),以及所采用的MUT的选择(即齐平,浅和深)。本文旨在通过研究这些影响对各种类型的MUT的经济可行性的影响,来满足这一研究需求。结果表明,MUT可以在所有三个本地环境中提供更经济可持续的公用设施放置方法,而临界点发生在街道工作可能更频繁和/或公用设施密度较高的地方。

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