量化城市水基础设施共用地点程度的指标

Shamsuddin Daulat, B. Roghani, J. Langeveld, M. Rokstad, Franz Tscheikner-Gratla
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引用次数: 0

摘要

从理论上讲,道路、供水和下水道等共用基础设施网络为多基础设施综合干预提供了可能。然而,这些网络在空间和时间上的紧密配合程度决定了此类协调干预措施的实际实现程度。本研究对上述基础设施网络的空间排列进行了量化,并展示了其在综合干预和潜在成本节约方面的应用。研究提出了两个指标,即(1)共享表面积和(2)共享沟槽体积,用于量化基础设施的空间关系(即共用位置的程度)。此外,该研究还展示了如何利用共建程度来衡量综合干预措施与基于筒仓的单一基础设施干预措施相比的成本节约潜力。通过在挪威城市开展的六项案例研究,该研究揭示了在道路、供水和下水道网络之间实施综合干预措施,可为城市地区节省 24% 的潜在平均成本,为农村地区节省 11% 的潜在平均成本。此外,还分析了不同成本分摊方案下的具体节支情况。为确定多基础设施综合干预的年度潜力,未来的工作应增加基础设施修复的时间调整(即基础设施所需的干预时间)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metrics to quantify the degree of co-location of urban water infrastructure
Co-located infrastructure networks such as roads, water, and sewer in theory offer the possibility for integrated multi-infrastructure interventions. However, how closely these networks are aligned in space and time determines the practical extent to which such coordinated interventions can be realized. This study quantifies the spatial alignment of the aforementioned infrastructure networks and demonstrates its application for integrated interventions and potential cost savings. It proposes two metrics, namely (1) shared surface area and (2) shared trench volume, to quantify the spatial relationship (i.e., degree of co-location) of infrastructures. Furthermore, the study demonstrates how the degree of co-location can be used as a proxy for cost-saving potential of integrated interventions compared to silo-based, single-infrastructure, interventions. Through six case studies conducted in Norwegian municipalities, the research reveals that implementing integrated interventions across road, water, and sewer networks can result in potential average cost savings of 24% in urban areas and 11% in rural areas. Utility-specific savings under different cost-sharing scenarios were also analyzed. To identify the yearly potential of integrated multi-infrastructure interventions, future work should add the temporal alignment of rehabilitation of infrastructures (i.e., time of intervention needed for the infrastructures).
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