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Environmental and Economic Consequences of Permanent Roadway Infrastructure Commitment: City Road Network Lifecycle Assessment and Los Angeles County

机译:永久性道路基础设施承诺的环境和经济后果:城市道路网络生命周期评估和洛杉矶县

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The environmental impacts and economic costs associated with passenger transportation are the result of complex interactions between people, infrastructure, urban form, and underlying activities. When it comes to roadway infrastructure, the ongoing resource commitments (which can be measured as embedded impacts) enables vehicle travel, which is a dominant source of air emissions in regional inventories. The relationship between infrastructure and the environmental impacts it enables are not often considered dynamic. Furthermore, the environmental effects of roadway infrastructure are typically assessed at a fine geospatial and temporal scale (i.e., a short distance of roadway over a short period of time) and there is generally poor knowledge of how the growth of a roadway network over time creates a need for long-term maintenance commitments that create environmental impacts and lock-in vehicle travel. A framework and operational lifecycle assessment (LCA) tool [ City Road Network (CiRN) LCA] are developed to assess the extent to which roadway commitments result in ongoing and increasing environmental and economic impacts. Known for its extensive road network and automobile reliance, Los Angeles County is used as a case study to explore the relationship between historic infrastructure deployment decisions and the emergent behavior of vehicle travel. The results show that every kilogram of greenhouse gas (GHG) emissions resulting from construction and maintenance has led to 27 kg of GHG emissions in fuel combustion. Similarly, every public dollar invested into the network has created $21-$ 46 in private user spending. As states and regions grapple with financing the upkeep of aging infrastructure, a solid understanding of the relationship between upfront infrastructure capital costs, long-term maintenance costs, and associated long-term environmental effects are critical. In Los Angeles, the infrastructure that exists was largely deployed by 1987. Since then, maintenance costs are estimated to have exceeded city budgets despite minimal growth in infrastructure. The research demonstrates how infrastructure matures (i.e., its stages of growth toward completion), it becomes locked-in, leading to transitions from a capital financing focus to foci on securing rehabilitation and maintenance costs, and the share of environmental impacts changing from being somewhat balanced between embedded infrastructure construction impacts and vehicle use to today where vehicle use creates impacts several orders of magnitude greater than those associated with rehabilitation. (C) 2015 American Society of Civil Engineers.
机译:与客运相关的环境影响和经济成本是人,基础设施,城市形态和基础活动之间复杂相互作用的结果。在道路基础设施方面,正在进行的资源承诺(可以衡量为内在的影响)使车辆行驶成为了区域清单中主要的空气排放源。基础设施与其带来的环境影响之间的关系通常不被认为是动态的。此外,通常在良好的地理空间和时间范围内(即,在短时间内的短距离道路)评估道路基础设施的环境影响,并且通常对道路网络随着时间的增长如何产生的认识较差。需要对环境造成影响并限制车辆行驶的长期维护承诺。开发了一种框架和运营生命周期评估(LCA)工具[城市道路网(CiRN)LCA]来评估道路承诺在多大程度上导致持续不断的环境和经济影响。洛杉矶县以其广泛的道路网络和汽车依赖性而闻名,被用作案例研究,以探索历史性基础设施部署决策与车辆出行行为之间的关系。结果表明,建设和维护产生的每公斤温室气体排放量导致燃料燃烧中27公斤温室气体排放量。同样,投入网络的每一美元都为私人用户支出创造了21至46美元。随着各州和各地区努力为老化的基础设施的维护提供资金,对前期基础设施资本成本,长期维护成本以及相关的长期环境影响之间的关系的深入了解至关重要。在洛杉矶,现有的基础设施到1987年已基本部署。从那时起,尽管基础设施的增长很少,维护成本仍超过了城市预算。该研究表明,基础设施如何成熟(即,从增长到完成的阶段),被锁定,从而导致从资本融资的重点过渡到确保修复和维护成本的重点,而环境影响的份额也有所变化。在嵌入式基础设施建设影响和车辆使用之间取得平衡,直到今天的车辆使用产生的影响比修复带来的影响大几个数量级。 (C)2015年美国土木工程师学会。

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