Identifying and managing infrastructure corridor access for economic development, safety, and land use decision making

A. Watson, N. L. Hemminger, P. Rinehart, J. R. Fitzsimmons, R. J. MacKenzie, Z. C. George, S. Thekdi, Junrui Xu, J. Lambert
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引用次数: 1

Abstract

The performance, cost effectiveness, and safety of trillions of dollars of transportation corridors are both enhanced and threatened by adjacent land uses. These corridors are critical to manufacturing, communications, energy, and the movement of people and goods. State transportation agencies, including the Virginia Department of Transportation (VDOT) are responsible for mobility and access on thousands of miles of multimodal corridors. This paper demonstrates methods to automate the collection of access data and prioritize vulnerable sections of the corridors, using sections of the Virginia Statewide Mobility System. The corridor trace analysis methodology described in this paper compares the placement and density of access points to safety metrics, road size, location of traffic management features, and area demographics for hypothesis testing and correlation studies. The results of this study can be used to prioritize the allocation of funding by VDOT, as well as other agencies and regions to minimize risk of land use. The methods can be applied at multiple geographic scales and planning horizons.
识别和管理基础设施走廊通道,以促进经济发展、安全和土地使用决策
价值数万亿美元的交通走廊的性能、成本效益和安全性既受到相邻土地利用的增强,也受到威胁。这些走廊对制造业、通信、能源以及人员和货物的流动至关重要。包括弗吉尼亚运输部(VDOT)在内的州运输机构负责数千英里多式联运走廊的移动性和通道。本文演示了使用弗吉尼亚州全州移动系统的各个部分自动收集访问数据和优先考虑走廊脆弱部分的方法。本文中描述的走廊轨迹分析方法将接入点的位置和密度与安全指标、道路大小、交通管理特征的位置和区域人口统计进行比较,以进行假设检验和相关性研究。本研究结果可用于VDOT以及其他机构和地区优先分配资金,以最大限度地降低土地使用风险。该方法可应用于多个地理尺度和规划视野。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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