Rail in Multimodal Transit Systems: Concept for Improving Urban Mobility by Increasing Choices for Travel and Lifestyle

Author:

Schumann John W.1

Affiliation:

1. LTK Engineering Services, Skidmore Fountain Building, Suite 600, 28 SW First Avenue, Portland, Oreg. 97204

Abstract

Metro areas relying on automobile-based transport are increasingly congested. Some alternatives to gridlock are being implemented; others languish without political acceptance. Congestion is more than a suburban issue. Both intersuburban and radial travel woes are growing and must be addressed. Agencies should start with bus improvements, then add rail where appropriate. Experience shows that, unlike purely radial systems, transit networks with many transfer opportunities offer options to users in more travel markets and, as a result, attract more riders. In the United States, rail is often viewed as serving just the central business district (CBD) and being incapable of accommodating suburban trips. In fact, radial rail lines can provide attractive options for trips to new centers near suburban rail stations, in addition to CBD trips. Rail systems become regional connections, linked via timed transfers at transit centers with bus and paratransit feeders and circulators. Clock headways and integrated fares complete a seamless multimodal, multidestinational system serving the CBD as well as emerging regional centers. Such systems work best as part of a comprehensive program for sustainable urban development, consciously planned by committed, far-sighted political leaders who build public consensus to implement a regional vision for community patterns that encourage a rich variety of lifestyle and mobility choices. Key to effecting such transport systems are ( a) competent transit management that seeks out and serves a variety of niche markets, and ( b) coordinated transportation and land use decision making that values transit links to major destinations and compact communities.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference33 articles.

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2. Cost-saving properties of schedule coordination in a simple trunk-and-feeder transit system;Transportation Research Part A: Policy and Practice;2012-01

3. Relationship between proximity to transit and ridership for journey-to-work trips in Chicago;Transportation Research Part A: Policy and Practice;2010-11

4. Transit competitiveness in polycentric metropolitan regions;Transportation Research Part A: Policy and Practice;2007-01

5. Railroads in the City: Overlooked Rail Transit Opportunities;Transportation Research Record: Journal of the Transportation Research Board;2001-01

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