Adaptive Transportation Projects and Design Guidelines
These resources provide examples of physical adaptation projects in the transportation sector as well as other examples related to project design, such as design guidelines that incorporate climate change projections. Many of the examples in this list are provided by case studies developed through a cooperative agreement with the Federal Highway Administration. Apply additional filters to narrow the list by region, state, climate impacts, jurisdictional focus, or transportation lifecycle stage.
76 results are shown below.
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Resource
March 23, 2011
The Sustainable Infrastructure Guidelines were developed by the Port Authority of New York and New Jersey (PANYNJ) to help project engineers and architects integrate sustainable engineering practices into the design and construction of all PANYNJ projects, which include new and reconstructed roadways, airfields, bridges, tunnels, and marine structures, among other infrastructure projects. The guidelines are designed to reduce the environmental impacts of projects, and several of the guidelines involve adapting to climate change impacts.
Resource Category: Law and Governance
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Resource
2011
The City of Bainbridge Island redesigned its main downtown street to update aging water infrastructure, improve walkability and multimodal uses, and better manage stormwater using more natural and vegetated solutions. The new design is more walkable and accessible, supports biking, better manages stormwater with green infrastructure practices, and encourages social cohesion through smart design. Over half a mile in length, this innovative redesign protects street trees and incorporates stormwater planters, rain gardens, and other methods to retain stormwater and prevent flooding.
Resource Category: Solutions
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Resource
2011
The Michigan Department of Transportation (MDOT) tested a National Cooperative Highway Research Program (NCHRP) cost-benefit model to evaluate the cost-effectiveness of a roadside slope stabilization project in light of future temperature and precipitation projections. The road, which is located on a portion of route M-222 along the Kalamazoo River in the City of Allegan, has a slope that has already experienced erosion caused by intense precipitation and flooding. MDOT was in the process of stabilizing the slope using structural measures, rather than vegetative or other “soft” approaches.
Resource Category: Solutions
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Resource
December 2010
The Port Authority of New York and New Jersey (“Port Authority”) renovated runway 13R-31L at JFK Airport with design features that will help mitigate the urban heat island effect and better manage stormwater. The renovation project featured a number of sustainable initiatives and climate change adaptation measures, designed to reduce the environmental impact of the airport over the lifetime of the runway. A life-cycle cost analysis led the Port Authority to utilize concrete pavement in place of asphalt.
Resource Category: Solutions
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The Surfer’s Point Managed Shoreline Retreat Project involved the relocation of a bike path and parking lot along 1,800 feet of shoreline in City of San Buenaventura, Ventura County. The transportation assets affected by the project include a damaged bike path, a 223-space parking lot for the Ventura County Fairgrounds, and Shoreline Drive. Surfer’s Point is a beach and popular surf break at mouth of the Ventura River.
Resource Category: Solutions
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Resource
2010
Edmonston, a small town near Washington DC in Prince George’s County, MD, created a “green street” to address previous problems with flooding on Decatur Street near the Anacostia River. The town wanted to better manage that flooding and improve water quality, as well as to manage traffic by narrowing the street. The project utilizes a variety of green infrastructure tools to reduce stormwater runoff, thereby decreasing the amount of polluted water that enters the Anacostia River. While the project does not specifically reference climate change as a motivation, the methodology and considerations for this project, could be useful for a jurisdiction that will experience heavier precipitation due to climate change.
Resource Category: Solutions
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Resource
March 2010
In this project the Piscataqua Region Estuaries Partnership (PREP) performed a vulnerability assessment of the hydrology and drainage system of the Oyster River watershed in southeastern New Hampshire and its capacity to adapt to climate change impacts and increased development. The project used a geographic information system (GIS) based watershed model to identify the road/stream crossing culverts that are vulnerable to failure due to extreme storms with increased precipitation, in combination with development of the watershed.
Resource Category: Assessments
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Resource
2010
The Chicago Department of Transportation (CDOT) authored the Green Alley Handbook to encourage the use of best management practices (BMPs) in and around Chicago alleyways and to address impacts to the city’s infrastructure likely to result from projected increases in precipitation and temperature. The handbook promotes sustainable alley design and adjacent landscaping practices to help reduce flooding and manage stormwater, reduce urban heat, promote recycling, and conserve energy.
Resource Category: Solutions
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Resource
2010
Rainscaping Iowa, an educational campaign that promotes urban stormwater management practices, encourages the use of permeable pavement by featuring successful installations in the state. By gathering feedback on previous projects, Rainscaping Iowa simultaneously highlights the environmental benefits of permeable surfaces and provides lessons for future installations and maintenance. Importantly, the campaign’s literature describes how permeable paving surfaces can help reduce runoff and improve water quality in the face of changing precipitation and increasing heavy rainfall events.
Resource Category: Solutions
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Resource
April 17, 2009
This report was designed to help the City of Los Angeles use low impact development (LID) techniques to address water quality, flood control, and climate change issues. LID is a strategy for managing stormwater runoff that uses natural drainage features to capture and filter urban runoff. From an environmental standpoint, LID reduces water pollution, replenishes aquifers, and encourages water reuse. From an adaptation standpoint, LID reduces stress on water supply and can provide shade trees, helping to reduce urban heat islands.
Author or Affiliated User: Haan-Fawn Chau
Resource Category: Solutions
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