In the next several decades, a significant percentage of the country's transportation, communications, environmental, and power system infrastructures, as well as public buildings and facilities, will have to be renewed or replaced. Next-generation infrastructure will have to meet very high expectations in terms of durability, constructability, performance, and life-cycle cost. One way of meeting future expectations will be through improved, high-performance materials, but before new materials can be confidently deployed in the field, a thorough and comprehensive understanding must be developed of their long-term performance in a variety of applications and physical environments. The National Science Foundation (NSF) has launched an initiative to promote the development of innovative short-term laboratory or in-situ tests for making accurate, reliable predictions of the long-term performance of materials and requested that the National Research Council (NRC) conduct a workshop as a reconnaissance-level assessment of models and methods that are being used, or potentially could be used, to determine the long-term performance of infrastructure materials and components.
Board on Infrastructure and the Constructed Environment, National Research Council
1 Front Matter; 2 Executive Summary; 3 1 Workshop Synopsis and Committee Findings and Recommendations; 4 2 Background Presentations; 5 A Workshop Agenda; 6 B Biographical Sketches of Committee Members; 7 C Workshop Participants
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National Research Council, Division on Earth and Life Studies, Environment and Resources Commission on Geosciences, Panel on Effects of Past Global Change on Life
National Research Council, Commission on Engineering and Technical Systems, Board on Infrastructure and the Constructed Environment, Committee on Outsourcing Design and Construction-Related Management Services for Federal Facilities
National Research Council, Division on Engineering and Physical Sciences, Commission on Engineering and Technical Systems, Board on Infrastructure and the Constructed Environment
and Medicine National Academies of Sciences, Engineering, Division on Engineering and Physical Sciences, Board on Infrastructure and the Constructed Environment, Committee on Analysis of Causes of Failure and Collapse of the 305-Meter Telescope at the Arecibo Observatory
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National Research Council, Division on Engineering and Physical Sciences, Board on Infrastructure and the Constructed Environment, Committee for Oversight and Assessment of U.S. Department of Energy Project Management
and Medicine National Academies of Sciences, Engineering, National Academy of Engineering, Division on Engineering and Physical Sciences, Health and Medicine Division, Division on Earth and Life Studies, Board on Infrastructure and the Constructed Environment, Board on Environmental Studies and Toxicology, Board on Life Sciences, Committee on Microbiomes of the Built Environment: From Research to Application
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and Medicine National Academies of Sciences, Engineering, Division on Earth and Life Studies, Division on Engineering and Physical Sciences, Nuclear and Radiation Studies Board, Board on Infrastructure and the Constructed Environment, Committee on Review of Effectiveness and Efficiency of Defense Environmental Cleanup Activities of the Department of Energy's Office of Environmental Management