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Description

This study examined the scope and components of mitigation assessments in a first effort to develop some guidelines for conducting mitigation evaluations. Using the Mitigation Evaluations Survey (MES) we developed for this research, we surveyed 266 psychologists about the characteristics and content of mitigation evaluations. A high percentage of participants

This study examined the scope and components of mitigation assessments in a first effort to develop some guidelines for conducting mitigation evaluations. Using the Mitigation Evaluations Survey (MES) we developed for this research, we surveyed 266 psychologists about the characteristics and content of mitigation evaluations. A high percentage of participants endorsed each of the 14 content areas presented in the MES as essential or recommended for inclusion in mitigation evaluations. However, when the participants were given a hypothetical open-ended referral question regarding a mitigation evaluation, fewer participants included all 14 content areas in their responses. This discrepancy as well as information regarding the qualifications and expertise of the participants is discussed.

ContributorsBarnett, Michelle E. (Author) / Brodsky, Stanley L. (Author) / Neal, Tess M.S. (Author)
Created2011
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Description

Major urban centers are warming due to a combination of global and local phenomena. City governments are increasingly adopting strategies to mitigate the causes and impacts of extreme heat on their populations. Among these strategies are high solar-reflectance (cool) surfaces installed on building roofs and walls. Use of cool surfaces

Major urban centers are warming due to a combination of global and local phenomena. City governments are increasingly adopting strategies to mitigate the causes and impacts of extreme heat on their populations. Among these strategies are high solar-reflectance (cool) surfaces installed on building roofs and walls. Use of cool surfaces is a cost-effective and simple strategy that replaces conventional darker surfaces with surfaces that have a high reflectance to shortwave (solar) energy.

This report reviews the recent history of cool-surface deployment efforts. This includes peer-reviewed literature, conference proceedings, and grey literature to identify challenges and barriers to wide-scale deployment of cool surfaces. We have also researched heat action plans and programs from cities and different codes and standards, as well as available incentive and rebate programs.

The review identifies challenges, barriers, and opportunities associated with large-scale deployment of cool surfaces and categorizes them broadly as being related to product development & performance or policies & mandates. It provides a foundation upon which we intend to build a roadmap for rapidly accelerating future deployments of cool surfaces. This roadmap will address identified challenges and incorporate lessons learned from historical efforts to generate a practical and actionable plan.

ContributorsAlhazmi, Mansour (Author) / Sailor, David (Author) / Levinson, Ronnen (Author)
Created2023-05-24