Primary Convener: Emad Hassan, Colorado State University, Civil and Environmental Engineering, Fort Collins, CO, United States
Conveners: Christopher Clavin1, Hussam Mahmoud2 and Mona Hemmati2, (1)Science & Technology Policy Institute, Washington, DC, United States(2)Colorado State University Fort Collins, Fort Collins, CO, United States
Primary Liaison: Emad Hassan, Colorado State University, Civil and Environmental Engineering, Fort Collins, CO, United States
Chairs: Emad Hassan, Colorado State University, Civil and Environmental Engineering, Fort Collins, CO, United States and Mona Hemmati, Colorado State University Fort Collins, Fort Collins, CO, United States
OSPA Liaison: Christopher Clavin, Science & Technology Policy Institute, Washington, DC, United States
Revealing the Complex Role of Human Behavior in Urbanization and Resilience of Communities under Flood Risk (753967)
Mona Hemmati1, Hussam Mahmoud2, Bruce R. Ellingwood1 and Andrew T. Crooks3, (1)Colorado State University, Department of Civil and Environmental Engineering, Fort Collins, CO, United States, (2)Colorado State University Fort Collins, Fort Collins, CO, United States, (3)University at Buffalo, Department of Geography, Buffalo, VA, United States
Quantifying the Benefits of Natural and Nature-Based Features in Maryland’s Chesapeake and Atlantic Coastal Bays to Inform Conservation and Management under Future Sea Level Rise Scenarios (713643)
Daniel Joseph Coleman1, Tyler Will Miesse2, Felício Cassalho2, Celso Ferreira2, Nicole Carlozo3, Elliott T Campbell4, Rebecca Raves Golden5, Jaclyn A Specht6 and Michelle Rymond Canick7, (1)George Mason University Fairfax, Fairfax, VA, United States, (2)George Mason University, Fairfax, VA, United States, (3)Department of Natural Resources Maryland, Annapolis, MD, United States, (4)Maryland Department of Natural Resources, Annapolis, MD, United States, (5)Department of Natural Resources Maryland, Maryland, United States, (6)Rutgers University New Brunswick, New Brunswick, NJ, United States, (7)Bethesda, United States
Changes in Climatic Yield Potential of Japonica-type rice in the Korean Peninsula under RCP scenarios using multi-GCM and multi-RCM Ensemble (690586)
Young Hyun Kim1, Joong-bae Ahn1, Kyo-Moon Shim2, Myoung-Seok Suh3, Dong-Hyun Cha4, Dong-Kyou Lee5, Song-You Hong6, Seung-Ki Min7, Hyun-Suk Kang8 and Seong-Chan Park8, (1)Pusan National University, Busan, Korea, Republic of (South), (2)National Institute of Agricultural Sciences, Wanju, South Korea, (3)Kongju National University, Department of Atmospheric Science, Gongju, Korea, Republic of (South), (4)Ulsan National Institute of Science and Technology, Ulsan, Korea, Republic of (South), (5)Seoul National University, Seoul, South Korea, (6)KIAPS Korea Insititute of Atmospheric Prediction Systems, Seoul, Korea, Republic of (South), (7)POSTECH, Pohang, Korea, Republic of (South), (8)Korea Meteorological Administration, Seoul, South Korea