GC057
Multisector Dynamics: Energy–Water–Land Interactions at Multiple Scales II Posters

Thursday, 10 December 2020: 04:00-20:59
Poster
Primary Convener:  Thomas Bernard Wild, University of Maryland College Park, College Park, MD, United States; Pacific Northwest National Laboratory, Joint Global Change Research institute, College Park, MD, United States
Conveners:  Zarrar Khan, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States, Makoto Taniguchi, RIHN Research Institute for Humanity and Nature, Kyoto, Japan and Adriano Vinca, IIASA International Institute for Applied Systems Analysis, Laxenburg, Austria
Primary Liaison:  Thomas Bernard Wild, University of Maryland College Park, College Park, MD, United States; Pacific Northwest National Laboratory, Joint Global Change Research institute, College Park, MD, United States
Chairs:  Thomas Bernard Wild, University of Maryland College Park, College Park, MD, United States; Pacific Northwest National Laboratory, Joint Global Change Research institute, College Park, MD, United States and Zarrar Khan, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States
OSPA Liaison:  Zarrar Khan, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States
 
Spatial Downscaling Global Land Use and Land Cover (LULC) Change for Modeling Regional Water Management (706134)
Matthew Allen Yourek1, Mingliang Liu1, Fabio Scarpare1, Keyvan Malek2, Jan Boll1 and Jennifer C Adam1, (1)Washington State University, Civil and Environmental Engineering, Pullman, WA, United States, (2)Cornell University, Civil and Environmental Engineering, Ithaca, United States
 
Would power grid interconnections protect the Mekong’s wetlands? (716362)
Stefano Galelli, Singapore University of Technology and Design, Engineering Systems, Singpore, Singapore, Thanh Duc Dang, Singapore University of Technology and Design, Pillar of Engineering Systems and Design, Singapore, Singapore, AFM Kamal Chowdhury, University of California Santa Barbara, Santa Barbara, United States and Mauricio Arias, University of South Florida, Department of Civil & Environmental Engineering, Tampa, United States
 
COREGS: An optimization framework to analyze water and power systems together under a changing climate (749311)
Lucas Cole Ford1, Anderson Queiroz2, Joseph DeCarolis2 and Sankar Arumugam3, (1)North Carolina State University, Raleigh, NC, United States, (2)NC State Univ-Civil & Env Engr, Raleigh, NC, United States, (3)NC State University, Raleigh, NC, United States
 
Response of southern African growing hydropower systems to climate change and penetration of solar and wind (751780)
A.F.M. Kamal Chowdhury1, Ranjit Deshmukh1, Piotr Wolski2, Grace C. Wu3, Anagha Uppal4 and Stefano Galelli5, (1)University of California Santa Barbara, Environmental Studies Department, Santa Barbara, CA, United States, (2)University of Cape Town, Climate System Analysis Group, Cape Town, South Africa, (3)The Nature Conservancy, San Francisco, CA, United States, (4)University of California, Santa Barbara, Geography Department, Santa Barbara, United States, (5)Singapore University of Technology and Design, Pillar of Engineering Systems and Design, Singapore, Singapore
 
M-LED: a Multi-sectoral Latent Electricity Demand Assessment Platform for Energy Access Planning and Nexus Implications Evaluation (671557)
Giacomo Falchetta1, Nicolò Stevanato2, Magda Moner Girona3, Davide Mazzoni1, Emanuela Colombo2 and Manfred Hafner1, (1)FEEM - Fondazione Eni Enrico Mattei, Milano, Italy, (2)Politecnico di Milano, Department of Energy, Milano, Italy, (3)European Commission, Joint Research Centre (JRC), Ispra, Italy
 
Analysis of transboundary water flows linking physical water supply and virtual water trade through water-food-trade nexus approach (688763)
Sanghyun Lee, Makoto Taniguchi and Naoki Masuhara, RIHN Research Institute for Humanity and Nature, Kyoto, Japan
 
Water Supply and Demand in the Future U.S. Power Sector (773282)
Stuart Michael Cohen1, Saroj Prasad Khanal1, Vincent Carroll Tidwell2, Ariel Miara3 and Jordan Macknick4, (1)National Renewable Energy Laboratory Golden, Golden, CO, United States, (2)Sandia Natl Laboratories, Albuquerque, NM, United States, (3)CUNY Advanced Science Research Center at The Graduate Center, Environmental Sciences Initiative, New York, NY, United States, (4)National Renewable Energy Laboratory, Golden, CO, United States
 
A Bayesian approach to determining the feasibility of electricity capacity expansion plans (744637)
Chris R Vernon, Pacific Northwest National Laboratory, Joint Global Change Research Institute, Richland, WA, United States, Jennie Rice, Pacific Northwest National Laboratory, Richland, WA, United States, Gokul Iyer, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States, Ryan McManamay, Baylor University, Environmental Science, Waco, TX, United States and Kristian Nelson, Pacific Northwest National Laboratory, Hydrology Group, Richland, WA, United States
 
Beyond Lights: The Changing Impact of Rural Electrification on Indian Agriculture (702397)
Sudatta Ray, Stanford University, Stanford, CA, United States
 
Hydro-power Generation as Energy-Water-Land Interactions from Historical Perspective (717415)
Naoki Masuhara, Sanghyun Lee and Makoto Taniguchi, RIHN Research Institute for Humanity and Nature, Kyoto, Japan
 
Nexus approach of water-energy-food-land interactions for multi-scale sustainability (692509)
Makoto Taniguchi, Sanghyun Lee and Naoki Masuhara, RIHN Research Institute for Humanity and Nature, Kyoto, Japan
 
Nitrogen Pollution Embedded in Commodity Supply Chains and Trade; Linking Systems and Scales across Water, Energy, and Land (715258)
Paniz Mohammadpour, Pennsylvania State University Main Campus, University Park, PA, United States and Caitlin Grady, Pennsylvania State University Main Campus, Civil and Environmental Engineering, University Park, PA, United States
 
Optimizing water-energy distribution during short-term flood in cascaded hydropower dams and proposing solution of conflict between stakeholders by bargaining game theory (728180)
Katsuya Nishihara, University of Tokyo, Civil Engineering, Bunkyo-ku, Japan and Akiyuki Kawasaki, University of Tokyo, Civil Engineering, Tokyo, Japan