Behavior of Warmer, Lighter Circumpolar Deep Water on the Continental Shelf and Its Impact on Heat Content near West Antarctic Ice Shelves

Seung-Tae Yoon1,2, Won Sang Lee3, Clare Eayrs3, Choon-Ki Lee3, Sukyoung Yun3, Jisung Na3, Anna Wahlin4, Hyun A Choi1, Yeonsu Jeong1, Mr. Jaemin Ju5,6, Joohyang Kim5, SungHyun Nam5,7, Seong Ran Cho3, Pierre Dutrieux8, Ted A Scambos9, Tiago Segabinazzi Dotto10, Scott Tyler11, Christian Wild12, Craig L Stevens13,14 and Adrian Jenkins15, (1)Kyungpook National University, Daegu, South Korea, (2)Kyungpook Institute of Oceanography, Daegu, South Korea, (3)Korea Polar Research Institute, Division of Glacier and Earth Sciences, Incheon, South Korea, (4)University of Gothenburg, Department of Marine Sciences, Gothenburg, Sweden, (5)Seoul National University, School of Earth and Environmental Sciences, Seoul, South Korea, (6)Korea Polar Research Institute, Division of Ocean and Atmosphere Sciences, Incheon, South Korea, (7)Seoul National University, Research Institute of Oceanography, Seoul, South Korea, (8)NERC British Antarctic Survey, Cambridge, United Kingdom, (9)University of Colorado, Boulder, Boulder, Colorado, United States, (10)National Oceanography Centre, Southampton, United Kingdom, (11)University of Nevada, Reno, Department of Geological Sciences and Engineering, Reno, NV, United States, (12)University of Tübingen, Department of Geosciences, Tübingen, Germany, (13)National Institute of Water and Atmospheric Research, Wellington, New Zealand, (14)University of Auckland, Department of Physics, Auckland, New Zealand, (15)Northumbria University, Newcastle-upon-Tyne, United Kingdom