H11E:
Long-Term Changes in Inland Water Temperature: Global Patterns, Physical Mechanisms, and Ecological Interactions I Posters

Session ID#: 3336

Monday, 15 December 2014: 8:00 AM-12:20 PM
Not an Option (Moscone West)
Chairs:  John D Lenters, University of Michigan Biological Station, Ann Arbor, United States and Catherine O'Reilly, University of Minnesota Duluth, Large Lakes Observatory, Duluth, United States
Primary Convener:  John D Lenters, University of Michigan Biological Station, Ann Arbor, United States
Co-conveners:  Claude R Duguay, University of Waterloo, Waterloo, ON, Canada, Simon J Hook, NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, United States and Catherine O'Reilly, University of Minnesota Duluth, Large Lakes Observatory, Duluth, United States
OSPA Liaison:  Simon J Hook, NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, United States
Co-Sponsor(s):
  • A - Atmospheric Sciences
  • B - Biogeosciences
  • C - Cryosphere
  • GC - Global Environmental Change
Index Terms:

0458 Limnology [BIOGEOSCIENCES]
0746 Lakes [CRYOSPHERE]
1807 Climate impacts [HYDROLOGY]
1855 Remote sensing [HYDROLOGY]
Virtual Option?: No

Abstracts Submitted to this Session:

 
Surface heat flux variability of a large lake: Lake Geneva, Switzerland (21847)
Abolfazl Irani Rahaghi1, Ulrich Lemmin2, Damien Bouffard3, Michael Riffler4, Stefan Wunderle4 and D. Andrew Barry2, (1)Ecological Engineering Laboratory, Swiss Federal Institute of Technology Lausanne - EPFL, Lausanne, Switzerland, (2)Swiss Federal Institute of Technology Lausanne - EPFL, Ecological Engineering Laboratory, Lausanne, Switzerland, (3)Physics of Aquatic Systems Laboratory, Margaretha Kamprad Chair, Swiss Federal Institute of Technology Lausanne - EPFL, Lausanne, Switzerland, (4)Institute of Geography and Oeschger Centre for Climate Change Research, University of Bern, Bern, Switzerland
 
Assessing Climate Change Effect on the World’s Largest Lakes Using Satellite Observation (31404)
Chaojie Wang1, Ryan Gabriel1 and Hamid Norouzi2, (1)CUNY-NOAA CREST, New York, NY, United States, (2)New York City College of Technology, CUNY, Brooklyn, United States
 
Rapid warming of the world’s lakes: Interdecadal variability and long-term trends from 1910-2009 using in situ and remotely sensed data (27033)
John D Lenters1, Jordan Stuart Read2, Sapna Sharma3, Catherine O'Reilly4, Stephanie E Hampton5, Derek Gray6, Peter B. McIntyre7, Simon J Hook8, Philipp Schneider9, Mehmet Evren Soylu10, Noémi Barabás11, Dendy Diane Lofton11 and GLTC Contributors, (1)University of Michigan Biological Station, Ann Arbor, United States, (2)USGS, Middleton, United States, (3)York University, Toronto, ON, Canada, (4)University of Minnesota Duluth, Large Lakes Observatory, Duluth, United States, (5)Washington State University, School of the Environment, Pullman, WA, United States, (6)California University of Pennsylvania, California, PA, United States, (7)Cornell University, Ithaca, NY, United States, (8)NASA Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, United States, (9)Jet Propulsion Laboratory, Pasadena, CA, United States, (10)Georgia Institute of Technology, School of Civil & Environmental Engineering, Atlanta, United States, (11)LimnoTech, Ann Arbor, MI, United States
 
Diagnosing the Drivers of the Recent Rapid Warming of the Great Lakes (19341)
Yafang Zhong, University of Wisconsin-Madison, CIMSS/SSEC, Madison, United States, Michael Notaro, University of Wisconsin-Madison, Madison, WI, United States and Stephen J Vavrus, Univ Wisconsin, Madison, WI, United States
 
The Summertime Warming Trends in Surface Water Temperature of the Great Lakes (16158)
Noriyuki Sugiyama1, Sergey Kravtsov2 and Paul Roebber2, (1)University of Wisconsin Milwaukee, Milwaukee, WI, United States, (2)University of Wisconsin Milwaukee, School of Freshwater Sciences, Milwaukee, United States
 
Evaluating the Contribution of Nearshore Offshore Exchange to Lake Superior Warming (16623)
Paul J. McKinney and Katsumi Matsumoto, University of Minnesota, Minneapolis, MN, United States
 
River Inflows into Lakes: Basin Temperature Profiles Driven By Peeling Detrainment from Dense Underflows (9571)
Charlie Hogg1, Herbert Eric Huppert1, Jorg Imberger2 and Stuart Bruce Dalziel3, (1)University of Cambridge, Cambridge, United Kingdom, (2)University of Western Australia, Crawley, WA, Australia, (3)University of Cambridge, Department of Applied Mathematics and Theoretical Physics, Cambridge, United Kingdom
See more of: Hydrology