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Al Plueddemann and Kris Newhall recovering REMUS from ice hole.
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Al Plueddemann and Kris Newhall recovering REMUS from ice hole.
Al Plueddemann and Kris Newhall recovering REMUS from ice hole.
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158133
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Kukulya, Amy
Title
Al Plueddemann and Kris Newhall recovering REMUS from ice hole.
Al Plueddemann and Kris Newhall recovering REMUS from ice hole.
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Date
04/22/2010
File name
graphics/Arctic_Remus_test_A_Kukulya/DSC_0754.jpg
Notes
Image of The Day caption: Al Plueddemann and Kris Newhall recover the autonomous underwater vehicle (AUV) REMUS 100 from an ice hole in Barrow, Alaska. The WHOI research team, led by Plueddemann and Amy Kukulya, worked from land-fast ice to test the under-ice capabilities of the REMUS AUV. In this icy, high-risk environment, the team had to use hand saws and ice axes to cut through one-to-two meters of ice in order to launch and recover the the REMUS safely. A net capture system was also tested for recovering the vehicle at depth and under ice. Typically, AUVs are run in open water and float to the surface when their mission is over in order to use GPS and iridium satellites to mark its location, and then a boat is used for recovery. However, the icy environment filled with massive ice ridges all the way up to the shoreline eliminate that capability and make it a very high risk and technically challenging operation.
Image of The Day caption:
Al Plueddemann and Kris Newhall recover the autonomous underwater vehicle (AUV) REMUS 100 from an ice hole in Barrow, Alaska. The WHOI research team, led by Plueddemann and Amy Kukulya, worked from land-fast ice to test the under-ice capabilities of the REMUS AUV. In this icy, high-risk environment, the team had to use hand saws and ice axes to cut through one-to-two meters of ice in order to launch and recover the the REMUS safely. A net capture system was also tested for recovering the vehicle at depth and under ice. Typically, AUVs are run in open water and float to the surface when their mission is over in order to use GPS and iridium satellites to mark its location, and then a boat is used for recovery. However, the icy environment filled with massive ice ridges all the way up to the shoreline eliminate that capability and make it a very high risk and technically challenging operation.
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© Woods Hole Oceanographic Institution
©Shane Gross/Greenpeace
Adobe Farmhouse Photography
Getty Images/iStockphoto
Illustration by Eric S. Taylor, WHOI Creative
Illustration by Jack Cook
Illustration by Jayne Doucette
Illustration by Natalie Renier, WHOI Creative
Marine Imaging Technologies, LLC © Woods Hole Oceanographic Institution
Photo by Amy Apprill
Photo by Craig LaPlante
Photo by Daniel Hentz
Photo by Danielle Fino
Photo by Darlene Trew Crist
Photo by Elise Hugus
Photo by Hannah Piecuch
Photo by Jayne Doucette
photo by Jeff Yonover
Photo by Katherine Spencer Joyce
Photo by Ken Kostel
Photo by Marley L. Parker
Photo by Matthew Barton
Photo by ML Parker
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Photo by Véronique LaCapra
Photo courtesy of Woods Hole Oceanographic Institution Archives
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Video by Craig LaPlante
Video by Danielle Fino
Video by Hannah Piecuch
Video by Jayne Doucette
Video by Ken Kostel
Video by Matthew Barton
-- Other --
Photo by Amy Kukulya
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Image courtesy of NOAA Ocean Exploration, Deep Connections 2019.
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graphics/Arctic_Remus_test_A_Kukulya/DSC_0754.jpg
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tkleindinst
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ekoenig: request tsilva: MIT Museum Project tsilva: MIT Museum project kpatterson: OCCI MIT Museum exhibit abehring: ab adorsk: personal adorsk: personal acaracappaqubeck: brochure kkostel: Avery PP kkostel: Avery PP dfino: oceanus jdoucette: Image of The Day, 04/30/2010 tkleindinst: To check images.
ekoenig: request
tsilva: MIT Museum Project
tsilva: MIT Museum project
kpatterson: OCCI MIT Museum exhibit
abehring: ab
adorsk: personal
adorsk: personal
acaracappaqubeck: brochure
kkostel: Avery PP
kkostel: Avery PP
dfino: oceanus
jdoucette: Image of The Day, 04/30/2010
tkleindinst: To check images.
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Newhall, Kristopher W
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AUV REMUS - Remote Environmental Monitoring Units
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REMUS 100
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