Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Clara Smart"'
Publikováno v:
Frontiers in Marine Science, Vol 7 (2020)
This paper examines a deep-water (∼900 m) cold-seep discovered in a low oxygen environment ∼30 km off the California coast in 2015 during an E/V Nautilus telepresence-enabled cruise. This Triton site was initially detected from bubble flares iden
Externí odkaz:
https://doaj.org/article/908146ea6a4d4ba1aeee46b9159b902c
Publikováno v:
Frontiers in Marine Science, Vol 7 (2020)
This paper examines a deep-water (∼900 m) cold-seep discovered in a low oxygen environment ∼30 km off the California coast in 2015 during an E/V Nautilus telepresence-enabled cruise. This Triton site was initially detected from bubble flares iden
Autor:
Eric Mittelstaedt, Clara Smart
Publikováno v:
Deep Sea Research Part II: Topical Studies in Oceanography. 150:67-81
Quantitatively assessing the impact of hydrothermal circulation on geological and biological systems in submarine environments requires accurate characterization of biota, fluid flow, and, in many shallow systems, gas discharge. In a single vent fiel
Publikováno v:
Earth and Space Science. 4:348-363
Systematic and remote detection of diffuse hydrothermal venting is complex yet necessary to establish a comprehensive understanding the distribution, contribution, and context of fluid flow within hydrothermal systems. Diffuse flow is characterized b
Autor:
Clara Smart, Chris Roman
Publikováno v:
Earth and Space Science. 4:364-376
Algorithms to detect diffuse hydrothermal vent fluids using the structured light laser sensor have proven to be successful. However, potential limitations due to survey parameters, including altitude and vehicle heading, have not been explored and ar
Autor:
Katherine L.C. Bell, Chris Roman, Clara Smart, Muhammet Duman, James P. Delgado, Robert D. Ballard, J. Ian Vaughn, Jason Krumholz, Carter DuVal, Michael L. Brennan, Arthur C. Trembanis, Dan Davis
Publikováno v:
Marine Geology. 371:82-88
Bottom trawl fishing presents a severe yet largely unquantified threat to shipwreck sites. Here we present a quantification of damage to sites from the Aegean and Black seas through high resolution imaging of 45 shipwrecks discovered by the EN Nautil
Autor:
Katherine L.C. Bell, Sarah Fuller, Frederic Dondin, Patricia Miloslavich, Brad A. Seibel, Brennan T. Phillips, Robert D. Ballard, Chris Roman, Steven Carey, Clara Smart, Nam Siu, Patrick Connally, Judith Gobin, Richard J. Bell
Publikováno v:
Deep Sea Research Part I: Oceanographic Research Papers. 93:156-160
Remotely operated vehicle (ROV) exploration at the distal margins of a debris avalanche deposit from Kick’em Jenny submarine volcano in Grenada has revealed areas of cold seeps with chemosynthetic-based ecosystems. The seeps occur on steep slopes o
Publikováno v:
Geochemistry, Geophysics, Geosystems. 14:4743-4757
[1] Currently, we lack a systematic and remote method for locating and quantifying diffuse seafloor venting using underwater robotic vehicles. Diffuse flow is characterized by both low temperature and low flux rates, which cannot readily be distingui
Publikováno v:
IROS
This paper details a methodology for using structured light laser imaging to create high resolution bathymetric maps of the sea floor. The system includes a pair of stereo cameras and an inclined 532nm sheet laser mounted to a remotely operated vehic
Autor:
Sarah Fuller, Clara Smart, Michael Vecchione, Kathleen Cantner, Brennan T. Phillips, Leigh Marsh, Steven Auscavitch, Chris German, Michael J. Cheadle, Diva J. Amon, Barbara E. John, Robert D. Ballard, Bernard Ball, Katherine L.C. Bell, Jon Copley, Cindy Lee Van Dover
Mid-Cayman Rise objectives were built on exciting results from a flurry of recent expeditions that investigated hydrothermal sites in the region (German et al., 2010, 2012). The 2013 E/V Nautilus cruise explored oceanic core complexes (OCCs), tall, s
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::169e75d03fed681d5250bf36320e8612
http://hdl.handle.net/11568/903135
http://hdl.handle.net/11568/903135