Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic

honors thesis College of Science Biology Dr. Jon Seger The goal of this study was to investigate whether underwater noise affects the grouping behavior of southern right-whale (Eubalaena australis) mother-calf pairs at Península Valdés, Argentina. This area is a major calving ground for the populati...

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Main Author: Muehlman, Jayanti
Format: Text
Language:English
Published: 2020
Subjects:
Online Access:https://collections.lib.utah.edu/ark:/87278/s61c7g59
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spelling ftunivutah:oai:collections.lib.utah.edu:ir_htoa/1578899 2023-05-15T18:26:17+02:00 Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic Muehlman, Jayanti 2020 application/pdf https://collections.lib.utah.edu/ark:/87278/s61c7g59 eng eng https://collections.lib.utah.edu/ark:/87278/s61c7g59 (c) Jayanti Muehlman Text 2020 ftunivutah 2021-06-03T18:22:22Z honors thesis College of Science Biology Dr. Jon Seger The goal of this study was to investigate whether underwater noise affects the grouping behavior of southern right-whale (Eubalaena australis) mother-calf pairs at Península Valdés, Argentina. This area is a major calving ground for the population that occupies the western South Atlantic. Two large gulfs with gradually sloping beaches provide perfect conditions for mothers to protect their calves. Mothers concentrate in shallow water along the shoreline so that predators can approach only from offshore. Southern right whales use an "up-call" to contact each other. Being in a group lowers an individual's vulnerability to predators. There is an overlap in frequency between the upcall and underwater noise caused by wind. Distortion or masking of the up-call may change the ability of whales to locate one another and thereby alter whale grouping in times of high underwater noise. Wind creates underwater noise through turbulence at the surface. In this study we used wind-speed as a proxy for underwater noise. Whale group sizes were assessed during aerial surveys, and were used to indicate the average proximity of whales on a given day. Wind-speed data for the calving ground was provided by NOAA's ERDDAP data server. Correlations between wind-speed and whale proximity were interpreted as evidence that underwater noise affects the ability of whales to hear each other. We found significant relationships between increased underwater noise caused by higher wind-speeds and increased numbers of whales in groups. The effect of underwater noise (wind) on whale grouping decreases with the time before an aerial survey. The exceptions are 12 and 36 hours before a survey. Wind-speed 12 hours before a survey has a large and very highly significant effect on the tendency of whales to form groups. Unexpectedly, wind-speed 36 hours before a survey also has a significant, but negative, effect on grouping. Text Southern Right Whale The University of Utah: J. Willard Marriott Digital Library Argentina
institution Open Polar
collection The University of Utah: J. Willard Marriott Digital Library
op_collection_id ftunivutah
language English
description honors thesis College of Science Biology Dr. Jon Seger The goal of this study was to investigate whether underwater noise affects the grouping behavior of southern right-whale (Eubalaena australis) mother-calf pairs at Península Valdés, Argentina. This area is a major calving ground for the population that occupies the western South Atlantic. Two large gulfs with gradually sloping beaches provide perfect conditions for mothers to protect their calves. Mothers concentrate in shallow water along the shoreline so that predators can approach only from offshore. Southern right whales use an "up-call" to contact each other. Being in a group lowers an individual's vulnerability to predators. There is an overlap in frequency between the upcall and underwater noise caused by wind. Distortion or masking of the up-call may change the ability of whales to locate one another and thereby alter whale grouping in times of high underwater noise. Wind creates underwater noise through turbulence at the surface. In this study we used wind-speed as a proxy for underwater noise. Whale group sizes were assessed during aerial surveys, and were used to indicate the average proximity of whales on a given day. Wind-speed data for the calving ground was provided by NOAA's ERDDAP data server. Correlations between wind-speed and whale proximity were interpreted as evidence that underwater noise affects the ability of whales to hear each other. We found significant relationships between increased underwater noise caused by higher wind-speeds and increased numbers of whales in groups. The effect of underwater noise (wind) on whale grouping decreases with the time before an aerial survey. The exceptions are 12 and 36 hours before a survey. Wind-speed 12 hours before a survey has a large and very highly significant effect on the tendency of whales to form groups. Unexpectedly, wind-speed 36 hours before a survey also has a significant, but negative, effect on grouping.
format Text
author Muehlman, Jayanti
spellingShingle Muehlman, Jayanti
Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic
author_facet Muehlman, Jayanti
author_sort Muehlman, Jayanti
title Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic
title_short Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic
title_full Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic
title_fullStr Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic
title_full_unstemmed Effects of Wind-Generated Underwater Noise on Southern right Whale Group Dynamic
title_sort effects of wind-generated underwater noise on southern right whale group dynamic
publishDate 2020
url https://collections.lib.utah.edu/ark:/87278/s61c7g59
geographic Argentina
geographic_facet Argentina
genre Southern Right Whale
genre_facet Southern Right Whale
op_relation https://collections.lib.utah.edu/ark:/87278/s61c7g59
op_rights (c) Jayanti Muehlman
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