Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography

Temperature has a great impact on underwater environment. In this study, a grid-based scheme of underwater ultrasound tomography was proposed to reconstruct temperature spatial distribution. Computer simulations showed that ultrasound tomography reconstructed the distributed temperature pattern of D...

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Main Authors: Xiaojian Yu, Song Lin, Xiongye Hong, Honghui Huang
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9490629/
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author Xiaojian Yu
Song Lin
Xiongye Hong
Honghui Huang
author_facet Xiaojian Yu
Song Lin
Xiongye Hong
Honghui Huang
author_sort Xiaojian Yu
collection DOAJ
description Temperature has a great impact on underwater environment. In this study, a grid-based scheme of underwater ultrasound tomography was proposed to reconstruct temperature spatial distribution. Computer simulations showed that ultrasound tomography reconstructed the distributed temperature pattern of Daya Bay seawater. The water pool experiment showed that the reconstructed temperature was consistent with in situ temperature. The ultrasound tomography had advantages in reducing measurements to extract the temperature spatial pattern over the in-situ method, and in increasing measurement accuracy over low frequency acoustic scheme. The results suggest that underwater ultrasound tomography may provide a valuable approach to reconstruct high spatial resolution temperature distribution at small-scale coastal, estuary, and sea-land interface regions.
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spelling doaj.art-4a81b01d4fc047f7b6411f7d175d95c62022-12-21T18:22:57ZengIEEEIEEE Access2169-35362021-01-01910367010367610.1109/ACCESS.2021.30983169490629Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound TomographyXiaojian Yu0https://orcid.org/0000-0001-8602-5695Song Lin1Xiongye Hong2Honghui Huang3School of Biological Science and Biotechnology, Minnan Normal University, Zhangzhou, Fujian, ChinaCollege of Ocean and Earth Science, Xiamen University, Xiamen, Fujian, ChinaFujian Coastal Sea Environmental Monitoring Station, Putian, Fujian, ChinaSouthern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou, ChinaTemperature has a great impact on underwater environment. In this study, a grid-based scheme of underwater ultrasound tomography was proposed to reconstruct temperature spatial distribution. Computer simulations showed that ultrasound tomography reconstructed the distributed temperature pattern of Daya Bay seawater. The water pool experiment showed that the reconstructed temperature was consistent with in situ temperature. The ultrasound tomography had advantages in reducing measurements to extract the temperature spatial pattern over the in-situ method, and in increasing measurement accuracy over low frequency acoustic scheme. The results suggest that underwater ultrasound tomography may provide a valuable approach to reconstruct high spatial resolution temperature distribution at small-scale coastal, estuary, and sea-land interface regions.https://ieeexplore.ieee.org/document/9490629/Ultrasound tomographyunderwater temperaturesmall-scale coastal regions
spellingShingle Xiaojian Yu
Song Lin
Xiongye Hong
Honghui Huang
Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography
IEEE Access
Ultrasound tomography
underwater temperature
small-scale coastal regions
title Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography
title_full Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography
title_fullStr Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography
title_full_unstemmed Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography
title_short Reconstructing Underwater Temperature Spatial Distribution Using Ultrasound Tomography
title_sort reconstructing underwater temperature spatial distribution using ultrasound tomography
topic Ultrasound tomography
underwater temperature
small-scale coastal regions
url https://ieeexplore.ieee.org/document/9490629/
work_keys_str_mv AT xiaojianyu reconstructingunderwatertemperaturespatialdistributionusingultrasoundtomography
AT songlin reconstructingunderwatertemperaturespatialdistributionusingultrasoundtomography
AT xiongyehong reconstructingunderwatertemperaturespatialdistributionusingultrasoundtomography
AT honghuihuang reconstructingunderwatertemperaturespatialdistributionusingultrasoundtomography