Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric

Indonesia's geographical position is an advantage compared to other countries, both in terms of geoeconomics, geopolitics and geostrategy. For this reason, it is necessary to develop and use acoustic methods to describe underwater features, carry out underwater communications or to measure ocea...

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Main Authors: Rayi Khasanah Lalita, Henry M Manik, Irsan S Brojonegoro
Format: Article
Language:English
Published: Politeknik Negeri Batam 2024-01-01
Series:Journal of Applied Geospatial Information
Subjects:
Online Access:https://jurnal.polibatam.ac.id/index.php/JAGI/article/view/2802
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author Rayi Khasanah Lalita
Henry M Manik
Irsan S Brojonegoro
author_facet Rayi Khasanah Lalita
Henry M Manik
Irsan S Brojonegoro
author_sort Rayi Khasanah Lalita
collection DOAJ
description Indonesia's geographical position is an advantage compared to other countries, both in terms of geoeconomics, geopolitics and geostrategy. For this reason, it is necessary to develop and use acoustic methods to describe underwater features, carry out underwater communications or to measure oceanographic variables at sea. This research was intended to provide an analytical and visual graphical description with the aim that it can be used for various purposes both in the research, military and other marine fields, as well as to analyze the influence of sediment and different frequencies on acoustic propagation patterns in shallow waters of Kayeli Bay. This research was conducted using CTD data from Kayeli Bay, which is a body of water in Buru Regency, Maluku Province and is located between 3° 15' 55'' – 3° 22' 50" S and 127° 01'35" – 127° 01' 35 "E, using the Monterey-Miami parabolic equation method using 4 types of sediment and 3 different frequencies as model input. From the results of this research it can be concluded that the propagation of sound waves in shallow seas is greatly influenced by the type of sediment and frequenty used. Changes in acoustic impedance at the bottom of the water and within the water column can significantly influence the behavior of acoustic waves in shallow water environments, and accurate acoustic impedance data are critical for effective ray tracing modelling.
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spelling doaj.art-7fcb9c4963e64ee1922a22a72e1c47d32024-01-02T03:05:47ZengPoliteknik Negeri BatamJournal of Applied Geospatial Information2579-36082024-01-01721086109110.30871/jagi.v7i2.28022802Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru DistricRayi Khasanah Lalita0Henry M Manik1Irsan S Brojonegoro2Graduate School of Marine Technology Faculty of Fisheries and Marine Sciences IPB UniversityDepartment of Marine Science and Technology, Faculty of Fisheries and Marine Sciences, IPB UniversityOcean Engineering Department, Bandung Institute of Technology, Jl. Ganesha 10 BandungIndonesia's geographical position is an advantage compared to other countries, both in terms of geoeconomics, geopolitics and geostrategy. For this reason, it is necessary to develop and use acoustic methods to describe underwater features, carry out underwater communications or to measure oceanographic variables at sea. This research was intended to provide an analytical and visual graphical description with the aim that it can be used for various purposes both in the research, military and other marine fields, as well as to analyze the influence of sediment and different frequencies on acoustic propagation patterns in shallow waters of Kayeli Bay. This research was conducted using CTD data from Kayeli Bay, which is a body of water in Buru Regency, Maluku Province and is located between 3° 15' 55'' – 3° 22' 50" S and 127° 01'35" – 127° 01' 35 "E, using the Monterey-Miami parabolic equation method using 4 types of sediment and 3 different frequencies as model input. From the results of this research it can be concluded that the propagation of sound waves in shallow seas is greatly influenced by the type of sediment and frequenty used. Changes in acoustic impedance at the bottom of the water and within the water column can significantly influence the behavior of acoustic waves in shallow water environments, and accurate acoustic impedance data are critical for effective ray tracing modelling.https://jurnal.polibatam.ac.id/index.php/JAGI/article/view/2802acoustics propagation, shallow water, ray tracing, sediment, frequency
spellingShingle Rayi Khasanah Lalita
Henry M Manik
Irsan S Brojonegoro
Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric
Journal of Applied Geospatial Information
acoustics propagation, shallow water, ray tracing, sediment, frequency
title Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric
title_full Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric
title_fullStr Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric
title_full_unstemmed Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric
title_short Underwater Acoustic Propagation using Monterey-Miami Parabolic Equation in Shallow Water Kayeli Bay Buru Distric
title_sort underwater acoustic propagation using monterey miami parabolic equation in shallow water kayeli bay buru distric
topic acoustics propagation, shallow water, ray tracing, sediment, frequency
url https://jurnal.polibatam.ac.id/index.php/JAGI/article/view/2802
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