Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024)
Wind stress induced by Tropical Cyclone (TC) can be a strong trigger for the occurrence of divergent and upwelling water mass movements and affect the physical dynamics of the ocean. This research is essential to understanding how the intensity TC affects the physical dynamics of the ocean by compar...
Saved in:
Main Authors: | , |
---|---|
Format: | Article |
Language: | English |
Published: |
EDP Sciences
2025-01-01
|
Series: | BIO Web of Conferences |
Subjects: | |
Online Access: | https://www.bio-conferences.org/articles/bioconf/pdf/2025/08/bioconf_srcm24_05008.pdf |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
_version_ | 1825206564771856384 |
---|---|
author | Ainur Rahmat Hidayah Ilham Giri Dwi Kartika Ary |
author_facet | Ainur Rahmat Hidayah Ilham Giri Dwi Kartika Ary |
author_sort | Ainur Rahmat Hidayah Ilham |
collection | DOAJ |
description | Wind stress induced by Tropical Cyclone (TC) can be a strong trigger for the occurrence of divergent and upwelling water mass movements and affect the physical dynamics of the ocean. This research is essential to understanding how the intensity TC affects the physical dynamics of the ocean by comparing three conditions, namely pre, during, and post TC Neville, so that it can reveal patterns of changes in the marine environment due to TC. Observations were made using a combination of Argo float and remote sensing data, to determine the vertical and horizontal physical dynamics in the region. The results showed that the strong Ekman pumping velocity around the cyclone track caused the cooling of the sea surface in the region and deepened the Mixed Layer Depth (MLD). In addition, along Pre-TC, the MLD was 0-12 m, nevertheless deepening the MLD was saw to 14 m (0-26 m) in Post-TC. We conclude that TC Neville can cause changes to the physical dynamics in the Indian Ocean, especially around the TC area. |
format | Article |
id | doaj-art-61808c8837ca4c65959f406b2e8ac62e |
institution | Kabale University |
issn | 2117-4458 |
language | English |
publishDate | 2025-01-01 |
publisher | EDP Sciences |
record_format | Article |
series | BIO Web of Conferences |
spelling | doaj-art-61808c8837ca4c65959f406b2e8ac62e2025-02-07T08:20:28ZengEDP SciencesBIO Web of Conferences2117-44582025-01-011570500810.1051/bioconf/202515705008bioconf_srcm24_05008Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024)Ainur Rahmat Hidayah Ilham0Giri Dwi Kartika Ary1Department of Marine Science, University of Trunojoyo Madura, Jl. Raya Telang PO BOX 2 Kamal-BangkalanDepartment of Marine Science, University of Trunojoyo Madura, Jl. Raya Telang PO BOX 2 Kamal-BangkalanWind stress induced by Tropical Cyclone (TC) can be a strong trigger for the occurrence of divergent and upwelling water mass movements and affect the physical dynamics of the ocean. This research is essential to understanding how the intensity TC affects the physical dynamics of the ocean by comparing three conditions, namely pre, during, and post TC Neville, so that it can reveal patterns of changes in the marine environment due to TC. Observations were made using a combination of Argo float and remote sensing data, to determine the vertical and horizontal physical dynamics in the region. The results showed that the strong Ekman pumping velocity around the cyclone track caused the cooling of the sea surface in the region and deepened the Mixed Layer Depth (MLD). In addition, along Pre-TC, the MLD was 0-12 m, nevertheless deepening the MLD was saw to 14 m (0-26 m) in Post-TC. We conclude that TC Neville can cause changes to the physical dynamics in the Indian Ocean, especially around the TC area.https://www.bio-conferences.org/articles/bioconf/pdf/2025/08/bioconf_srcm24_05008.pdfekman pumping velocity (epv)temperautesalinitymixed layer depth (mld) |
spellingShingle | Ainur Rahmat Hidayah Ilham Giri Dwi Kartika Ary Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024) BIO Web of Conferences ekman pumping velocity (epv) temperaute salinity mixed layer depth (mld) |
title | Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024) |
title_full | Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024) |
title_fullStr | Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024) |
title_full_unstemmed | Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024) |
title_short | Physical Dynamics of the Indian Ocean to Tropical Cyclone Neville (2024) |
title_sort | physical dynamics of the indian ocean to tropical cyclone neville 2024 |
topic | ekman pumping velocity (epv) temperaute salinity mixed layer depth (mld) |
url | https://www.bio-conferences.org/articles/bioconf/pdf/2025/08/bioconf_srcm24_05008.pdf |
work_keys_str_mv | AT ainurrahmathidayahilham physicaldynamicsoftheindianoceantotropicalcycloneneville2024 AT giridwikartikaary physicaldynamicsoftheindianoceantotropicalcycloneneville2024 |