The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling

The increasing long-term sea level rise is particularly interesting and needs a significant investment in coastal protection procedures. The coastal sea level has been verified with tide gauges and well maintained with reliable data accuracy since a few centuries ago. Satellite altimeter has been us...

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Published in:Journal of Advanced Research in Applied Sciences and Engineering Technology
Main Author: Yazid N.M.; Din A.H.M.; Pa’suya M.F.; Abdullah N.M.; Kaamin M.; Kadir M.A.A.
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85190794096&doi=10.37934%2faraset.42.2.89103&partnerID=40&md5=97d4bf19090b4d12d3db4953b1853a04
id 2-s2.0-85190794096
spelling 2-s2.0-85190794096
Yazid N.M.; Din A.H.M.; Pa’suya M.F.; Abdullah N.M.; Kaamin M.; Kadir M.A.A.
The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
2024
Journal of Advanced Research in Applied Sciences and Engineering Technology
42
2
10.37934/araset.42.2.89103
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85190794096&doi=10.37934%2faraset.42.2.89103&partnerID=40&md5=97d4bf19090b4d12d3db4953b1853a04
The increasing long-term sea level rise is particularly interesting and needs a significant investment in coastal protection procedures. The coastal sea level has been verified with tide gauges and well maintained with reliable data accuracy since a few centuries ago. Satellite altimeter has been used for sea level study and increasingly for operational purposes. However, the precision of altimetry data in coastal areas is frequently eliminated by the geographically correlated orbit errors, which induce a regional inhomogeneous mission bias. This study presents an effort to verify sea level anomaly based on altimetry data with tide gauge stations as an early procedure to provide good sea level anomaly data for mean sea surface, gravity anomaly, and geoid determination over Malaysian seas. The altimetry data is validated by comparing the sea level anomaly with ground truth data (tidal data) near the coastal area. Nine selected areas were chosen to represent the ground truth data. The findings found that the altimetry data over the South China Sea (Pulau Tioman, Geting, Cendering, Bintulu, and Kota Kinabalu) provided a good pattern, high correlation, and a minimum root mean square error (RMSE) value after the verification with tidal sea level anomaly data. However, it clearly shows that Tawau station over the Celebes Sea provides a poor pattern, correlation, and a high RMSE value with tidal sea level anomaly data. In conclusion, further enhancements are expected from the refined processing and filtering of altimetry data for the sea level study in the coastal zone. © 2024, Semarak Ilmu Publishing. All rights reserved.
Semarak Ilmu Publishing
24621943
English
Article
All Open Access; Hybrid Gold Open Access
author Yazid N.M.; Din A.H.M.; Pa’suya M.F.; Abdullah N.M.; Kaamin M.; Kadir M.A.A.
spellingShingle Yazid N.M.; Din A.H.M.; Pa’suya M.F.; Abdullah N.M.; Kaamin M.; Kadir M.A.A.
The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
author_facet Yazid N.M.; Din A.H.M.; Pa’suya M.F.; Abdullah N.M.; Kaamin M.; Kadir M.A.A.
author_sort Yazid N.M.; Din A.H.M.; Pa’suya M.F.; Abdullah N.M.; Kaamin M.; Kadir M.A.A.
title The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
title_short The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
title_full The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
title_fullStr The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
title_full_unstemmed The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
title_sort The Verification of Sea Level Anomaly (SLA) Versus Tide Gauge for Geoid Modelling
publishDate 2024
container_title Journal of Advanced Research in Applied Sciences and Engineering Technology
container_volume 42
container_issue 2
doi_str_mv 10.37934/araset.42.2.89103
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85190794096&doi=10.37934%2faraset.42.2.89103&partnerID=40&md5=97d4bf19090b4d12d3db4953b1853a04
description The increasing long-term sea level rise is particularly interesting and needs a significant investment in coastal protection procedures. The coastal sea level has been verified with tide gauges and well maintained with reliable data accuracy since a few centuries ago. Satellite altimeter has been used for sea level study and increasingly for operational purposes. However, the precision of altimetry data in coastal areas is frequently eliminated by the geographically correlated orbit errors, which induce a regional inhomogeneous mission bias. This study presents an effort to verify sea level anomaly based on altimetry data with tide gauge stations as an early procedure to provide good sea level anomaly data for mean sea surface, gravity anomaly, and geoid determination over Malaysian seas. The altimetry data is validated by comparing the sea level anomaly with ground truth data (tidal data) near the coastal area. Nine selected areas were chosen to represent the ground truth data. The findings found that the altimetry data over the South China Sea (Pulau Tioman, Geting, Cendering, Bintulu, and Kota Kinabalu) provided a good pattern, high correlation, and a minimum root mean square error (RMSE) value after the verification with tidal sea level anomaly data. However, it clearly shows that Tawau station over the Celebes Sea provides a poor pattern, correlation, and a high RMSE value with tidal sea level anomaly data. In conclusion, further enhancements are expected from the refined processing and filtering of altimetry data for the sea level study in the coastal zone. © 2024, Semarak Ilmu Publishing. All rights reserved.
publisher Semarak Ilmu Publishing
issn 24621943
language English
format Article
accesstype All Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
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