Sea level anomalies in the southern ocean due to thermohaline variability

The Southern Ocean is responsible for the majority of the global oceanic heat uptake. At the same time, higher latitude waters are strongly stratified by salinity. This thesis investigates steric height variability in the Southern Ocean from 2008 to 2017 by analysing potential temperature (✓) and pr...

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Main Author: Kolbe, Marlen
Other Authors: Relvas, Paulo, Roquet, Fabien
Format: Master Thesis
Language:English
Published: 2020
Subjects:
Online Access:http://hdl.handle.net/10400.1/15206
id ftunivalgarve:oai:sapientia.ualg.pt:10400.1/15206
record_format openpolar
spelling ftunivalgarve:oai:sapientia.ualg.pt:10400.1/15206 2023-05-15T14:03:09+02:00 Sea level anomalies in the southern ocean due to thermohaline variability Kolbe, Marlen Relvas, Paulo Roquet, Fabien 2020-12-14 http://hdl.handle.net/10400.1/15206 eng eng http://hdl.handle.net/10400.1/15206 202663566 openAccess http://creativecommons.org/licenses/by/4.0/ CC-BY Densidade da água do oceano Oceano antártico Variações do nível do mar Estrutura termohalina Análise do componente principal funcional Domínio/Área Científica::Ciências Naturais::Outras Ciências Naturais masterThesis 2020 ftunivalgarve 2022-05-30T08:49:33Z The Southern Ocean is responsible for the majority of the global oceanic heat uptake. At the same time, higher latitude waters are strongly stratified by salinity. This thesis investigates steric height variability in the Southern Ocean from 2008 to 2017 by analysing potential temperature (✓) and practical salinity (S) profiles obtained from global ocean reanalyses. The work was performed using an innovative method called functional Principal Component Analysis (fPCA). This feature extraction procedure was applied on the ✓ and S profiles (2000 m depth) which have been transformed into B-spline functions beforehand. The resulting thermohaline modes reveal information about the general ✓ and S structure, and their variations have been analysed over time. By integrating density anomalies, steric height was computed and related to changes of the modes using a Multiple Linear Regression model. Lastly, steric height trends have been compared to total sea surface height (SSH) data from satellite altimetry. Despite recent increases in meltwater and atmospheric temperatures, steric height in Antarctic waters above 2000 m has recently dropped due to higher salt content, while subtropical waters farther north have mostly risen due to increased heat storage. Interannual steric height changes are clearly depicted in total SSH variability, but at present the dominant cause for the significant sea level rise south of 30°S is increased freshwater discharge from glaciers and ice sheets. Oceano Antártico é responsável pela maior parte da absorção global de calor oceânico. Ao mesmo tempo, as águas de latitudes mais altas são fortemente estratificadas por salinidade. Esta tese investiga a variabilidade da altura estérica no Oceano Antártico de 2008 a 2017, analisando a temperatura potencial (✓) e os perfis práticos de salinidade (S) obtidos a partir de reanálises oceânicas globais. O trabalho foi realizado utilizando um método inovador denominado Análise de Componentes Principais Funcionais (fPCA). Este procedimento de extração ... Master Thesis Antarc* Antarctic Southern Ocean Universidade do Algarve: Sapienta Antarctic Southern Ocean
institution Open Polar
collection Universidade do Algarve: Sapienta
op_collection_id ftunivalgarve
language English
topic Densidade da água do oceano
Oceano antártico
Variações do nível do mar
Estrutura termohalina
Análise do componente principal funcional
Domínio/Área Científica::Ciências Naturais::Outras Ciências Naturais
spellingShingle Densidade da água do oceano
Oceano antártico
Variações do nível do mar
Estrutura termohalina
Análise do componente principal funcional
Domínio/Área Científica::Ciências Naturais::Outras Ciências Naturais
Kolbe, Marlen
Sea level anomalies in the southern ocean due to thermohaline variability
topic_facet Densidade da água do oceano
Oceano antártico
Variações do nível do mar
Estrutura termohalina
Análise do componente principal funcional
Domínio/Área Científica::Ciências Naturais::Outras Ciências Naturais
description The Southern Ocean is responsible for the majority of the global oceanic heat uptake. At the same time, higher latitude waters are strongly stratified by salinity. This thesis investigates steric height variability in the Southern Ocean from 2008 to 2017 by analysing potential temperature (✓) and practical salinity (S) profiles obtained from global ocean reanalyses. The work was performed using an innovative method called functional Principal Component Analysis (fPCA). This feature extraction procedure was applied on the ✓ and S profiles (2000 m depth) which have been transformed into B-spline functions beforehand. The resulting thermohaline modes reveal information about the general ✓ and S structure, and their variations have been analysed over time. By integrating density anomalies, steric height was computed and related to changes of the modes using a Multiple Linear Regression model. Lastly, steric height trends have been compared to total sea surface height (SSH) data from satellite altimetry. Despite recent increases in meltwater and atmospheric temperatures, steric height in Antarctic waters above 2000 m has recently dropped due to higher salt content, while subtropical waters farther north have mostly risen due to increased heat storage. Interannual steric height changes are clearly depicted in total SSH variability, but at present the dominant cause for the significant sea level rise south of 30°S is increased freshwater discharge from glaciers and ice sheets. Oceano Antártico é responsável pela maior parte da absorção global de calor oceânico. Ao mesmo tempo, as águas de latitudes mais altas são fortemente estratificadas por salinidade. Esta tese investiga a variabilidade da altura estérica no Oceano Antártico de 2008 a 2017, analisando a temperatura potencial (✓) e os perfis práticos de salinidade (S) obtidos a partir de reanálises oceânicas globais. O trabalho foi realizado utilizando um método inovador denominado Análise de Componentes Principais Funcionais (fPCA). Este procedimento de extração ...
author2 Relvas, Paulo
Roquet, Fabien
format Master Thesis
author Kolbe, Marlen
author_facet Kolbe, Marlen
author_sort Kolbe, Marlen
title Sea level anomalies in the southern ocean due to thermohaline variability
title_short Sea level anomalies in the southern ocean due to thermohaline variability
title_full Sea level anomalies in the southern ocean due to thermohaline variability
title_fullStr Sea level anomalies in the southern ocean due to thermohaline variability
title_full_unstemmed Sea level anomalies in the southern ocean due to thermohaline variability
title_sort sea level anomalies in the southern ocean due to thermohaline variability
publishDate 2020
url http://hdl.handle.net/10400.1/15206
geographic Antarctic
Southern Ocean
geographic_facet Antarctic
Southern Ocean
genre Antarc*
Antarctic
Southern Ocean
genre_facet Antarc*
Antarctic
Southern Ocean
op_relation http://hdl.handle.net/10400.1/15206
202663566
op_rights openAccess
http://creativecommons.org/licenses/by/4.0/
op_rightsnorm CC-BY
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