The atmospheric boundary layer over the Southern Ocean.

The thermodynamic structure of the lower troposphere over the Southern Ocean is analysed by employing over 16 years of high resolution upper air soundings from Macquarie Island (54.62 S, 158.85 E). The soundings are analysed to develop an understanding of the structure of the boundary layer and wind...

Full description

Bibliographic Details
Main Author: Hande, Luke
Format: Thesis
Language:unknown
Published: 2017
Subjects:
Online Access:https://doi.org/10.4225/03/58b4eed1bca1c
https://figshare.com/articles/thesis/The_atmospheric_boundary_layer_over_the_Southern_Ocean_/4701019
id ftmonashunivfig:oai:figshare.com:article/4701019
record_format openpolar
spelling ftmonashunivfig:oai:figshare.com:article/4701019 2023-05-15T17:09:57+02:00 The atmospheric boundary layer over the Southern Ocean. Hande, Luke 2017-02-28T03:30:23Z https://doi.org/10.4225/03/58b4eed1bca1c https://figshare.com/articles/thesis/The_atmospheric_boundary_layer_over_the_Southern_Ocean_/4701019 unknown doi:10.4225/03/58b4eed1bca1c https://figshare.com/articles/thesis/The_atmospheric_boundary_layer_over_the_Southern_Ocean_/4701019 In Copyright ethesis-20130531-132617 Atmospheric Boundary Layer thesis(doctorate) monash:119943 Open access 1959.1/877793 Southern Ocean 2013 Text Thesis 2017 ftmonashunivfig https://doi.org/10.4225/03/58b4eed1bca1c 2022-06-06T15:46:13Z The thermodynamic structure of the lower troposphere over the Southern Ocean is analysed by employing over 16 years of high resolution upper air soundings from Macquarie Island (54.62 S, 158.85 E). The soundings are analysed to develop an understanding of the structure of the boundary layer and wind shear occurring through the lower levels over this region, and to compare this to European Centre for Medium-Range Weather Forecasts (ECMWF) model level reanalysis data for the Year of Tropical Convection (YOTC). A multiple layered structure is commonly observed in the high resolution soundings, and is also observed in YOTC, but with a lower frequency. The climatological mean and variability of a number of variables are calculated for both data sets, which reveals that YOTC performs well, but has weaknesses in modelling the observed moisture and wind fields, particularly evident in wind shear profiles. A distinction between a number of boundary layer types is made, and the frequency with which they occur is quantified for both data sets. Proxy cloud fields are constructed for the two data sets, and these suggest that clouds are commonly observed in a region between the top of the boundary layer and a secondary temperature inversion. An examination of the wind shear across the cloud boundaries finds wind shear over cloud base occurs more frequently than cloud top, suggesting that the cloud fields are not embedded in a well-mixed boundary layer. Next, an attempt to generalise these results to a broad region across the Southern Ocean is made using the Constellation Observing System for Meteorology, Ionosphere, and climate (COSMIC) Global Positioning System (GPS) Radio Occultation (RO) observations. A direct comparison of temporally and spatially co-located COSMIC profiles and radiosonde profiles from Macquarie Island shows the performance of COSMIC is variable. COSMIC often struggles to reproduce the profiles over strong inversions in temperature or large changes in moisture, and the height and occurrence of the ... Thesis Macquarie Island Southern Ocean Monash University: Figshare Southern Ocean
institution Open Polar
collection Monash University: Figshare
op_collection_id ftmonashunivfig
language unknown
topic ethesis-20130531-132617
Atmospheric Boundary Layer
thesis(doctorate)
monash:119943
Open access
1959.1/877793
Southern Ocean
2013
spellingShingle ethesis-20130531-132617
Atmospheric Boundary Layer
thesis(doctorate)
monash:119943
Open access
1959.1/877793
Southern Ocean
2013
Hande, Luke
The atmospheric boundary layer over the Southern Ocean.
topic_facet ethesis-20130531-132617
Atmospheric Boundary Layer
thesis(doctorate)
monash:119943
Open access
1959.1/877793
Southern Ocean
2013
description The thermodynamic structure of the lower troposphere over the Southern Ocean is analysed by employing over 16 years of high resolution upper air soundings from Macquarie Island (54.62 S, 158.85 E). The soundings are analysed to develop an understanding of the structure of the boundary layer and wind shear occurring through the lower levels over this region, and to compare this to European Centre for Medium-Range Weather Forecasts (ECMWF) model level reanalysis data for the Year of Tropical Convection (YOTC). A multiple layered structure is commonly observed in the high resolution soundings, and is also observed in YOTC, but with a lower frequency. The climatological mean and variability of a number of variables are calculated for both data sets, which reveals that YOTC performs well, but has weaknesses in modelling the observed moisture and wind fields, particularly evident in wind shear profiles. A distinction between a number of boundary layer types is made, and the frequency with which they occur is quantified for both data sets. Proxy cloud fields are constructed for the two data sets, and these suggest that clouds are commonly observed in a region between the top of the boundary layer and a secondary temperature inversion. An examination of the wind shear across the cloud boundaries finds wind shear over cloud base occurs more frequently than cloud top, suggesting that the cloud fields are not embedded in a well-mixed boundary layer. Next, an attempt to generalise these results to a broad region across the Southern Ocean is made using the Constellation Observing System for Meteorology, Ionosphere, and climate (COSMIC) Global Positioning System (GPS) Radio Occultation (RO) observations. A direct comparison of temporally and spatially co-located COSMIC profiles and radiosonde profiles from Macquarie Island shows the performance of COSMIC is variable. COSMIC often struggles to reproduce the profiles over strong inversions in temperature or large changes in moisture, and the height and occurrence of the ...
format Thesis
author Hande, Luke
author_facet Hande, Luke
author_sort Hande, Luke
title The atmospheric boundary layer over the Southern Ocean.
title_short The atmospheric boundary layer over the Southern Ocean.
title_full The atmospheric boundary layer over the Southern Ocean.
title_fullStr The atmospheric boundary layer over the Southern Ocean.
title_full_unstemmed The atmospheric boundary layer over the Southern Ocean.
title_sort atmospheric boundary layer over the southern ocean.
publishDate 2017
url https://doi.org/10.4225/03/58b4eed1bca1c
https://figshare.com/articles/thesis/The_atmospheric_boundary_layer_over_the_Southern_Ocean_/4701019
geographic Southern Ocean
geographic_facet Southern Ocean
genre Macquarie Island
Southern Ocean
genre_facet Macquarie Island
Southern Ocean
op_relation doi:10.4225/03/58b4eed1bca1c
https://figshare.com/articles/thesis/The_atmospheric_boundary_layer_over_the_Southern_Ocean_/4701019
op_rights In Copyright
op_doi https://doi.org/10.4225/03/58b4eed1bca1c
_version_ 1766066329078464512