Long period and semi-diurnal tidal oscillations.

A brief review is made of Laplace's equations governing tidal oscillations and of the subsequent claims and counter-claims on their validity. The purpose of this study is to investigate these claims further, with regard to long period and semi-diurnal oscillations. As the underlying assumptions...

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Bibliographic Details
Main Author: Adams, J. L.
Format: Doctoral or Postdoctoral Thesis
Language:English
Published: Mathematics 2015
Subjects:
Online Access:http://hdl.handle.net/2381/34544
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spelling ftleicester:oai:lra.le.ac.uk:2381/34544 2023-05-15T17:39:55+02:00 Long period and semi-diurnal tidal oscillations. Adams, J. L. 2015-11-19T08:55:28Z http://hdl.handle.net/2381/34544 en eng Mathematics University of Leicester http://hdl.handle.net/2381/34544 U441451 x752993509 Copyright © the author. All rights reserved. ProQuest Thesis Doctoral Ph.D. 2015 ftleicester 2019-03-22T20:20:51Z A brief review is made of Laplace's equations governing tidal oscillations and of the subsequent claims and counter-claims on their validity. The purpose of this study is to investigate these claims further, with regard to long period and semi-diurnal oscillations. As the underlying assumptions are of importance, these are considered first in some depth. A set of equations is thereby formulated which differ from Laplace's equations in that extra terms of the Coriolis force are retained. These equations are taken as the basis from which a comparison is made with the previous findings. Taking the semi-diurnal constituent first, a solution is derived in the Equatorial Canal. Graphs are produced showing the velocity components as functions of canal depth and width. These compare favourably with Laplace's theory. However, whilst the description of the tidal elevation is qualitatively the same as before, there are significant quantitative differences. In particular tides become direct only in a much deeper ocean than previously predicted. Using a similar approach a solution is derived for the long period constituent in a canal-like region near the North Pole. Whereas Laplace's theory for this region gives a solution involving Bessel functions, these become Modified Bessel functions in the derived solution. Arising from this, some different effects are noted in the velocity components. Doctoral or Postdoctoral Thesis North Pole University of Leicester: Leicester Research Archive (LRA) North Pole
institution Open Polar
collection University of Leicester: Leicester Research Archive (LRA)
op_collection_id ftleicester
language English
description A brief review is made of Laplace's equations governing tidal oscillations and of the subsequent claims and counter-claims on their validity. The purpose of this study is to investigate these claims further, with regard to long period and semi-diurnal oscillations. As the underlying assumptions are of importance, these are considered first in some depth. A set of equations is thereby formulated which differ from Laplace's equations in that extra terms of the Coriolis force are retained. These equations are taken as the basis from which a comparison is made with the previous findings. Taking the semi-diurnal constituent first, a solution is derived in the Equatorial Canal. Graphs are produced showing the velocity components as functions of canal depth and width. These compare favourably with Laplace's theory. However, whilst the description of the tidal elevation is qualitatively the same as before, there are significant quantitative differences. In particular tides become direct only in a much deeper ocean than previously predicted. Using a similar approach a solution is derived for the long period constituent in a canal-like region near the North Pole. Whereas Laplace's theory for this region gives a solution involving Bessel functions, these become Modified Bessel functions in the derived solution. Arising from this, some different effects are noted in the velocity components.
format Doctoral or Postdoctoral Thesis
author Adams, J. L.
spellingShingle Adams, J. L.
Long period and semi-diurnal tidal oscillations.
author_facet Adams, J. L.
author_sort Adams, J. L.
title Long period and semi-diurnal tidal oscillations.
title_short Long period and semi-diurnal tidal oscillations.
title_full Long period and semi-diurnal tidal oscillations.
title_fullStr Long period and semi-diurnal tidal oscillations.
title_full_unstemmed Long period and semi-diurnal tidal oscillations.
title_sort long period and semi-diurnal tidal oscillations.
publisher Mathematics
publishDate 2015
url http://hdl.handle.net/2381/34544
geographic North Pole
geographic_facet North Pole
genre North Pole
genre_facet North Pole
op_source ProQuest
op_relation http://hdl.handle.net/2381/34544
U441451
x752993509
op_rights Copyright © the author. All rights reserved.
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