ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.

The major theoretical equations for the growth rate and thickness of sea ice are analyzed in order to facilitate the prediction of ice thickness in areas where direct measurement is difficult. It is shown that the more primitive equations are special cases of the more complex ones, and it is conclud...

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Bibliographic Details
Main Authors: Mettler,A. J., Stehle,N. S.
Other Authors: NAVAL CIVIL ENGINEERING LAB PORT HUENEME CALIF
Format: Text
Language:English
Published: 1966
Subjects:
Ice
Online Access:http://www.dtic.mil/docs/citations/AD0642837
http://oai.dtic.mil/oai/oai?&verb=getRecord&metadataPrefix=html&identifier=AD0642837
id ftdtic:AD0642837
record_format openpolar
spelling ftdtic:AD0642837 2023-05-15T16:36:54+02:00 ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE. Mettler,A. J. Stehle,N. S. NAVAL CIVIL ENGINEERING LAB PORT HUENEME CALIF 1966-11 text/html http://www.dtic.mil/docs/citations/AD0642837 http://oai.dtic.mil/oai/oai?&verb=getRecord&metadataPrefix=html&identifier=AD0642837 en eng http://www.dtic.mil/docs/citations/AD0642837 APPROVED FOR PUBLIC RELEASE DTIC AND NTIS Snow Ice and Permafrost (*ICE MATHEMATICAL PREDICTION) DYNAMICS THICKNESS EQUATIONS APPROXIMATION(MATHEMATICS) THERMODYNAMICS COMPUTER PROGRAMMING WIND Text 1966 ftdtic 2016-02-18T19:39:29Z The major theoretical equations for the growth rate and thickness of sea ice are analyzed in order to facilitate the prediction of ice thickness in areas where direct measurement is difficult. It is shown that the more primitive equations are special cases of the more complex ones, and it is concluded that at present, Kolesnikov's equation should be used for ice-thickness calculations. Based on this equation, graphs illustrating the way in which variables and parameters affect ice thickness, a simplified equation for rapid approximation of ice growth, and a computer program are presented. (Author) Text Ice permafrost Sea ice Defense Technical Information Center: DTIC Technical Reports database
institution Open Polar
collection Defense Technical Information Center: DTIC Technical Reports database
op_collection_id ftdtic
language English
topic Snow
Ice and Permafrost
(*ICE
MATHEMATICAL PREDICTION)
DYNAMICS
THICKNESS
EQUATIONS
APPROXIMATION(MATHEMATICS)
THERMODYNAMICS
COMPUTER PROGRAMMING
WIND
spellingShingle Snow
Ice and Permafrost
(*ICE
MATHEMATICAL PREDICTION)
DYNAMICS
THICKNESS
EQUATIONS
APPROXIMATION(MATHEMATICS)
THERMODYNAMICS
COMPUTER PROGRAMMING
WIND
Mettler,A. J.
Stehle,N. S.
ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.
topic_facet Snow
Ice and Permafrost
(*ICE
MATHEMATICAL PREDICTION)
DYNAMICS
THICKNESS
EQUATIONS
APPROXIMATION(MATHEMATICS)
THERMODYNAMICS
COMPUTER PROGRAMMING
WIND
description The major theoretical equations for the growth rate and thickness of sea ice are analyzed in order to facilitate the prediction of ice thickness in areas where direct measurement is difficult. It is shown that the more primitive equations are special cases of the more complex ones, and it is concluded that at present, Kolesnikov's equation should be used for ice-thickness calculations. Based on this equation, graphs illustrating the way in which variables and parameters affect ice thickness, a simplified equation for rapid approximation of ice growth, and a computer program are presented. (Author)
author2 NAVAL CIVIL ENGINEERING LAB PORT HUENEME CALIF
format Text
author Mettler,A. J.
Stehle,N. S.
author_facet Mettler,A. J.
Stehle,N. S.
author_sort Mettler,A. J.
title ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.
title_short ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.
title_full ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.
title_fullStr ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.
title_full_unstemmed ICE ENGINEERING-ANALYSIS OF THE GROWTH OF SEA ICE.
title_sort ice engineering-analysis of the growth of sea ice.
publishDate 1966
url http://www.dtic.mil/docs/citations/AD0642837
http://oai.dtic.mil/oai/oai?&verb=getRecord&metadataPrefix=html&identifier=AD0642837
genre Ice
permafrost
Sea ice
genre_facet Ice
permafrost
Sea ice
op_source DTIC AND NTIS
op_relation http://www.dtic.mil/docs/citations/AD0642837
op_rights APPROVED FOR PUBLIC RELEASE
_version_ 1766027214366703616