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Record #112393:

Numerical simulation of ice forces on fixed structures / G. Horrigmoe, O. Danielsen.

Title: Numerical simulation of ice forces on fixed structures / G. Horrigmoe, O. Danielsen.
Author(s): Horrigmoe, G.
Danielsen, O.
Date: 1991.
Publisher: St. John's, Newfoundland: Memorial University of Newfoundland, Ocean Engineering Research Centre
In: POAC'91 : the 11th International Conference on Port and Ocean Engineering under Arctic Conditions, September 24-28, 1991, St. John's, Canada. (1991.), Vol.1.
Abstract: Focuses attention on time-dependent deformations of polycrystalline ice. Sufficient practical interest to develop constitutive models that can accurately predict creep behaviour of ice. In present investigation, two material models for creep behaviour of ice are investigated. Mathematical models are implemented into general-purpose, nonlinear finite element program. Capabilities of present method are demonstrated by numerical examples of creep buckling of ice sheets interacting with fixed structures.
Notes:

In: POAC'91 : the 11th International Conference on Port and Ocean Engineering under Arctic Conditions, September 24-28, 1991, St. John's, Canada. Vol.1. / D.B. Muggeridge, D.B. Colbourne, H.M. Muggeridge, eds.

Keywords: 624.145 -- Floating ice, engineering aspects.
624.145.1 -- Floating ice, thrust.
622.24 -- Drilling and boring.
551.326 -- Floating ice.
539.37 -- Ice, plastic and viscous deformation.
519.673 -- Modelling.
E12 -- Glaciology: frozen ground / snow and ice engineering.
SPRI record no.: 112393

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245 10 ‡aNumerical simulation of ice forces on fixed structures /‡cG. Horrigmoe, O. Danielsen.
260 ## ‡aSt. John's, Newfoundland :‡bMemorial University of Newfoundland, Ocean Engineering Research Centre,‡c1991.
300 ## ‡ap. 96-108 :‡bdiags.
500 ## ‡aIn: POAC'91 : the 11th International Conference on Port and Ocean Engineering under Arctic Conditions, September 24-28, 1991, St. John's, Canada. Vol.1. / D.B. Muggeridge, D.B. Colbourne, H.M. Muggeridge, eds.
520 3# ‡aFocuses attention on time-dependent deformations of polycrystalline ice. Sufficient practical interest to develop constitutive models that can accurately predict creep behaviour of ice. In present investigation, two material models for creep behaviour of ice are investigated. Mathematical models are implemented into general-purpose, nonlinear finite element program. Capabilities of present method are demonstrated by numerical examples of creep buckling of ice sheets interacting with fixed structures.
650 07 ‡a624.145 -- Floating ice, engineering aspects.‡2udc
650 07 ‡a624.145.1 -- Floating ice, thrust.‡2udc
650 07 ‡a622.24 -- Drilling and boring.‡2udc
650 07 ‡a551.326 -- Floating ice.‡2udc
650 07 ‡a539.37 -- Ice, plastic and viscous deformation.‡2udc
650 07 ‡a519.673 -- Modelling.‡2udc
650 07 ‡aE12 -- Glaciology: frozen ground / snow and ice engineering.‡2local
700 1# ‡aDanielsen, O.
773 0# ‡7nnam ‡aD.B. Muggeridge, D.B. Colbourne, H.M. Muggeridge, eds. ‡tPOAC'91 : the 11th International Conference on Port and Ocean Engineering under Arctic Conditions, September 24-28, 1991, St. John's, Canada. ‡dSt. John's, Newfoundland : Memorial University of Newfoundland, Ocean Engineering Research Centre, 1991. ‡gVol.1. ‡wSPRI-112387
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