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Record #126914:

A geometrical model for pressure aspect-ratio aspects in ice--structure interaction / Paul A. Spencer, D.M. Masterson.

Title: A geometrical model for pressure aspect-ratio aspects in ice--structure interaction / Paul A. Spencer, D.M. Masterson.
Author(s): Spencer, Paul A.
Masterson, D. M.
Date: 1993.
Publisher: New York: American Society of Mechanical Engineers
In: OMAE 1993. Proceedings of the 12th International Conference on Offshore Mechanics and Arctic Engineering. Volume IV. Arctic/Polar technology. (1993.),
Abstract: Model has been developed for compressive ice failure where full thickness of ice sheet is enveloped. Based on existence of line-like high pressure zones during brittle mode compressive failure process. Theory was in agreement with full-scale and laboratory-scale data. Adjusting laboratory-scale data to large aspect ratio revealed that pressure may be function of ice thickness. Suggests equation to correct indentation pressure data to standard conditions.
Notes:

In: OMAE 1993. Proceedings of the 12th International Conference on Offshore Mechanics and Arctic Engineering. Volume IV. Arctic/Polar technology / Wilfrid A. Nixon, Devinder S. Sodhi, Nirmal K. Sinha, Olufemi A. Ayorinde, eds.

Keywords: 624.145 -- Floating ice, engineering aspects.
624.145.1 -- Floating ice, thrust.
551.326 -- Floating ice.
539.42 -- Ice, tensile strength.
E12 -- Glaciology: frozen ground / snow and ice engineering.
SPRI record no.: 126914

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245 12 ‡aA geometrical model for pressure aspect-ratio aspects in ice--structure interaction /‡cPaul A. Spencer, D.M. Masterson.
260 ## ‡aNew York :‡bAmerican Society of Mechanical Engineers,‡c1993.
300 ## ‡ap. 113-117 :‡bdiags., tables.
500 ## ‡aIn: OMAE 1993. Proceedings of the 12th International Conference on Offshore Mechanics and Arctic Engineering. Volume IV. Arctic/Polar technology / Wilfrid A. Nixon, Devinder S. Sodhi, Nirmal K. Sinha, Olufemi A. Ayorinde, eds.
520 3# ‡aModel has been developed for compressive ice failure where full thickness of ice sheet is enveloped. Based on existence of line-like high pressure zones during brittle mode compressive failure process. Theory was in agreement with full-scale and laboratory-scale data. Adjusting laboratory-scale data to large aspect ratio revealed that pressure may be function of ice thickness. Suggests equation to correct indentation pressure data to standard conditions.
650 07 ‡a624.145 -- Floating ice, engineering aspects.‡2udc
650 07 ‡a624.145.1 -- Floating ice, thrust.‡2udc
650 07 ‡a551.326 -- Floating ice.‡2udc
650 07 ‡a539.42 -- Ice, tensile strength.‡2udc
650 07 ‡aE12 -- Glaciology: frozen ground / snow and ice engineering.‡2local
700 1# ‡aMasterson, D. M.
773 0# ‡7nnam ‡aWilfrid A. Nixon, Devinder S. Sodhi, Nirmal K. Sinha, Olufemi A. Ayorinde, eds. ‡tOMAE 1993. Proceedings of the 12th International Conference on Offshore Mechanics and Arctic Engineering. Volume IV. Arctic/Polar technology. ‡dNew York : American Society of Mechanical Engineers, 1993. ‡wSPRI-126899
917 ## ‡aUnenhanced record from Muscat, imported 2019
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