Fracture mechanics of ice and some its applications
Sibirskij žurnal čistoj i prikladnoj matematiki, Tome 12 (2012) no. 4, pp. 41-47 Cet article a éte moissonné depuis la source Math-Net.Ru

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A model office fracture under compression on a large contact area is suggested. The model is based on fracture mechanics approaches. It is assumed that a quasiregular structure of ice fracture within the contact region exists. A local fracture source can move along the contact surface (can scan it) in a regime similar to crack propagation (crack of compression). Features of the motion regime are determined by the conditions of the fracture source displacement and conditions of carrying out the fracture products from the contact zone.
Mots-clés : fracture, compression
Keywords: crack, ice, contact area, toughness.
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R. V. Goldstein; N. M. Osipenko. Fracture mechanics of ice and some its applications. Sibirskij žurnal čistoj i prikladnoj matematiki, Tome 12 (2012) no. 4, pp. 41-47. http://geodesic.mathdoc.fr/item/VNGU_2012_12_4_a4/

[1] Cherepanov G. P., Mekhanika khrupkogo razrusheniya, Nauka, M., 1974 | Zbl

[2] Kujala P., Goldstein R. V., Osipenko N. M., A Ship in Compressive Ice — Analysis of the Ice Failure Process, Report M-165 by the Laboratory of Naval Architecture and Marine Engineering, Helsinki University of Technology, Espoo, 1990

[3] Goldstein R. V., Osipenko N. M., Tuhkuri J., Modeling of Edge Cracking and Flaking of Brittle Plates and Wedges, Report M-216, Helsinki University of Technology, Otaniemi, 1997

[4] Goldshtein R. V., Osipenko N. M., “O modeli razrusheniya lda pri bolshoi ploschadi kontakta”, Izv. RAN. Mekhanika tverdogo tela, 2011, no. 1, 137–153

[5] Neftyanaya i gazovaya promyshlennost — morskie arkticheskie sooruzheniya, ISO 19906, 2007

[6] Barerete P. et al., Laboratory-Scale Indentation of Ice, Report 4-81, Memorial University of Newfoundland, 2003

[7] Sinha N. K., “Kinetics of Microcracking and Dilation in Polycrystalline Ice”, In Ice-Structure Interaction, IUTAM/IAHR Symposium (St. John's, Canada, 1989), Springer-Verlag, 1991, 69–97 | DOI

[8] Jordan I. J., “Mechanics of Ice-Structure Interaction”, Eng. Fracture Mechanics, 68 (2001), 1923–1960 | DOI

[9] Daley C., Riska K., “Conceptual Framework for an Ice Load Model”, PERD, National Energy Board (Calgary, 1995)

[10] Yue Q., Bi X., Zhang X., Karna T., “Dynamic Ice Forces Caused by Crushing Failure”, Proc. 16 IAHR Int. Symp. on Ice (Dunedin, New Zealand, 2002), 134–141

[11] Daley C., Tuhkuri J., Riska K., “The Role of Discrete Failures in Local Ice Loads”, Cold Regions Science and Technology, 27:3 (1998), 197–211 | DOI | MR

[12] Daley C. G., Ice Edge Contact — a Brittle Failure Process Model, Acta Polytechnica Scandinavica. Mechanical Engineering Series, 100, Helsinki, 1991

[13] Daley C., Ice Edge Contact — An Iterative Failure Process Model, Report from Finnish-Canadian Joint Research. Project No 5 “Ship Interaction With Actual Ice Conditions”, Helsinki University of Technology, Otaniemi M-103, 1990

[14] Goldshtein R. V., Osipenko N. M., “O modeli razrusheniya strukturirovannoi sredy v usloviyakh szhatiya”, Izv. RAN. Mekhanika tverdogo tela, 2010, no. 6, 7–21

[15] Gnoevoi A. V., Klimov D. M., Chesnokov V. M., Osnovy teorii techenii bingamovskikh sred, Fizmatlit, M., 2004