Methods of Ice Reinforcement For Creation of Ice and Ice-Soil Composites
Sibirskij žurnal čistoj i prikladnoj matematiki, Tome 13 (2013) no. 3, pp. 31-37 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Method of physical and mechanical ice properties regulation are addressed for creation ice and ice-soil composites. The review of the methods is presented. It is shown that now new effective methods of reinforcement and creation of ice and ice-soil composites are devised, which could be successfully used for building retaining low permeable structures of soil dams to replace conventional materials in cold regions.
Keywords: methods of reinforcement, cold regions.
Mots-clés : ice and ice-soil composites
@article{VNGU_2013_13_3_a2,
     author = {N. K. Vasiliev and A. A. Ivanov and I. N. Shatalina},
     title = {Methods of {Ice} {Reinforcement} {For} {Creation} of {Ice} and {Ice-Soil} {Composites}},
     journal = {Sibirskij \v{z}urnal \v{c}istoj i prikladnoj matematiki},
     pages = {31--37},
     year = {2013},
     volume = {13},
     number = {3},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VNGU_2013_13_3_a2/}
}
TY  - JOUR
AU  - N. K. Vasiliev
AU  - A. A. Ivanov
AU  - I. N. Shatalina
TI  - Methods of Ice Reinforcement For Creation of Ice and Ice-Soil Composites
JO  - Sibirskij žurnal čistoj i prikladnoj matematiki
PY  - 2013
SP  - 31
EP  - 37
VL  - 13
IS  - 3
UR  - http://geodesic.mathdoc.fr/item/VNGU_2013_13_3_a2/
LA  - ru
ID  - VNGU_2013_13_3_a2
ER  - 
%0 Journal Article
%A N. K. Vasiliev
%A A. A. Ivanov
%A I. N. Shatalina
%T Methods of Ice Reinforcement For Creation of Ice and Ice-Soil Composites
%J Sibirskij žurnal čistoj i prikladnoj matematiki
%D 2013
%P 31-37
%V 13
%N 3
%U http://geodesic.mathdoc.fr/item/VNGU_2013_13_3_a2/
%G ru
%F VNGU_2013_13_3_a2
N. K. Vasiliev; A. A. Ivanov; I. N. Shatalina. Methods of Ice Reinforcement For Creation of Ice and Ice-Soil Composites. Sibirskij žurnal čistoj i prikladnoj matematiki, Tome 13 (2013) no. 3, pp. 31-37. http://geodesic.mathdoc.fr/item/VNGU_2013_13_3_a2/

[1] L. Makkonen (ed.), Ice and Construction, RILEM Technical Committee TC-118, 1994

[2] Vasilev N. K., “Ldokompozity, ikh svoistva i tekhnologiya polucheniya”, Izv. VNIIG im. B. E. Vedeneeva, 228 (1994), 28–36

[3] Metodicheskie rekomendatsii po teploizolyatsii smerzayuschikhsya gruntov i drugikh dorozhno-stroitelnykh materialov penoplastom i penoldom, SoyuzdorNII, M., 1986

[4] Smorygin G. I., Teoriya i metody polucheniya iskusstvennogo lda, Nauka, Novosibirsk, 1988

[5] Altunina L. K., Manzhai V. N., Fufaeva M. S., “Mekhanicheskie i teplofizicheskie svoistva kriogelei i penokriogelei, poluchennykh iz vodnykh rastvorov polivinilovogo spirta”, Zhurnal prikladnoi khimii, 79:10 (2007), 1689–1692

[6] Kobl R. L., Kingeri U. D., “Iskustvennoe uprochnenie (armirovanie) lda”, Led i sneg, Mir, M., 1966, 94–116

[7] Vasilev N. K., “Issledovaniya po uprochneniyu lda vodorastvorimymi vysokomolekulyarnymi soedineniyami”, Izv. VNIIG im. B. E. Vedeneeva, 205 (1986), 45–48

[8] Lozinskii V. I., “Kriogeli na osnove prirodnykh i sinteticheskikh polimerov: poluchenie, svoistva i oblasti primeneniya”, Uspekhi khimii, 71 (2002), 559–585

[9] Bezruk V. M., Ukreplenie gruntov v dorozhnom i aerodromnom stroitelstve, Transport, M., 1971

[10] Eliseev A. V., Cheverev V. G., “Metod zaschity dispersnykh gruntov ot erozii”, Kriosfera Zemli, 12:3 (2008), 36–40

[11] Vasiliev N. K., Ivanov A. A., Sokurov V. V., Shatalina I. N., Vasilyev K. N., “Strength Properties of Ice-Soil Composites Created by Method of Cryotropic Gel Formation”, Cold Reg. Sci. Technol., 70 (2013), 94–97 | DOI

[12] Vasilev N. K., Shatalina I. N., Razgovorova E. L., Portnyagin L. G., Sidorov M. P., Sposob vozvedeniya gruntovoi plotiny merzlogo tipa, AS No 1600406, 1990

[13] Altunina L. K., Kuvshinov V. A., Staseva L. A., Dolgikh S. N., Melnik G. A., Sposob izgotovleniya vodonepronitsaemogo ekrana v nizkotemperaturnykh gruntovykh materialakh elementov gidrotekhnicheskogo sooruzheniya, Patent RF No 2276703, 2006

[14] Vasilev N. K., Sokurov V. V., Ivanov A. A., Shatalina I. N., Razgovorova E. L., Sposob izgotovleniya vodonepronitsaemogo ekrana v gruntovykh materialakh elementov gidrotekhnicheskogo sooruzheniya, Patent RF No 2342484, 2008

[15] Altunina L. K., Kuvshinov V. A., Dolgikh S. N., “Kriogeli dlya tamponazhnykh rabot v raionakh rasprostraneniya mnogoletnemerzlykh porod”, Gidrotekhnika, 2010, no. 3, 52–57

[16] DeGoes L., Neal J. T., “Selected Military Geology Programs in the Arctic, 1950–1970”, Reviews in Engineering Geology. Geological Society of America, 13 (1998), 205–211 | DOI

[17] Dunaev E. S., “Morskoi led kak konstruktsionnyi material”, Tr. DVPI, 46:11 (1957), 1–26

[18] Kagan G. L., Peschanskii I. S., Shvaishtein Z. I., “Issledovanie prochnostnykh svoistv novogo ldovoloknistogo materiala”, Tr. koord. soveschanii po gidrotekhnike VNIIG im. B. E. Vedeneeva, 23, 1965, 23–33

[19] Glockner P., “Reinforced Ice and Ice Domes: Opportunities for the North”, Int. J. Space Struct., 3:2 (1988), 84–102

[20] Vasiliev N. K., Gladkov M. G., “Ice composites: Mechanical Properties and Methods of Creation”, Proc. of the $17^\text{th}$ International Conference on Port and Ocean Engeneering under Arctic Conditions (POAC'03) (Trondheim, Norway, 2003), v. 1, 119–127

[21] Vasilev N. K., “Dispersno-armirovannye ldokompozity”, Transportnoe stroitelstvo, 1988, no. 9, 21–23

[22] Mangat S., Gurusamy K., “Flexural Strength of Steel Fibre-Reinforced Cement Composites”, J. of Material Sci., 22 (1987), 3103–3110 | DOI

[23] Cederwall K., “Behaviour of a Reinforced Ice Cover with Regard to Creep”, Proc. of International Conference on Port and Ocean Engineering under Arctic Conditions (POAC) (Quebec. Canada, 1981), v. 1, 562–570

[24] Nixon W. A., Smith R. A., “The Fracture Toughness of Some Wood-Ice Composites”, Cold Reg. Sci. Technol., 14 (1987), 139–145 | DOI

[25] Simakov V. P., “Teploprovodnost lda, armirovannogo drevesnymi opilkami”, Lesnaya promyshlennost, 1990, no. 10, 24–25

[26] Guang-Xin Li, Yun-Min Chen, Xiao-Wu Tang, Geosynthetics in Civil and Environmental Engineering, Springer, 2008 | Zbl

[27] Qi J. L. et al., “A Review of the Influence of Freze-Thaw Cycles on Soil Geotechnical Properties”, Permafrost and Periglac. Proc., 17 (2006), 245–252 | DOI

[28] Bychkovskii N. N., Guryanov Yu. A., Ledovye stroitelnye ploschadki, dorogi i perepravy, ed. N. N. Bychkovskii, Sarat. gos. tekhn. un-t, Saratov, 2005

[29] Fransson L., Elfgren L., “Field Investigation of Load-Curvature Characteristics of Reinforced Ice”, Proc. of POLARTECH 86 Conference (VTT, Helsinki, 1986), v. 1, 175–196

[30] Sirotyuk V. V., Yakimenko O. V., Zakharenko A. A., “Ispolzovanie geosinteticheskikh materialov dlya armirovaniya zimnikov i ledyanykh pereprav”, Avtomobilnye dorogi, 2009, no. 11 (936), 64–67

[31] Haynes F. D., Collins C. M., Olson W. W., Bearing Capacity of Ice Reinforced with Geogrid, Special report 92-28, US Army Corps of Engineers, Philadelphia, 1992

[32] Bobkov V. A., Proizvodstvo i primenenie lda, Pischevaya promyshlennost, M., 1972