[1]
Stolyarov, O., Gorshkov, A. Primenenie vysokoprochnyh tekstil'nyh materialov v strotel'stve [Application of textile high-strength materials in constructions] (2009) Magazine of Civil Engineering, (4), pp.21-25. (rus).
Google Scholar
[2]
Horrocks, A.R., Anand, S.C. Handbook of Technical Textiles (2000) Woodhead Publishing Ltd, Cambridge, 576 p.
Google Scholar
[3]
Usmanov, R., Mrdak, I., Vatin, N., Murgul, V. Reinforced soil beds on weak soils (2014) Applied Mechanics and Materials, 633-634, pp.932-935.
DOI: 10.4028/www.scientific.net/amm.633-634.932
Google Scholar
[4]
Usmanov, R., Vatin, N., Murgul, V. Experimental research of a highly compacted soil beds (2014) Applied Mechanics and Materials, 633-634, pp.1082-1085.
DOI: 10.4028/www.scientific.net/amm.633-634.1082
Google Scholar
[5]
Usmanov, R., Vatin, N., Murgul, V. Highly compacted and reinforced soil beds as an efficient method to build artificial foundation based on weak soils (2014) Applied Mechanics and Materials, 680, pp.474-480.
DOI: 10.4028/www.scientific.net/amm.680.474
Google Scholar
[6]
Shchemelinin, L., Utin, A., Belyaev, N., Lebedev, V., Nudner, I., Semenov, K. Experimental Studies Regarding the Efficiency of Seabed Soil Protection near Offshore Structures (2014).
Google Scholar
[7]
Ustyan, N. Geokontejnery v dorozhnom i gidrotehnicheskom stroitel'stve [Geocontainers in road building and hydraulic engineering construction] (2011) Magazine of Civil Engineering, (4), pp.22-25. (rus).
DOI: 10.5862/mce.22.3
Google Scholar
[8]
Shherbina, E. Geosinteticheskie materialy v stroitel'stve [Geosynthetics in construction] (2004) Izdatel'stvo Associacija stroitel'nyh vuzov, 111 p. (rus).
Google Scholar
[9]
Rod'kin, A. Geosinteticheskie materialy dlja dorozhnogo stroitel'stva [Geosynthetics for road construction] (2000) Stroitel'nye materialy, 12, pp.24-28. (rus).
Google Scholar
[10]
Robert M. Koerner. Designing with Geosynthetics ˗ 6th Edition Volume 1 (2012) 524 p.
Google Scholar
[11]
Sanjay Kumar Shukla Handbook of Geosynthetic Engineering (2011) 2nd edition, 424 p.
Google Scholar
[12]
Skutin, A., Smerdov, M., Smerdov, D. Issledovanie naprjazhenno-deformirovannogo sostojanija zemljanogo polotna, usilennogo geosinteticheskimi materialami [Analysis of stress-strain benavior of subgrade, reinforced by geosynthetics materials] (2012).
Google Scholar
[13]
Krasheninin, E. Razvitie konstruktivno-tehnologicheskih reshenij dlja prodlenija sroka sluzhby asfal'tobetonnyh pokrytij, armirovannyh geosinteticheskimi materialami [Development of design and technological solutions for renewal of working life of asphalt coat reinforced with geosynthetics] (2009).
Google Scholar
[14]
Andrianova, M., Rodionov, M., Suhorukova, N., Shabanova, A. Zashhita pochvenno-rastitel'nogo pokrova rekreacionnyh ob'ektov. Novaja konstrukcija dorozhno-tropinochnoj seti s ispol'zovaniem geosintetikov [A new construction of a path network using geosynthetics to protect the topsoil and the vegetation of recreation areas] (2010).
Google Scholar
[15]
Mwasha, A. Using environmentally friendly geotextiles for soil reinforcement: A parametric study (2009) Materials and Design, 5 (30), pp.1798-1803.
DOI: 10.1016/j.matdes.2008.07.018
Google Scholar
[16]
Ovcharov, A., Zolotozubov, D., Opredelenija prochnostnyh harakteristik geosinteticheskih materialov [Determination of the mechanical strength characteristics of geosynthetics] (2011).
Google Scholar
[17]
Ovcharov, A., Zolotozubov, D., Ispytanija geosinteticheskih materialov po prochnosti na razryv dlja optimal'nogo proektirovanija armirovannyh osnovanij [The tensile tests of geosynthetic materials for optimum designing of the reinforced bases] (2012).
Google Scholar
[18]
GOST R 55028-2012. Dorogi avtomobil'nye obshhego pol'zovanija. Materialy geosinteticheskie dlja dorozhnogo stroitel'stva. Klassifikacija, terminy i opredelenija [Public roads and highways. Geosynthetics for road construction. Classification, terms and definitions] (2013).
Google Scholar
[19]
GOST R 55030-2012. Dorogi avtomobil'nye obshhego pol'zovanija. Materialy geosinteticheskie dlja dorozhnogo stroitel'stva. Metod opredelenija prochnosti pri rastjazhenii [Public roads and highways. Geosynthetics for road construction. Test method for tensile strength] (2013).
Google Scholar
[20]
GOST R 55031-2012. Dorogi avtomobil'nye obshhego pol'zovanija. Materialy geosinteticheskie dlja dorozhnogo stroitel'stva. Metod opredelenija ustojchivosti k ul'trafioletovomu izlucheniju [Public roads and highways. Geosynthetics for road construction. Test method for determination of stability to ultra-violet radiation] (2013).
Google Scholar
[21]
ODM 218. 2. 047-2014. Metodika ocenki dolgovechnosti geosinteticheskih materialov, ispol'zuemyh v dorozhnom stroitel'stve [Methodology for evaluate the durability of geosynthetics for road construction] (2014) 69 p. (rus).
Google Scholar
[22]
SNP 23-01-99. Stroitel'naja klimatologija [Building climatology] (2000). (rus).
Google Scholar
[23]
Harakteristika klimata Sankt-Peterburga [Characteristic of the climate of St. Petersburg] URL: http: /www. infoeco. ru/index. php?id=1091 (Date of request: 11. 10. 2014). (rus).
Google Scholar
[24]
EN 12225: 2000. Geotextiles and geotextile-related products – Method for determining the microbiological resistance by a soil burial test (2009).
DOI: 10.3403/00970544
Google Scholar