Designing and implementation of marine operation for the installation of the Crimean bridge spans

Authors: A.S. Bolshev,  I.L. Blagovidova, A.V. Pyanov 
 

Abstract

This article discusses the stages of designing and implementation of marine operations connected with the installation of the bridge spans of the Crimean bridge, describing the mathematical modeling methodology using the software "Anchored Structures" and presenting the examples of previously executed projects with the help of this software. The stages of the marine operation to install the bridge spans for the Crimean bridge have been listed and the extreme environmental conditions, under which it is necessary to ensure the safety of marine operations, have been described. The article further lists the limiting conditions that were taken into account at the design stage and describes the arrangement ofthe positioning systems developed to perform various stages ofthe operation, presenting the parameters ofthe positioning systems elements, obtained by mathematical modeling of the designed marine operations. The realization of marine operations for the installation of the Crimean bridge spans has been described and, finally the conclusion about the concurrence of the estimated parameters with the data obtained during field observations of the execution of marine operations has been presented.


Keywords: mathematical modeling, design, marine operations, positioning system, the span of the bridge, Crimean bridge


References:

1. Bolshev A.S., Frolov S.A., Kuteynikov M.A. Matematicheskoe modelirovanie povedeniya morskih plavuchih ob'ektov v programmnom komplekse "Anchored Structures" [Mathematical modeling of floating facilities behaviour by means of the software package "Anchored Structures"]. Nauchno-tekhnicheskij sbornik Rossijskogo morskogo registra sudohodstva [Research Bulletin by Russian Maritime Register of shipping]. 2013, № 36, pp. 68-90.

2. Garrison C.J., and Chow P.Y. Wave forces on submerged bodies, Journal of the Waterways, Harbors and Coastal Engineering Division, vol. 98, No. WW3, pp. 375-392, American Society of Civil Engineers, New York, USA.

3. Frolov S.A. Statika i dinamika plavuchih sooruzhenij, zakreplennyh gibkimi uprugimi svyazyami. Diss. kand. tekh. nauk [Statics and dynamics of floating structures fixed by flexible elastic lines. Cand. of tech. Sci. diss.]. St. Petersburg, SPbGTU, 1992, 16 p.

4. Merkin D.R. Vvedenie v dinamiku gibkoj niti [Introduction to the dynamics of flexible thread]. Moscow, Nauka Publ., 1980. 240 p. (In Russian).

5. Baranov I.L. et al. Matematicheskoe modelirovanie dinamiki podieema i transportirovki APK Kursk [Mathematical modeling of the lifting and transporting the dynamics of the submarine "Kursk"]. Nauchno-tekhnicheskie vedomosti SPbGPU [St. Petersburg State Polytechnical University Journal]. 2002. №1, pp. 107-119.

6. Toropov E.E. et al. Matematicheskoe modelirovanie processa nakatki verhnego stroeniya na opornoe osnovanie morskoj platformy Prirazlomnogo neftyanogo mestorozhdeniya [Mathematical modeling of the rolling process of the upper structure on the base of the sea platform Prirazlomnoye oil field]. Gidrotekhnicheskoe stroitelstvo [Power Technology and Engineering]. 2007, №5, pp. 70-75.

7. Blagovidova I.L. et al. Matematicheskoe modelirovanie i programmnoe issledovanie raboty sistemy "Morskoi otgruzochnyi prichal - Tanker -Buksir" [Mathematical modeling and software research of the system "Sea shipping pier - Tanker - Tug"]. Trudy konferentsii "Osvoenie arkticheskogo shelfa Rossii" [Conf. Development of Russian Arctic Offshore].2007.

8. Klimovich V.I. et al. Issledovanie i dorabotka plavuchego zatvora sudopropusknogo sooruzheniia S-1 Kompleksa zashchity Sankt-Peterburga ot navodnenii [Study and revision of floating gate of ship-crossing construction C-1 Complex of protection of St. Petersburg from floods]. Izvestiia VNIIG im. B. E. Vedeneeva. 2012, vol. 266, pp. 109-131.

10. Bolshev A.S. et al. Sistema miagkoi posadki plavuchego zatvora sudopropusknogo sooruzheniia S-1 kompleksa zashchitnykh sooruzhenii Sankt-Peterburga ot navodnenii [Soft landing system offloating shutter ofship-crossing construction C-1 complex ofprotective structures of St. Petersburg from floods]. Inzhenerno-stroitelnyi zhurnal [Magazine of Civil Engineering]. 2012, №9, pp. 103-112.

11. Pravila razrabotki i provedeniia morskikh operatsii [Rules for Planning and Execution of Marine Operations]. St. Petersburg, RMRS, 2014, 144 p.

12. Pravila klassifikatsii postroiki i oborudovaniia plavuchikh burovykh ustanovok i morskikh statsionarnykh platform [Rules for Classification, Construction and Equipment of Mobile Offshore Drilling Units and Fixed Offshore Platforms]. St. Petersburg, RMRS. 2014, 483 p.


About authors

A.S. Bolshev - DSc, professor, Peter the Great St. Petersburg Polytechnic University, St. Petersburg, e-mail: bolshev_as@spbstu.ru

I.L. Blagovidova - JSC Central Design Bureau "Corall", Sevastopol, e-mail: blagovidova@yandex.ru 

A.V. Pyanov - JSC Central Design Bureau "Corall", Sevastopol, e-mail: office@cdbcorall.com



For citation: A.S. Bolshev,  I.L. Blagovidova, A.V. Pyanov. Designing and implementation of marine operation for the installation of the Crimean bridge spans. Research Bulletin by Russian Maritime Register of Shipping. 2018, No. 52/53, pp. 6-22 .



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UDC:  629.5, 624.21/8, 624.9
Pages:  6-22