Efficiency of applying sustainable technology of bubbledeck technology in concrete in Russia

Автор: Reich Elizaveta, Lima Matehus, Strelets Kseniya

Журнал: Строительство уникальных зданий и сооружений @unistroy

Статья в выпуске: 11 (62), 2017 года.

Бесплатный доступ

The idea of optimization concrete use, reducing its amount and applying new technologies, is not novel one. During the last three decades there were several studies and projects, in which concepts of slab with voids were used. Bubbledeck technology consists of hollow slabs and plastic balls in it, which serves for reducing of concrete volume. In this article Bubbledeck is estimated for Russian construction market. Possibility and efficiency of appliance this technology is assessed. Construction methods, sustainability and properties are considered. Inputs of bubble’s construction, concrete and technology are compared with the costs of using conventional concrete. Basing on these data suggestions for effective technology implementation and appliance are given.

Еще

Bubbledeck technology, cost estimation, hollow slabs, sustainability, construction method, appliance efficiency

Короткий адрес: https://sciup.org/143163570

IDR: 143163570   |   DOI: 10.18720/CUBS.62.7

Список литературы Efficiency of applying sustainable technology of bubbledeck technology in concrete in Russia

  • Churakov A. Biaxial hollow slab with innovative types of voids//Construction of Unique buildings and Structures. 2014. No 6(21). Pp. 70-88.
  • Chung J.H., Choi H.K., Lee S.C. Shear capacity of biaxial hollow slab with donut type hollow sphere//Procedia Engineering. 2011. No 14. Pp. 2219-2222.
  • Nasvik J. On the bubble: Placing concrete around plastic voids increases efficiency and reduces costs//Concrete Construction -World of Concrete. 2011. No 56(12). Pp. 20-22.
  • Aguado J.V., Espinos A. Influence of reinforcement arrangement in flexural fire behavior of hollow core slabs//Fire Safety Journal. 2012. No 53. Pp. 72-84.
  • Mahmood M.R.K., Dawood W.B. Comparative structural analysis of biaxial voided slabs and solid slabs//Journal of Babylon University Engineering Sciences. 2017. No 1(25). Pp. 236-250.
  • Meneiliuk O., Shavva K., Taran V. Erection of lightweight solid slabs at the construction site//Modern Industrial and Civil Construction. 2013. No 9(4). Pp. 221-229.
  • Yen K., Shambina S.L. Tekhnologiya pustotnykh betonnykh plit s plastikovym zapolnitelem dlya izgotovleniya legkobetonnykh plit //Nauchnomu progressu-tvorchestvo molodykh. 2016. No 4(4). Pp. 182-185. (rus)
  • Sang-Su H., Jun-Seon Y., Kyoung-Hwan Y. Consideration of field application possibility and structural capacity of hollow core slab using GFRP bars//Pacific Science Review A: Natural Science and Engineering. 2013. No 15(1). Pp. 30-36.
  • Al Karadi A. Proizvodstvo, effektivnost i primeneniye mnogopustotnykh plit v stroitelstve //Tekhnologii betonov. 2014. No 5(94). Pp. 32-36. (rus)
  • Goncharova M.A., Ivashkin A.N., Kosta A.A. Podbor i optimizatsiya sostavov betona dlya proizvodstva mnogopustotnykh plit perekrytiya bezopalubochnogo formovaniya //Stroitelnyye materialy. 2017. No 3. Pp. 35-38. (rus)
  • Vorontsov S.V., Maidanova N.V., Syroezhko A.M., Ivanov S.N. Vybor polimerno-bitumnykh svyazuyushchikh dlya proyektirovaniya asfaltirovannykh dorog //Russian Journal of Applied Chemistry. 2012. No 85(2). Pp. 309-316. (rus)
  • Merta I., Kravanja S. Cost optimum design of reinforced concrete simply supported one-way slabs//Proceedings of the 12th International Conference. Honolulu, 2010. Pp. 2670-2678.
  • McLellan B.C., Lay J., Corder G.D., Williams R.P., van Riessen A. Costs and carbon emissions for geopolymer pastes in comparison to ordinary portland cement//Journal of Cleaner Production. 2011. No 19(9/10). Pp. 1080-1090.
  • Bolotova K., Lukichev S., Murgul V. Features Technologies Calculation of Constructions with Concrete-Filled Steel Tubes//5th International Scientific Conference Integration, Partnership and Innovation in Construction Science and Education. IPICSE, 2016. P. 2018.
  • Kostic R., Pukhkal V., Vatin N., Murgul V. Application of Styrofoam in the Elements of Building Constructions//Applied Mechanics and Materials. 2015. No 725/726. Pp. 396-402.
  • Romanovich M., Musorina T.A., Starshinova E.D., Sushkov N.N. Normative bases of labor costs influence on construction duration and crew forming//Construction of Unique Buildings and Structures. 2017. No 7(58). Pp. 74-95.
  • Kuznetsov S., Sirotkin N., Kuznetsova K., Chulkova I. Optimization of organizational and technological solutions in the construction of buildings and structures//Industrial and Civil Engineering. 2009. Pp. 57-60.
  • Ptukhina I.S., Vyatkin M.E., Musorina T.A. Aspekty stoimostnogo inzhiniringa, ikh rol i vliyaniye na realizatsiyu investitsionnogo proyekta //Construction of Unique Buildings and Structures. 2013. No 9(14). Pp. 46-56. (rus)
Еще
Статья научная