Life cycle low-carbon management system improvement of the integrated development of buildings

Author:

Krutilova Maria1,Naumov A.1,Strokova Valeria1

Affiliation:

1. Belgorod State Technological University named after V.G. Shukhov

Abstract

The sustainable development of the country's construction industry in the context of limited availability of resources involves the implementation of eco-oriented principles for assessing all stages of the life cycle into the life cycle management of construction projects, as well as the search for new organizational and technological solutions in construction. This in turn implies a shift towards green, low-carbon building, as well as improved tools for quantifying, monitoring and managing the carbon footprint of buildings. The intensive growth of complex development and the increased attention to global climate change make the issues of reducing the carbon impact that occurs during construction and pre-construction stages an urgent and promising area of research. In accordance with the Strategy for the Socio-Economic Development of Russia with Low Greenhouse Gas Emissions until 2050, the regulation and reduction of carbon impact and, as a result, the transition to low-carbon construction depends, first of all, on the scientific study of the issue.The authors propose recommendations for improving the tools for assessing the carbon impact of construction projects at the pre-operational stages of their life cycle, which are applicable in the formation of an effective state order for the creation of construction products that meet modern conditions of environmental friendliness and carbon neutrality. This can be effective in creating an institution of extended responsibility for construction participants, including a mechanism for certification of low-carbon building products.

Publisher

RIOR Publishing Center

Subject

Industrial and Manufacturing Engineering,Polymers and Plastics,Business and International Management

Reference18 articles.

1. Norman, Jonathan & Maclean, Heather & Asce, M & Kennedy, Christopher. Comparing High and Low Residential Density: Life-Cycle Analysis of Energy Use and Greenhouse Gas Emissions, Journal of Urban Planning and Development 132 (1) (2006): 10-21. DOI: 10.1061/(ASCE)0733-9488(2006)132:1(10), Norman, Jonathan & Maclean, Heather & Asce, M & Kennedy, Christopher. Comparing High and Low Residential Density: Life-Cycle Analysis of Energy Use and Greenhouse Gas Emissions, Journal of Urban Planning and Development 132 (1) (2006): 10-21. DOI: 10.1061/(ASCE)0733-9488(2006)132:1(10)

2. Кокорин, А.О. Глобальный низкоуглеродный тренд развития как движущая сила реализации Парижского соглашения / А. О. Кокорин, В. Ю. Поташников // Экономическая политика. – 2018. – Т. 13, № 3. – С. 234-255. – DOI: 10.18288/1994-5124-2018-3-1, Kokorin A.O., Potashnikov V.Y. Global low-carbon development trend as a driving force for the implementation of the Paris Agreement / A.O. Kokorin, V.Y. Potashnikov // Economic Policy. - 2018. - T. 13, № 3. - P. 234-255. - DOI: 10.18288/1994-5124-2018-3-1

3. Авилова, И.П. Инструменты оценки эколого-экономической эффективности проектных решений в жилищно-гражданском строительстве / И. П. Авилова, М. О. Крутилова, В. В. Науменко // Строительство: наука и образование. – 2019. – Т. 9, № 4. – С. 1-17. – DOI 10.22227/2305-5502.2019.4.8, Avilova I.P. Tools for assessing the environmental and economic efficiency of design solutions in housing and civil construction / I. P. Avilova, M. O. Krutilova, V. V. Naumenko // Building: Science and Education. - 2019. - T. 9, № 4. - P. 1-17. - DOI 10.22227/2305-5502.2019.4.8

4. Peng, C. Calculation of a building's life cycle carbon emissions based on Ecotect and building information modeling // Journal of Cleaner Production. 2015. DOI: 10.1016/j.jclepro.2015.08.078, Peng, C. Calculation of a building's life cycle carbon emissions based on Ecotect and building information modeling // Journal of Cleaner Production. 2015. DOI: 10.1016/j.jclepro.2015.08.078

5. Adaptation techniques of an urban planning due to climate change / N. Bakaeva, M. Suvorova, R. A. Sheps, A. Kormina // E3S Web of Conferences: 24, Moscow, 22–24 апреля 2021 года. Moscow, 2021. P. 05013. DOI: 10.1051/e3sconf/202126305013, Adaptation techniques of an urban planning due to climate change / N. Bakaeva, M. Suvorova, R. A. Sheps, A. Kormina // E3S Web of Conferences: 24, Moscow, April 22-24, 2021. Moscow, 2021. P. 05013. DOI: 10.1051/e3sconf/202126305013

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