2019
DOI: 10.1049/joe.2018.5251
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Study on energy conservation and carbon emission reduction design of timber structure building

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Cited by 5 publications
(5 citation statements)
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“…He evaluated building energy consumption and CO 2 emissions with the concept of the whole life cycle. By comparing and analyzing brick-concrete structures with equivalent thermal performance, he obtained the comparative ecological advantages of wood-structured buildings [1]. Wang et al proposed that rare Earth standards can guide the development of the rare Earth industry, and the upgrading of the rare Earth industry can promote rare Earth standards.…”
Section: Related Workmentioning
confidence: 99%
See 1 more Smart Citation
“…He evaluated building energy consumption and CO 2 emissions with the concept of the whole life cycle. By comparing and analyzing brick-concrete structures with equivalent thermal performance, he obtained the comparative ecological advantages of wood-structured buildings [1]. Wang et al proposed that rare Earth standards can guide the development of the rare Earth industry, and the upgrading of the rare Earth industry can promote rare Earth standards.…”
Section: Related Workmentioning
confidence: 99%
“…is paper aims to explore and analyze the application of energy-saving and environmental protection materials in architectural design in order to find more energy-saving and environmental protection materials in architectural design and make a certain contribution to the cause of energy conservation and environmental protection in the society. e innovation of this paper is as follows: (1) this paper analyzes the building energy consumption and building energy conservation. Building energy conservation has become the general trend of global development; (2) based on a multiobjective genetic algorithm, this paper studies and discusses the optimal design of reinforcement selection of reinforced concrete beams.…”
Section: Introductionmentioning
confidence: 99%
“…Existing research aimed at comparatively assessing from a whole-life perspective the carbon (Hart and Pomponi, 2020;Salazar and Meil, 2009;Liu et al, 2016;Sandanayake et al, 2018;Yue et al, 2019) and energy (Gustavsson et al, 2006;Robertson et al, 2012;Tettey et al, 2019) footprints and/or other environmental impacts (Crawford and Cadorel, 2017;Lu et al, 2017;Pierobon et al, 2019) of mass timber buildings against the steel or reinforced concrete counterpart generally concur in favour of the former. If we exclude those works focusing at a product level boundary system -i.e.…”
Section: Steel and Concretementioning
confidence: 99%
“…China's construction industry is still dominated by traditional production methods, with a relatively low degree of industrialization, and there is still room for improvement in construction technology. It is a long way to go to realize low-carbon development in the production, transportation and on-site construction of building materials such as steel, cement and glass [3,4]. Second, affected by population and other factors, China has a large building stock and high carbon emissions.…”
Section: Introductionmentioning
confidence: 99%