Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle

As people put forward higher demand for the effect and quality of building interior decoration, the attention to building energy-saving materials has become higher and higher. In recent years, there have been many researches on green building energy-saving technology, green building evaluation and o...

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Main Author: Zhiqiang Wu
Format: Article
Language:English
Published: Taylor & Francis Group 2023-12-01
Series:Journal of Experimental Nanoscience
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/17458080.2023.2170358
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author Zhiqiang Wu
author_facet Zhiqiang Wu
author_sort Zhiqiang Wu
collection DOAJ
description As people put forward higher demand for the effect and quality of building interior decoration, the attention to building energy-saving materials has become higher and higher. In recent years, there have been many researches on green building energy-saving technology, green building evaluation and other aspects, but there are relatively few researches on applying the concept of full life cycle cost to the performance analysis of new materials for building energy conservation and environmental protection. Considering the economic performance of buildings will help to save resources in the construction industry and reduce energy consumption. The so-called full life cycle optimization of energy-saving design of green buildings is to take the concept of full life cycle optimization as the most reference, fully coordinate all elements in the portfolio project, and ensure that the full life cycle cost of the building can be greatly reduced. To realize the energy-saving optimization of green buildings, it is necessary to ensure that it runs through the whole life cycle of the building, fully combine the life cycle cost with the building function, and systematically do the optimization work. The performance analysis model of building decoration energy-saving and environmental protection new materials based on the whole life cycle proposed in this paper can be used to analyse the various properties of various new materials. The experimental results show that the maximum error of the test results is 9.6%, the minimum error is 1.3%, and the average error is only 6.43%. This shows that the model built in this paper is reliable, and the calculated results are in good agreement with the experimental results, which can be used to analyse the performance of new building decoration energy-saving and environmental protection materials. The ideas and methods of solving the model established in this paper have important guiding significance, and can be used as a powerful reference tool for studying other solving methods.
format Article
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institution Kabale University
issn 1745-8080
1745-8099
language English
publishDate 2023-12-01
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record_format Article
series Journal of Experimental Nanoscience
spelling doaj-art-913c8343977248efbc989e5c55f4b42e2024-11-25T10:28:58ZengTaylor & Francis GroupJournal of Experimental Nanoscience1745-80801745-80992023-12-0118110.1080/17458080.2023.2170358Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycleZhiqiang Wu0MianYang Polytechnic, Mianyang, Sichuan, ChinaAs people put forward higher demand for the effect and quality of building interior decoration, the attention to building energy-saving materials has become higher and higher. In recent years, there have been many researches on green building energy-saving technology, green building evaluation and other aspects, but there are relatively few researches on applying the concept of full life cycle cost to the performance analysis of new materials for building energy conservation and environmental protection. Considering the economic performance of buildings will help to save resources in the construction industry and reduce energy consumption. The so-called full life cycle optimization of energy-saving design of green buildings is to take the concept of full life cycle optimization as the most reference, fully coordinate all elements in the portfolio project, and ensure that the full life cycle cost of the building can be greatly reduced. To realize the energy-saving optimization of green buildings, it is necessary to ensure that it runs through the whole life cycle of the building, fully combine the life cycle cost with the building function, and systematically do the optimization work. The performance analysis model of building decoration energy-saving and environmental protection new materials based on the whole life cycle proposed in this paper can be used to analyse the various properties of various new materials. The experimental results show that the maximum error of the test results is 9.6%, the minimum error is 1.3%, and the average error is only 6.43%. This shows that the model built in this paper is reliable, and the calculated results are in good agreement with the experimental results, which can be used to analyse the performance of new building decoration energy-saving and environmental protection materials. The ideas and methods of solving the model established in this paper have important guiding significance, and can be used as a powerful reference tool for studying other solving methods.https://www.tandfonline.com/doi/10.1080/17458080.2023.2170358Full life cyclearchitectural ornamentnew energy saving materialsperformance
spellingShingle Zhiqiang Wu
Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle
Journal of Experimental Nanoscience
Full life cycle
architectural ornament
new energy saving materials
performance
title Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle
title_full Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle
title_fullStr Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle
title_full_unstemmed Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle
title_short Performance analysis of new energy-saving and environment-friendly materials for building decoration based on the whole life cycle
title_sort performance analysis of new energy saving and environment friendly materials for building decoration based on the whole life cycle
topic Full life cycle
architectural ornament
new energy saving materials
performance
url https://www.tandfonline.com/doi/10.1080/17458080.2023.2170358
work_keys_str_mv AT zhiqiangwu performanceanalysisofnewenergysavingandenvironmentfriendlymaterialsforbuildingdecorationbasedonthewholelifecycle