4.7 Article

A building information modeling-based carbon emission measurement system for prefabricated residential buildings during the materialization phase

期刊

JOURNAL OF CLEANER PRODUCTION
卷 264, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2020.121728

关键词

System; Carbon emission measurement; Prefabricated residential building (PRB); Materialization; Building information modeling (BIM); Database

资金

  1. Shenzhen Government Basic Research Foundation for Free exploration [JCYJ20170818141151733]
  2. National Natural Science Foundation of China [71974132]

向作者/读者索取更多资源

This study develops a carbon emission measurement system for prefabricated residential buildings (PRBs) during the materialization phase based on building information modeling (BIM) and a carbon emission measurement model. The model is constructed using the carbon emission coefficient method. For more accurate measurement, the materialization phase of PRBs' carbon cycle is re-defined into five stages (material production, material transportation, component production, component transportation, and construction). This innovative system also incorporates Microsoft Access-based databases for data management. The implementation of the system in a PRB project in Shenzhen, China revealed that over 90% of carbon emissions were generated in the building material production and construction stages, and overall carbon emissions per unit volume of all the prefabricated components were 764.87 kg/m(3), 20.11% lower than those of the cast-in-situ parts. Compared with results obtained from the traditional method, the system's percentage error was 6.52%, showing good reliability in carbon emission measurement. The discrepancy was reasonably justified by inevitable material losses and transportation distances. It is concluded that the measurement system can accurately predict PRB projects' carbon emissions in project planning and early design, identify key areas for carbon emission pre-control, and facilitate dynamic management of carbon emission reduction during the materialization phase. (C) 2020 Elsevier Ltd. All rights reserved.

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