PreDI 矩阵--场外施工的通用术语:环境影响研究中的定义、验证和演示

Kaden Chaudhary, Annika Pan, Hongxi Yin, Ming Qu, Cindy Wang, David Yi
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摘要

鉴于人们对非现场施工及其生产的预制构件的兴趣与日俱增,本文旨在为非现场施工行业建立一个通用矩阵--PreDI。这样做的目的是为了提高非现场施工研究和实践的可比性,使其得到更普遍的理解。非现场施工包括在工厂制造部件,然后在现场组装。由于在部件制造过程中材料使用、能源消耗和废物产生较少,这种方法被认为更具可持续性。然而,非现场施工缺乏通用术语,给行业及其研究带来了许多挑战,阻碍了交流和研究。研究中开发的预制尺寸和集成(PreDI)矩阵为行业和研究提供了一个解决方案。因此,工业界和学术界可以广泛、准确、精确地利用 PreDI 进行交流。本文展示了 PreDI 矩阵在非现场施工生命周期评估研究中的应用,展示了其实用性,并为未来更强大的研究分析奠定了基础。美国能源部在 24 座太阳能十项全能房屋中使用了 PreDI 矩阵,这进一步凸显了该矩阵在行业中的潜力。最后,本文对其对非现场施工的影响进行了更广泛的展望。
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The PreDI matrix-a common terminology for offsite construction: definition, verification, and demonstration in environmental impact studies

Given the increasing interest in offsite construction and the prefabricated components it produces, this paper aims to establish a common matrix, the PreDI, for the offsite construction industry. The effort is to enhance the comparability of research and practices in offsite construction, making it more universally understood. Offsite construction involves manufacturing components in a factory and then assembling them on-site. It is considered a more sustainable approach due to less material usage, energy consumption, and waste generation during component fabrication. However, the lack of common terminology for offsite construction poses many challenges in the industry and its research, hindering communication and research.

The Prefabricated Dimensions and Integrations (PreDI) matrix, developed in the study, provides a solution for industry and research use. Thus, industry and academia can utilize the PreDI widely, accurately, and precisely in communication. This paper demonstrates the PreDI matrix’s application in life cycle assessment research on offsite construction, showcasing its utility and setting the stage for more robust research analyses in the future. Using the PreDI matrix in 24 U.S. Department of Energy Solar Decathlon houses further highlights its potential in the industry. Finally, the paper concludes with a broader outlook on its impacts on offsite construction.

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