Probe - Environmental Science and Technology

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ISSN

2661-3948(Online)

Article Processing Charges (APCs)

US$800

Publication Frequency

Quarterly

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Published

2026-07-14

Issue

Vol 8 No 2 (2026): Published

Section

Articles

An exploration of innovative audit models for the whole-process tracking audit of prefabricated building projects

Keran Wang

The University of Queensland


DOI: https://doi.org/10.59429/pest.v8i2.14479


Keywords: prefabricated building; full-process tracking audit; model innovation; BIM technology; risk prevention and control


Abstract

This paper based on the perspective of the entire life cycle of prefabricated buildings, sorts out the core connotation and characteristics of whole-process tracking audits, analyzes the pain points of current audit work in terms of concepts, processes, technologies, talent, and guarantee mechanisms, and explores innovative paths for audit models by combining digital technologies such as BIM and the Internet of Things. It constructs a whole-process audit system of "pre-judgment, in-process control, and post-review," verifies the feasibility of the innovative model with practical cases, and incorporates architecture diagrams and tables to enhance professionalism, providing theoretical and practical references for improving the audit quality of prefabricated buildings and promoting the standardized development of the industry.


References

[1] Zhou, M., Wang, J., Yu, B., & Chen, K. (2024). A Quality Management Method for Prefabricated Building Design Based on BIM and VR-Integrated Technology. Applied Sciences, 14(4), 1635. DOI: 10.3390/app14041635.

[2] Sun, J., Yi Man Li, R., & Deeprasert, J. (2024). The Impact of BIM Technology on the Lifecycle Cost Control of Prefabricated Buildings: Evidence from China. Buildings, 14(12), 3709. DOI: 10.3390/buildings14123709.

[3] Fang, L., & Arakawa, M. (2024). Construction Cost Optimization of Prefabricated Buildings Based on BIM Technology. Information Resources Management Journal, 37(1). DOI: 10.4018/IRMJ.348335.

[4] Cao, P., Cao, Z., Huang, D., & Wang, J. (2025). Hybrid Model for BIM Application Maturity in Prefabricated Buildings: A Case Study in Xi’an, China. Buildings, 15(8), 1322. DOI: 10.3390/buildings15081322.

[5] Li, J., Yuan, P., Liang, L., & Cao, J. (2024). Enhancing Supply Chain Resilience in Prefabricated Buildings: The Role of Blockchain Technology in Volatile, Uncertain, Complex, and Ambiguous Environments. Buildings, 14(9), 3006. DOI: 10.3390/buildings14093006.

[6] Yang, Y., Li, M., Yu, C., & Zhong, R. Y. (2024). Digital Twin-Enabled Visibility and Traceability for Building Materials in On-Site Fit-Out Construction . Automation in Construction, 166, 105640. DOI: 10.1016/j.autcon.2024.105640.



ISSN: 2661-3948
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