Zhang Shen, Tang Yuchen, Zou Yiquan, Yang Hao, Chen Yufei, Liang Jin
School of Civil Engineering, Architecture and Environment, Hubei University of Technology, Wuhan, 430068, China.
Central South Architectural Design Institute Co., Ltd., Wuhan, 430071, China.
Sci Rep. 2024 Oct 30;14(1):26153. doi: 10.1038/s41598-024-75940-x.
Digital transformation in the architecture industry encounters challenges such as data silos within design stages, between design and construction, and across the entire industry chain, including BIM and project management. This study introduces a pioneering approach for seamlessly integrating building information modeling (BIM) and product lifecycle management (PLM) within the management framework and collaborative workflows of architectural design and construction. The proposed methodology was implemented in two major projects, namely, the Wuhan Next-Generation Weather Radar Construction Project and the Hubei Center for Disease Control and Prevention Comprehensive Capacity Enhancement Project (Phase I), with the former being China's first end-to-end digitally integrated construction project. Compared with traditional projects, these implementations achieved improvements of 24.39% and 38.04%, respectively, in objective function values. The findings highlight the unique advantages of BIM-PLM integration in optimizing lifecycle management, enhancing cross-disciplinary, cross-enterprise, and cross-regional collaboration, improving project design efficiency and quality, and reducing costs and waste. This integration provides valuable insights into the digital advancement of the construction industry.
建筑行业的数字化转型面临诸多挑战,例如设计阶段内部、设计与施工之间以及包括建筑信息模型(BIM)和项目管理在内的整个产业链中的数据孤岛问题。本研究引入了一种开创性方法,用于在建筑设计与施工的管理框架及协作工作流程中无缝集成建筑信息模型(BIM)和产品生命周期管理(PLM)。所提出的方法在两个重大项目中得以实施,即武汉新一代天气雷达建设项目和湖北省疾病预防控制中心综合能力提升项目(一期),其中前者是中国首个端到端数字化集成建设项目。与传统项目相比,这些实施分别在目标函数值方面实现了24.39%和38.04%的提升。研究结果凸显了BIM-PLM集成在优化生命周期管理、增强跨学科、跨企业和跨区域协作、提高项目设计效率和质量以及降低成本和浪费方面的独特优势。这种集成对建筑行业的数字化发展提供了有价值的见解。