Challenges of offsite construction and BIM implementation: providing a framework for integration in New Zealand

IF 3.5 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Nazanin Kordestani Ghalenoei, M. Babaeian Jelodar, Daniel Paes, M. Sutrisna
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引用次数: 1

Abstract

PurposeThe development of prefabrication into full-scale offsite manufacturing processes in the construction industry is paradigm-shifting. Moreover, Building Information Modelling (BIM) is becoming the primary mode of communication and integration in construction projects to facilitate the flow of information. Although research has been performed on BIM and Offsite Construction (OSC), integrating these two concepts remains ambiguous and complex and lacks documentation and structure, especially in New Zealand. Therefore, this paper develops a robust framework for OSC and BIM integration. The study focusses on identifying integration challenges and proposes strategies for overcoming these challenges.Design/methodology/approachThis study applied scientometric analysis, a systematic literature review (SLR) and semi-structured expert interviews to investigate OSC and BIM integration challenges. Multiple themes were investigated and triangulation conducted in this research supports the creation of applicable knowledge in this field.FindingsMultiple gaps, research trends and the pioneer countries in the paper's scope have been identified through scientometric analysis. Then, a classified cluster of challenges for OSC and BIM implementation and integration strategies of OSC and BIM were demonstrated from the findings. The interviews provided comprehensive and complementary data sets and analyses. The findings from the Systematic Literature Review and interview structured the integration framework.Originality/valueThe contribution of this paper to existing knowledge is a developed framework that serves as a guideline for the OSC stakeholders. This framework can assess OSC's alignment with BIM and consolidate strategies for incorporating OSC into a BIM-based project delivery process. The framework consists of 23 strategies categorised into 8 clusters: a policy document, training and professional development, documentation, technology management, governmental development, contract development, accurate definition and detailing and communication. The proposed strategies will streamline integration by reducing potential challenges, thus enhancing project productivity.
非现场施工和BIM实施的挑战:为新西兰的整合提供框架
目的:在建筑行业中,预制向全面的非现场制造过程的发展是一种范式转变。此外,建筑信息模型(BIM)正在成为建筑项目沟通和整合的主要模式,以促进信息的流动。尽管已经对BIM和OSC进行了研究,但将这两个概念整合起来仍然是模糊和复杂的,缺乏文档和结构,特别是在新西兰。因此,本文为OSC和BIM集成开发了一个健壮的框架。本研究的重点是识别整合挑战,并提出克服这些挑战的策略。本研究应用科学计量分析、系统文献综述(SLR)和半结构化专家访谈来调查OSC和BIM集成的挑战。本研究调查了多个主题,并进行了三角测量,以支持该领域适用知识的创造。通过科学计量分析,确定了本文研究范围内的多个差距、研究趋势和先锋国家。然后,根据研究结果,对OSC和BIM实施面临的挑战以及OSC和BIM的整合策略进行了分类。访谈提供了全面和补充的数据集和分析。系统文献综述和访谈的结果构建了整合框架。原创性/价值本文对现有知识的贡献是为OSC利益相关者提供了一个指导方针的开发框架。该框架可以评估OSC与BIM的一致性,并巩固将OSC纳入基于BIM的项目交付过程的策略。该框架由23项策略组成,分为8组:政策文件、培训和专业发展、文件、技术管理、政府发展、合同发展、准确定义和详细说明以及沟通。提议的策略将通过减少潜在挑战来简化集成,从而提高项目生产率。
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来源期刊
Smart and Sustainable Built Environment
Smart and Sustainable Built Environment GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
9.20
自引率
8.30%
发文量
53
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