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Industry Survey for Determining the State of Practice of Front End Engineering Design for Industrial Construction

机译:确定工业建筑前端工程设计实践状态的行业调查

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摘要

Planning work conducted early during a construction project, known as front end planning (FEP), has a large impact on project outcomes and significant influence on the configuration of the final project. As a key component of FEP, front end engineering design (FEED) plays an essential role in the overall success of large industrial projects. This work was motivated by the existing confusion about the quality and completeness of the desired engineering deliverables at the end of FEED. The objective of this research was to determine the perception of the FEED process by administering a thorough survey to experienced FEED professionals working on industrial projects. A key finding of the survey is that the industry lacks a consistent, agreed-upon FEED definition, which causes industry misunderstandings. To address this gap, a comprehensive FEED definition was developed based on the 80 survey responses received, and builds on the existing literature. The contributions of this work include: (1) developing a tested FEED definition for the large industrial projects sector; (2) determining the industry's state of practice for measuring FEED deliverables; and (3) reaffirming that 30% of engineering design complete is a threshold for FEED. These contributions to the FEED body of knowledge will add consistency and clarity regarding FEED for large industrial projects, promoting the alignment of academics and project stakeholders on a common understanding of FEED and improving communication about FEED expectations. In addition, this work is intended to serve as a foundation and definition for future FEED research.
机译:在建筑项目早期进行的规划工作,称为前端计划(FEP),对项目结果产生了很大影响,并对最终项目配置的影响重大影响。作为FEP的关键组成部分,前端工程设计(Feed)在大型工业项目的整体成功中起着重要作用。这项工作受到了饲料结束时所需工程可交付成果的质量和完整性的困惑。本研究的目的是通过向经验丰富的饲料专业人员进行彻底的调查来确定对饲料过程的看法。调查的重点发现是,该行业缺乏一致,商定的饲料定义,导致行业误解。为了解决这一差距,基于收到的80个调查响应,并建立在现有文献中的全面饲料定义。本工作的贡献包括:(1)为大型工业项目部门开发测试的饲料定义; (2)确定行业的衡量饲料可交付成果的实践状态; (3)重申,30%的工程设计完成是饲料的阈值。这些对饲料知识体系的贡献将增加关于大型工业项目的饲料的一致性和清晰度,促进学者和项目利益相关者对饲料的共同理解,提高饲料预期的沟通。此外,这项工作旨在作为未来饲料研究的基础和定义。

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  • 来源
    《Practice periodical on structural design and construction》 |2020年第4期|04020025.1-04020025.11|共11页
  • 作者单位

    Del E. Webb School of Construction Arizona State Univ. 660 South College Ave. Room 475 Tempe AZ 85287;

    School of Sustainable Engineering and the Built Environment Arizona State Univ. 660 South College Ave. Room 527b Tempe AZ 85287;

    National Center of Excellence on SMART Innovations School of Sustainable Engineering and the Built Environment Arizona State Univ. Tempe AZ 85287;

    Moss School of Construction Infrastructure and Sustainability Florida International Univ. 10555 W Flagler St. Room EC 2952 Miami FL 33174;

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