工程专业知识的代际传承:风暴潮屏障工程中的知识连续性管理

Merlijn Kamps, M. van den Boomen, Johannes van den Bogaard, Marcel Hertogh
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引用次数: 0

摘要

目的工程知识的连续性对于核电厂、水闸和风暴潮防护堤等长寿命复杂资产的生命周期管理至关重要。在荷兰的风暴潮防护堤,尽管经过长期努力,但工程知识的连续性尚未得到充分保证。本研究旨在探讨系统特征、维护和运营的组织划分与实现工程知识连续性的挑战之间的关系,并为理论和政策的改进提供建议。设计/方法/途径对来自荷兰风暴潮屏障建设、工程和资产管理等不同背景的专业人员进行了十次半结构化访谈,并对屏障和屏障团队进行了访问。我们采用了主题分析法来确定和描述工程连续性所面临的挑战、其根源和潜在的解决方案。我们审查了知识管理政策文件和资产管理咨询报告,以验证研究结果。此外,我们还与障碍方面的专业人员进行了频繁互动。专题分析提出了多个主题,描述了工程连续性所面临的挑战、其根源和潜在的解决方案。主要发现是,专家工程师对于处理过时引起的重新设计至关重要。此外,由于障碍的独特性、漫长的重新设计周期和可靠性要求,传统的知识连续性工具不足以使新工程师达到专家水平。最后,专题分析表明,在某些情况下,应减少外包,以促进内部学习。 原创性/价值 该研究介绍了基于知识的企业观和必要知识冗余概念在复杂资产长期管理中的应用。它呼吁更多地关注独特知识使用中的长期差距及其对知识连续性的影响。
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Intergenerational transfer of engineering expertise: knowledge continuity management in storm surge barrier engineering
PurposeEngineering knowledge continuity is crucial for the life cycle management of long-lived and complex assets, such as nuclear plants, locks and storm surge barriers. At the storm surge barriers in the Netherlands, engineering knowledge continuity is not yet fully assured, despite long-standing efforts. This study aims to explore the relationship between system characteristics, the organizational demarcation of maintenance and operation and the challenges in achieving engineering knowledge continuity and provides suggestions for improvement of theory and policy.Design/methodology/approachTen semi-structured interviews were conducted with professionals from various backgrounds in construction, engineering and asset management of the Dutch storm surge barriers, augmented with visits to barriers and barrier teams. A thematic analysis was used to identify and describe the challenges to engineering continuity, their origins and potential solutions. We reviewed knowledge management policy documents and asset management consultancy reports to validate the findings. Additionally, we engaged in frequent interactions with professionals at the barriers. We achieved saturation and validation once no new issues were raised during these discussions.FindingsThe thematic analysis developed multiple themes describing the challenges to engineering continuity, their origins and potential solutions. The key findings are that expert engineers are critically important to deal with redesigns induced by obsolescence. Moreover, due to barrier uniqueness, long redesign cycles and reliability requirements, conventional knowledge continuity tools are insufficient to enable new engineers to reach expert level. Finally, the thematic analysis shows that, in some cases, outsourcing should be reduced to facilitate internal learning.Originality/valueThe study introduces the application of the knowledge-based view of the firm and the concept of requisite knowledge redundancy to the long-term management of complex assets. It calls for more attention to long gaps in the use of unique knowledge and the effect on knowledge continuity.
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