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Economic considerations of engineering in the industrial plant business

机译:工业厂房业务中工程学的经济考虑

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When it comes to improve the competitive advantage of plant EPC (Engineering, Procurement, Construction) companies, the increase of engineering performance is a permanent challenge. However, economic considerations such as “What is efficient engineering”, “What is engineering performance” or “When is engineering profitable” remain unanswered both in academic discussion and in industrial practice alike, since engineering is connected in multiple ways to other trades, stages in the value chain and phases of the plant life cycle. For this reason it is difficult to achieve a common understanding of engineering performance. Performance rather lies in the eye of the beholder and these individual interpretations can differ substantially. Based on best-practice sharing and various analyses, the authors develop a model to systematize these subjective interpretations of engineering performance. It consists of three dimensions - “position of the beholder”, “observation horizon of the beholder” and “performance metrics”. The dimensions contain general performance criteria. To consider the specific background of each beholder, there are two additional perspectives on these dimensions - “role” and “controlling concept”. This model enables plant EPC companies to gain a holistic view on engineering performance along the complete plant life cycle. Furthermore it provides a clear structure for economic considerations and investments in engineering - enabling plant EPC companies to increase the performance of their engineering.
机译:当要提高工厂EPC(工程,采购,建筑)公司的竞争优势时,提高工程性能是一个长期的挑战。但是,无论是在学术讨论还是在工业实践中,诸如“什么是高效工程”,“什么是工程绩效”或“什么时候能获利”之类的经济考虑均未得到解答,因为工程以多种方式与其他行业,阶段联系在一起。在价值链和工厂生命周期的各个阶段。因此,很难对工程性能达成共识。表现更取决于旁观者的眼光,这些个别的解释可能会有很大的不同。基于最佳实践共享和各种分析,作者开发了一个模型来对这些对工程性能的主观解释进行系统化。它由三个维度组成-“观察者的位置”,“观察者的观察范围”和“绩效指标”。尺寸包含一般性能标准。为了考虑每个旁观者的具体背景,在这些维度上还有另外两种观点-“角色”和“控制概念”。该模型使工厂EPC公司可以在整个工厂生命周期中全面了解工程性能。此外,它为经济考虑和工程投资提供了清晰的结构-使工厂EPC公司能够提高其工程性能。

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