A Rational Approach to Handle Uncertainty and Complexity in Marine Systems Design

P. O. Brett, Jose Jorge Garcia Agis, A. Ebrahimi, S. O. Erikstad, B. Asbjørnslett
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Abstract

Years of volatile shipping market dynamics have intensified the need for more effective handling of uncertainty in conceptual and basic ship design processes. More recently, necessary climate remedial efforts in shipping have revealed the complexity associated with the facts-based selection of proper “green” technologies and ship design solutions, the control of their resulting extra costs and operational and commercial consequences. Naval architects and marine engineers and their ship design firms or shipyard affiliations, more than ever, have seen their expertise, knowledge, work practices, toolboxes and business concepts challenged - to the extent of capacity limits and perhaps beyond? Thus, the development of more advanced tools, more effective business concepts and efficient work procedures becomes increasingly important. Improved design processes must come, hand-with-hand, with new and refreshed expertise. This paper builds on the premise that uncertainty and complexity influence the effectiveness of the decision-making process in ship design. We argue, therefore, that to improve the way daily ship design activities are carried out it is necessary to better understand the influence of uncertainty and complexity on such transactions and to implement methods and tools to eliminate or reduce the associated detrimental effects on design quality and efficiency. The purpose of this paper is to explore, contrast, discuss and provide quantitative facts as to what are these inherent uncertainties and complexities and how do they influence effective decision making relating to conceptual ship design approaches and their design firms’ competitiveness. This complementary research work combines, summarizes and reports the research findings from two recent finalized PhD Thesis; Effectiveness in Decision-Making in Ship Design under Uncertainty and Handling Ship Design Complexity to enhance Competitiveness in Ship Design. The research work is well-grounded in the systems theory paradigm and this paper presents its results in the form of specific ways in which a revised systemic ship design approach can help ship designers and their firms to better handle uncertainty and complexity in their future dealings with a dynamic market situation and immature “greening” technologies based on the findings in the PhD Thesis.
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船舶系统设计中不确定性和复杂性的合理处理方法
多年来,航运市场的波动加剧了更有效地处理概念和基本船舶设计过程中的不确定性的需要。最近,航运中必要的气候补救措施揭示了基于事实选择适当的“绿色”技术和船舶设计解决方案,控制其产生的额外成本以及运营和商业后果的复杂性。海军建筑师和海洋工程师以及他们的船舶设计公司或船厂附属机构,比以往任何时候都更能看到他们的专业知识、工作实践、工具箱和商业概念受到挑战——达到了能力极限,甚至可能超出了极限。因此,开发更先进的工具、更有效的经营理念和高效的工作程序变得越来越重要。改进的设计过程必须与新的和更新的专业知识携手并进。本文建立在船舶设计决策过程的不确定性和复杂性影响决策有效性的前提下。因此,我们认为,为了改善日常船舶设计活动的开展方式,有必要更好地了解不确定性和复杂性对此类交易的影响,并实施方法和工具来消除或减少对设计质量和效率的相关有害影响。本文的目的是探索、对比、讨论并提供定量事实,即这些固有的不确定性和复杂性是什么,以及它们如何影响与概念船舶设计方法及其设计公司的竞争力相关的有效决策。这一互补的研究工作结合、总结和报告了最近完成的两篇博士论文的研究成果;不确定条件下船舶设计决策的有效性与处理船舶设计复杂性,提高船舶设计竞争力。研究工作在系统理论范式中有很好的基础,本文以具体方式展示了其结果,其中修订的系统船舶设计方法可以帮助船舶设计师及其公司更好地处理未来处理动态市场情况和不成熟的“绿色”技术时的不确定性和复杂性。
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