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Concurrent engineering in the context of the composite leisure boatbuilding industry

机译:复合休闲造船业背景下的并行工程

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摘要

Leisure boatbuilding is an industry that has tight profit margins and growing competition due to the global nature of the industry. It is a growth market with the number of high-earning potential customers increasing worldwide. For British boatbuilding to retain and increase its high standing within these global markets investment is required to develop larger profits and market share. Concurrent engineering is a method of design that has given large benefits to a multitude of industries but is ill-defined within leisure boatbuilding.This thesis investigates the nature of British boatbuilding and develops concurrent engineering within this context. To develop faster design while increasing quality this thesis concentrates on automated communication. A number of tools are developed focusing on structures and production. These include a mass and cost multi-objective optimisation tool further developing first principles rules using a Genetic Algorithm, a reliability tool to increase the speed of iterative design and a design history tool focusing on data mining using neural networks within a grid computing structure. Furthermore, a concurrent engineering methodology specific to leisure boatbuilding has been developed leading to a design environment for use within this sector. The resulting work develops techniques that increase the knowledge available to engineers in an intuitive, quantitative, manner.
机译:由于该行业的全球性质,休闲造船是一个利润空间狭窄且竞争日益激烈的行业。这是一个增长中的市场,全球高收入潜在客户的数量在增加。为了使英国造船业能够在这些全球市场中保持并提高其较高的声誉,需要投资以提高利润和市场份额。并行工程是一种设计方法,它给众多行业带来了巨大的好处,但在休闲造船业中却定义不清。本文研究了英国造船的性质,并在此背景下发展了并行工程。为了在提高质量的同时开发更快的设计,本文着重于自动化通信。开发了许多针对结构和生产的工具。其中包括使用遗传算法进一步开发第一原理规则的质量和成本多目标优化工具,提高迭代设计速度的可靠性工具以及专注于在网格计算结构内使用神经网络进行数据挖掘的设计历史工具。此外,已经开发了针对休闲造船的并行工程方法论,从而为该行业提供了一种设计环境。最终的工作开发出可以以直观,定量的方式增加工程师可用知识的技术。

著录项

  • 作者

    Sobey Adam James;

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  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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