首页> 外文OA文献 >A knowledge-based engineering tool for aiding in the conceptual design of composite yachts
【2h】

A knowledge-based engineering tool for aiding in the conceptual design of composite yachts

机译:一种基于知识的工程工具,可用于复合游艇的概念设计

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Proposed in this thesis is a methodology to enable yacht designers to develop innovative structural concepts, even when the loads experienced by the yacht are highly uncertain, and has been implemented in sufficient detail to confirm the feasibility of this new approach. The new approach is required because today's yachts are generally lighter, getting larger and going faster. The question arises as to how far the design envelope can be pushed with the highly uncertain loads experienced by the structure? What are the effects of this uncertainty and what trade-offs in the structural design will best meet the overall design objectives?The new approach provides yacht designers with a means of developing innovative structural solutions that accommodate high levels of uncertainty, but still focus on best meeting design objectives constrained by trade-offs in weight, safety and cost. The designer's preferences have a large, and not always intuitive, influence on the necessary design trade-offs. This in turn invites research into ways to formally integrate decision algorithms into knowledge-based design systems.A lean and robust design system has been achieved by developing a set of tools which are blanketed by a fuzzy decision algorithm. The underlying tool set includes costing, material optimisation and safety analysis. Central to this is the innovative way in which the system allows non-discrete variables to be utilized along with new subjective measures of structural reliability based on load path algorithms and topological (shape) optimisation. The originality in this work is the development of a knowledge-based framework and methodology that uses a fuzzy decision making tool to navigate through a design space and address trade-offs between high level objectives when faced with limited design detail and uncertainty. In so doing, this work introduces the use of topological optimisation and load path theory to the structural design of yachts as a means of overcoming the historical focus of knowledge-based systems and to ensure that innovative solutions can still evolve. A sensitivity analysis is also presented which can quantify a design's robustness in a system that focuses on a global approach to the measurement of objectives such as cost, weight and safety. Results from the application of this system show new and innovative structural solutions evolving that take into account the designers preferences regarding cost, weight and safety while accommodating uncertain parameters such as the loading experienced by the hull.
机译:本文提出了一种方法,即使在游艇承受的载荷非常不确定的情况下,也能使游艇设计者开发出创新的结构概念,并且已经进行了足够详细的实施,以确认这种新方法的可行性。之所以需要这种新方法,是因为当今的游艇通常更轻,越来越大,运行速度更快。问题是,在结构承受高度不确定的载荷的情况下,设计包络可以推到多远?这种不确定性的影响是什么,结构设计中的哪些折衷将最能满足总体设计目标?新方法为游艇设计者提供了一种开发创新的结构解决方案的方法,以适应高水平的不确定性,但仍专注于最佳达到在重量,安全性和成本之间权衡取舍的设计目标。设计师的偏好会对必要的设计权衡产生很大的影响,但并不总是直观的。这反过来又引发了对将决策算法正式集成到基于知识的设计系统中的方法的研究。通过开发一套模糊决策算法所覆盖的工具,已经实现了精简而强大的设计系统。基础工具集包括成本核算,材料优化和安全性分析。此方法的核心是创新的方法,其中该系统允许使用非离散变量以及基于载荷路径算法和拓扑(形状)优化的结构可靠性的新主观度量。这项工作的独创性是基于知识的框架和方法的开发,该方法和方法使用模糊决策工具来导航设计空间,并在面临有限的设计细节和不确定性时解决高层目标之间的折衷。通过这样做,这项工作将拓扑优化和负载路径理论的运用引入了游艇的结构设计中,以此作为克服基于知识的系统的历史重点并确保创新解决方案仍能发展的一种手段。还介绍了灵敏度分析,可以量化系统中设计的稳健性,该系统的重点是用于度量成本,重量和安全性等目标的全局方法。该系统的应用结果表明,在考虑到设计人员在成本,重量和安全性方面的偏爱,同时适应不确定的参数(例如船体承受的载荷)的同时,新的创新结构解决方案也在不断发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号