The Use of CAD Systems to Manage Modularity in Multi-Role Warships

R. Fernández, E. P. Cosma
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引用次数: 1

Abstract

Modulation requires new approaches to the entire shipbuilding process, general arrangement for the warships need careful analysis of interaction and physical connection between modules: electrical, water, air conditioning, etc. and between modules and the elements surrounding them. The analysis of areas with high potential for modulation will lead, by the application of the criteria decided, to a selection of several standard modules to be designed in CAD systems for those cases where it is expected to achieve significant savings by producing series of modules. The appropriate application of the modularization theories demands a difficult exercise of coordination among the design of all the units, systems, zones or disciplines present in the compartments and also direct implications in constructive strategy which will require specific protocols for the correct implementation of the modules during the constructive stages. The implementation of new tools to handle modules in warships is particularly important since it remarkably simplifies the analysis, what leads to a high potential in the improvement of the coordination among design areas and disciplines, and consequently to a more efficient design. The typical outfitting and equipment modules for these areas shall be defined, interfaces to the equipment and specification of cables, pipes and air conditioning systems needed for the module. The goal will be to define a limited number of standard modules, which allows exploiting serial effects and containing a significant part of outfitting in order to achieve savings from pre-outfitting. But the concept of modularization has even a wider meaning for warships when thinking in modularity, not only oriented to the design and constructive advantages but also in the future evolution of these kind of ships in order to be reoriented easily towards different uses, future upgrades or changes that should be realized to be able to undertake different kind of missions thanks to an efficient Plug and Play system. The aim of this paper is to develop concepts and design solutions for modular machinery space, on-board automation and warship equipment. To achieve those possibilities, not only the modularity concept will be necessary, it also needs a clear vision of which will be the lifecycle of the warship and its present and future purposes or possible upgrades in order to create a design. CAD systems are essential tools to provide the vision and the base to design and simulate the different possibilities that a warship would be able to provide thanks to the application of a modular concept during its complete lifecycle.
CAD系统在多用途军舰模块化管理中的应用
调制需要对整个造船过程采取新的方法,军舰的总体布置需要仔细分析模块之间的相互作用和物理连接:电气,水,空调等,模块与周围元素之间。通过应用所决定的标准,对具有高调制潜力的领域进行分析后,将选择几个标准模块,在CAD系统中设计,用于预期通过生产一系列模块可以节省大量费用的情况。模块化理论的适当应用需要在所有单元、系统、区域或学科的设计之间进行困难的协调,并直接影响建设性战略,这将需要在建设性阶段正确实施模块的具体协议。在军舰上实施处理模块的新工具尤为重要,因为它极大地简化了分析,从而在改进设计领域和学科之间的协调方面具有很大的潜力,从而实现更有效的设计。应定义这些区域的典型装备和设备模块、设备接口以及模块所需的电缆、管道和空调系统的规格。目标将是定义有限数量的标准模块,这允许利用系列效应,并包含一个重要的部分,以实现从预舾装节省。但是,模块化的概念在模块化思考时对军舰具有更广泛的意义,不仅面向设计和建设性优势,而且面向这些类型的船舶的未来发展,以便轻松地重新定位不同的用途,未来的升级或变化,应该实现能够承担不同类型的任务,这要归功于高效的即插即用系统。本文的目的是为模块化机械空间、机载自动化和军舰设备开发概念和设计解决方案。为了实现这些可能性,不仅模块化概念是必要的,它还需要一个清晰的愿景,即战舰的生命周期,其现在和未来的目的或可能的升级,以便创建一个设计。CAD系统是必不可少的工具,可以为设计和模拟军舰的不同可能性提供视觉和基础,这要归功于模块化概念在其整个生命周期中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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