Generic Functional Decomposition of an Integrated Jet Engine Mechanical Sub System Using a Configurable Component Approach

V. Raja, O. Isaksson
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引用次数: 10

Abstract

A procedure is proposed to functionally decompose an already existing integrated mechanical jet engine subsystem. An integrated sub system is a system where the same design object satisfies multiple functions: which is typically the case in aircraft engine sub systems and components. A generic decomposition method will allow implementation and use in automated design systems and will function as a means to build experiences into platforms. Using the procedure, an enhanced function-means tree (E F-M tree) consisting of functional requirements, means to satisfy the requirements and constraints was created for the integrated jet engine component. The E F-M tree is then used to generate a hierarchy of configurable components (CCs). A configurable component (CC) is a stand-alone conceptual object that contains the functional requirement, means to satisfy the requirement (or design solution) and constraints at a certain level of the E F-M tree. A specific CC hierarchy configuration results in the description of the product concerned. The usage of the CC hierarchy as design documentation as well as a template to derive other designs from is demonstrated. Finally limitations of describing product functional requirements using CC method and recommendations for further development of the method are discussed.
基于可配置组件方法的一体化喷气发动机机械子系统通用功能分解
提出了一种对现有一体化机械喷气发动机子系统进行功能分解的方法。集成子系统是一个系统,其中相同的设计对象满足多种功能:这是典型的飞机发动机子系统和部件的情况。通用的分解方法将允许在自动化设计系统中实现和使用,并将作为将体验构建到平台中的一种手段。利用该方法,建立了由功能需求、满足需求的方法和约束条件组成的增强功能-均值树。然后使用E - m树生成可配置组件(cc)的层次结构。可配置组件(CC)是一个独立的概念对象,它包含功能需求、满足需求(或设计解决方案)的方法以及在E - m树的某个级别上的约束。特定的CC层次结构配置将产生有关产品的描述。演示了CC层次结构作为设计文档以及派生其他设计的模板的用法。最后讨论了使用CC方法描述产品功能需求的局限性,并对该方法的进一步发展提出了建议。
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