首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.6 pt.B; 20070514-17; Montreal(CA) >A PRECISE FULL-DIMENSIONAL DESIGN SYSTEM FOR MULTISTAGE STEAM TURBINES PART I: PHILOSOPHY AND ARCHITECTURE OF THE SYSTEM
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A PRECISE FULL-DIMENSIONAL DESIGN SYSTEM FOR MULTISTAGE STEAM TURBINES PART I: PHILOSOPHY AND ARCHITECTURE OF THE SYSTEM

机译:多级汽轮机的精密全尺寸设计系统第一部分:系统的哲学和体系结构

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A new, precise full-dimensional (PFD) design system for multistage steam turbine has been developed in the past decades by the present authors. The remarkable features of PFD system different from conventional 3D design methodology are as followings: a). Taking into account of unsteady aerodynamic impact on steam turbine performance, b). Simulating 3D real structure of blade and non-blade components without geometric simplification, c). Coupling of aerodynamic design with FEM structure- mechanical analysis for blade and non-blade components. Three levels of design and optimization at global, regional and local level for steam turbine cycle and flow path design are described. The PFD design system consists of conceptual (0D), ID, Q3D, F3D/4D aerodynamic design and optimization codes, structure analysis and mechanical design (MD) tools, and pre- and post-processing software. In this part of present paper a detail description of philosophy and architecture of the PFD design system, function of each design tools, principles for design consistency are given. The PFD design system is a new plateau of present author's long-term effort to bring multistage steam turbine design from a simple, passive, empirical-based situation toward a comprehensive, active, knowledge-based environment.
机译:在过去的几十年中,本作者开发了一种用于多级汽轮机的新型,精确的全尺寸(PFD)设计系统。 PFD系统与常规3D设计方法不同的显着特征如下:a)。考虑到不稳定的空气动力对汽轮机性能的影响,b)。在不进行几何简化的情况下,模拟叶片和非叶片组件的3D真实结构,c)。空气动力学设计与FEM结构的耦合-叶片和非叶片组件的力学分析。描述了用于汽轮机循环和流路设计的全局,区域和局部级别的三个设计和优化级别。 PFD设计系统包括概念(0D),ID,Q3D,F3D / 4D空气动力学设计和优化代码,结构分析和机械设计(MD)工具以及预处理和后处理软件。在本部分中,将详细介绍PFD设计系统的原理和体系结构,每种设计工具的功能以及设计一致性的原理。 PFD设计系统是当前作者长期努力的一个新平台,该长期努力是将多级汽轮机设计从简单,被动,基于经验的情况转变为全面,主动,基于知识的环境。

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