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Practical Techniques for Modeling Gas Turbine Engine Performance

机译:燃气轮机性能建模的实用技术

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The cost and risk associated with the design and operation of gas turbine engine systems has led to an increasing dependence on mathematical models. In this paper, the fundamentals of engine simulation will be reviewed, an example performance analysis will be performed, and relationships useful for engine control system development will be highlighted. The focus will be on thermodynamic modeling utilizing techniques common in industry, such as: the Brayton cycle, component performance maps, map scaling, and design point criteria generation. In general, these topics will be viewed from the standpoint of an example turbojet engine model; however, demonstrated concepts may be adapted to other gas turbine systems, such as gas generators, marine engines, or high bypass aircraft engines. The purpose of this paper is to provide an example of gas turbine model generation and system performance analysis for educational uses, such as curriculum creation or student reference.
机译:与燃气涡轮发动机系统的设计和操作相关的成本和风险导致对数学模型的依赖性增加。在本文中,将对发动机仿真的基础知识进行回顾,对示例性能进行分析,并突出显示对发动机控制系统开发有用的关系。重点将放在利用行业常用技术进行的热力学建模上,例如:布雷顿循环,组件性能图,图缩放和设计点标准生成。通常,将从示例涡轮喷气发动机模型的角度来看这些主题。然而,已证明的概念可以适用于其他燃气轮机系统,例如气体发生器,船用发动机或高旁通飞机发动机。本文的目的是提供一个用于教育用途(例如课程设置或学生参考)的燃气轮机模型生成和系统性能分析的示例。

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