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SIMULATION OF PNEUMATIC VOLUMES FOR A GAS TURBINE TRANSIENT STATE ANALYSIS

机译:燃气轮机瞬态分析中的气动体积模拟

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The problem of pneumatic volumes constituting a gas turbine engine gas path and their effect on an engine transient belongs to the topical problems of modern turbomachinery engineering. Many researchers have been trying to find the most resource efficient method of volume modeling. The associated urgent problem is the integration of the volume models with an engine model. Following the world trends, the present paper deals with the pneumatic volume simulation that considers different dynamic factors described with the mass, energy, and momentum conservation laws. The developed dynamic volume models were examined and compared. The comparison cases included temperature and pressure change at the volume entrance and pressure change at the volume discharge. To reduce the computation time, the linearization of model equations was also proposed and proved. Based on the comparison results, the guidelines and recommendations on the volume effect mathematical modeling and the volume model integration with the engine model have been made.
机译:构成燃气涡轮发动机气体路径的气动体积问题及其对发动机瞬态的影响属于现代涡轮机械工程的主题问题。许多研究人员一直在尝试寻找最节省资源的体积建模方法。相关的紧急问题是体积模型与发动机模型的集成。跟随世界趋势,本文涉及气动体积模拟,其中考虑了用质量,能量和动量守恒定律描述的不同动态因素。检查并比较了开发的动态体积模型。比较情况包括体积入口处的温度和压力变化以及体积出口处的压力变化。为了减少计算时间,还提出并证明了模型方程的线性化。根据比较结果,就体积效应数学模型以及体积模型与发动机模型的集成提出了指南和建议。

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