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首页> 外文期刊>Advanced Theory and Simulations >Parametric Analysis of Variable Stator Vane System in Gas Turbines Based on Cosimulation of its Refined Model and System Dynamic Performance Model
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Parametric Analysis of Variable Stator Vane System in Gas Turbines Based on Cosimulation of its Refined Model and System Dynamic Performance Model

机译:参数可变静子叶片系统的分析在基于Cosimulation的燃气轮机精致的模型和系统动态性能模型

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摘要

The variable stator vane (VSV) system is a key component of gas turbine supercharged rotor components for anti-surge, and its performance directly affects the working stability and economy of the gas turbine. The effect of the VSV system on the dynamic characteristics and control performance of the gas turbine cannot be known. Then a refined model of the VSV system refined to design parameters established and studied to explore the effect of gas turbine dynamic performance based on co-simulation. The effects of key parameters on the performance of the gas turbine system are analyzed by embedding the refined VSV model into the engine model. The simulation results prove that servo amplifier gain, viscous friction coefficient and dead band are sensitive structural parameters that affect the dynamic performance of the gas turbines. In the proposed appropriate interval, the optimal sensitive parameters can reduce the overshoot and adjustment time by about 51% and 7%. The gain of the servo amplifier is positively correlated with the maximum opening of the VSV. When the dynamic performance of the control system has been exerted to its extreme, some nonlinear parameters of the actuator can greatly improve the overall performance of the complex system.
机译:静子叶片的变量(VSV)系统是一个关键燃气涡轮增压式转子组件喘振的组件,其性能直接影响到稳定和工作燃气轮机的经济。系统的动态特性和控制燃气轮机的性能不能被人知道的。然后精制水疱性口炎病毒的模型系统设计参数建立和研究研究燃气轮机动态的影响基于联合仿真的性能。关键参数对气体的性能汽轮机系统进行了分析通过嵌入水疱性口炎病毒精炼模型到引擎模型。仿真结果证明伺服放大器增加,粘滞摩擦系数和死区结构参数影响很敏感吗燃气轮机的动态性能。提出适当的间隔,最优可以减少过度和敏感参数调整时间约51%和7%。伺服放大器呈正相关水疱性口炎病毒的最大开放。控制系统的性能对其极端,一些非线性参数致动器可以大大提高整体复杂的系统的性能。

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