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Modelling and simulation of water control system of vertical natural circulation steam generators

机译:立式自然循环蒸汽发生器水控制系统的建模与仿真

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For the vertical natural circulation steam generators, the nonlinear mathematical model of the steam generator is established by applying the modular mechanism modeling method. Comprising 16 control bodies, the model establishes mathematical model for each control body for derivation by lumped parameter method, with a mathematical model with 12 state variables obtained. The three-impulse control method is applied to automatically control the water level of the steam generator. The model is then solved by Runge-Kutta method. The simulation test is then performed for the steam generator’s water level control system to verify the dynamic characteristics of the model. With this model, it is possible to analyze the dynamic characteristics of the steam generator and design the steam generator controller, thus it is of certain significance in engineering application.
机译:对于垂直自然循环蒸汽发生器,采用模块化机理建模方法建立了蒸汽发生器的非线性数学模型。该模型由16个控制体组成,为每个控制体建立数学模型,以集总参数方法进行推导,并获得了具有12个状态变量的数学模型。三脉冲控制方法用于自动控制蒸汽发生器的水位。然后通过Runge-Kutta方法求解该模型。然后对蒸汽发生器的水位控制系统进行模拟测试,以验证模型的动态特性。利用该模型可以分析蒸汽发生器的动态特性,设计出蒸汽发生器控制器,在工程应用中具有一定的意义。

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