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A Hybrid Modelling Approach to Developing Digital Twins of an Ultra-supercritical Steam Turbine Control Stage

机译:一种开发超超临界汽轮机控制阶段数字双胞胎的混合模拟方法

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Modelling for digital twins is a key technology in smart power plants.A control stage is a key component for pressure and flow control in steam turbines of power plants.Its modelling and simulation for digital twins are important measures for steam turbine operation diagnosis and optimization.However,sequential operation modes of valves in a control stage result in dramatic changes in thermal and mechanical behaviours of the control stage,and modelling the change in behaviours still remains a challenge due to lack of measurements.In this paper,a hybrid modelling method based on the first-principle mechanism and actual operation data is proposed.Inlet flow of a control stage are obtained by calculating flow coefficient at the full range of sequential operation of valves.Then,characteristic functions of a control stage are obtained using the first-principle mechanism.In order to verify the reliability of the proposed method,a control stage of an ultra-supercritical steam turbine with typical sequential valves operation mode is modelled and simulated.Results show that the average value of the simulation relative error is less than 1%,which proves that the method has high simulation accuracy and reliability and lays a foundation for application of digital twins in smart power plants.
机译:数字双胞胎的建模是智能发电厂的关键技术。控制阶段是发电厂蒸汽轮机中压力和流量控制的关键部件。数字双胞胎的建模和仿真是汽轮机操作诊断和优化的重要措施。然而,控制阶段中的阀门的顺序操作模式导致控制阶段的热量和机械行为的显着变化,并且建模行为的变化仍然是由于缺乏测量来仍然是一个挑战。本文基于混合建模方法仍然是挑战在提出第一原理机制和实际操作数据上。通过在阀的顺序操作的全范围计算的流量系数下计算控制阶段的进程。然后,使用第一原理获得控制阶段的特征功能机制。为了验证所提出的方法的可靠性,用典型的超超临界蒸汽涡轮机的控制阶段模拟和模拟的术序列阀操作模式。结果表明,模拟相对误差的平均值小于1%,这证明该方法具有高模拟精度和可靠性,并为智能电力应用数字双胞胎的应用基础植物。

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