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Optimal Design and Performance Simulation of a Novel Semi-active Vibration Absorber for Pipeline System of NPP

机译:核电厂管道系统新型半主动减振器的优化设计与性能仿真

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The vibration of pipeline system induced by pump is one of the most important factors affecting the safety and stability of nuclear power plant (NPP) operation, and is also the most prominent vibration and noise transmission channel in the plant area. Analysis results show that various support structures such as pipe clamps, hangers and brackets are the main transmission routes of pipeline vibration. However, it is usually difficult to obtain a satisfactory absorption effect by using traditional passive vibration isolation device, especially for a variety of low-frequency vibration. Besides, the effective isolation frequency is fixed which cannot adapt to the variation of the operation condition excitation source. Therefore, it is of great practical significance to propose a method and scheme which can effectively restrain the low-frequency vibration of pipeline system of NPP. In order to meet the above requirements, an electromagnetic semi-active vibration absorber is designed in this paper. Its electromagnetic stiffness can be adjusted by changing the excitation current, so as to achieve the purpose of changing the natural frequency online and improving the vibration attenuation effect. In order to verify the rationality of its electromagnetic structure, the magnetic field distribution of vibration absorber is simulated and analyzed. Results show that it is close to magnetic saturation inside without leakage. On this basis, a platform of simulated condensate water pipeline system for vibration experiment is set up, on which the frequency response together with time & frequency-domain vibration characteristics of typical support points are tested, and the stiffness, damping and other parameters of the vibration absorber are optimized according to the test results. Finally, the vibration of pipeline system is simulated and compared. The results show that under the condition of the optimal combination of parameters, the vibration spectrum of the pipeline is obviously reduced after the vibration absorber is used, which indicates a significant vibration control effect.
机译:泵引起的管道系统振动是影响核电站运行安全和稳定的最重要因素之一,也是厂区内最突出的振动和噪声传播通道。分析结果表明,管夹,吊架,支架等各种支撑结构是管道振动的主要传递途径。然而,通常难以通过使用传统的被动振动隔离装置来获得令人满意的吸收效果,特别是对于各种低频振动。此外,有效隔离频率是固定的,不能适应工作条件激励源的变化。因此,提出一种有效抑制核电厂管道系统低频振动的方法和方案具有重要的现实意义。为了满足上述要求,本文设计了一种电磁半主动减振器。通过改变励磁电流可以调节其电磁刚度,从而达到在线改变固有频率,提高减振效果的目的。为了验证其电磁结构的合理性,对减振器的磁场分布进行了仿真分析。结果表明,它接近内部的磁饱和,没有泄漏。在此基础上,建立了模拟凝结水管道系统的振动实验平台,在该平台上测试了频率响应以及典型支撑点的时域和频域振动特性,并测试了其刚度,阻尼等参数。根据测试结果对减震器进行了优化。最后,对管道系统的振动进行了仿真和比较。结果表明,在最佳参数组合的条件下,使用减振器后管道的振动谱明显减小,表明其显着的减振效果。

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