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水力发电学报 ›› 2026, Vol. 45 ›› Issue (1): 11-18.doi: 10.11660/slfdxb.20260102

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水轮机顶盖干湿模态特性及流体附加质量效应

  

  • 出版日期:2026-01-25 发布日期:2026-01-25

Dry and wet modal characteristics of hydro turbine head covers and fluid added mass effects

  • Online:2026-01-25 Published:2026-01-25

摘要: 本文以HLBD993-LJ-407型抽水蓄能机组顶盖为对象,采用声固耦合数值方法,系统分析了不同附水工况下的顶盖湿模态特性,揭示了附加质量效应的影响规律。研究表明:流体附加质量效应显著降低顶盖固有频率,其中1ND模态的固有频率下降率达到19.6%(附加质量系数约为0.55),衰减最为明显;转轮上冠间隙水域的附加质量效应最强,导叶内、外侧水域因边界连通性导致附加质量效应较弱;多流体域共存时附加质量效应呈非线性叠加,上冠间隙与导叶区域流体的反相位运动导致效应部分抵消;全反射边界较全吸收边界进一步抑制流体运动,使附加质量系数提升20%以上,加剧频率衰减。本文研究了复杂流体环境下附加质量对顶盖振动特性的影响机制,可为避振设计及运行优化提供一些理论依据。

关键词: 水轮机, 顶盖, 湿模态, 声固耦合, 流体附加质量

Abstract: This paper applies acoustic-solid coupling numerical methods to a systematical analysis on the wet modal characteristics of the top cover of a HLBD993-LJ-407 pumped storage unit at varying fluid-structure conditions, revealing and quantifying the effects of its fluid-induced added mass. Results indicate the added mass reduces the cover's natural frequencies significantly, with the most pronounced attenuation observed in the 1ND mode (natural frequency reduction of 19.6%, corresponding to an added mass coefficient of approximately 0.55). The added mass effect peaks in the water layer within the upper crown gap of the runner, while it diminishes in the flow zones near the inner and outer surfaces of the guide vanes due to boundary connectivity. Meanwhile, it follows the non-linear superposition in the case of multiple fluid domains coexisting. The effect is offset partially by the counter-phase fluid motions in the upper crown gap and guide vane zones; A fully reflective boundary suppresses fluid motions more effectively than a fully absorbing one, increasing the added mass coefficient by more than 20%, and intensifying frequency reduction.. This study has explored the mechanism of added mass influencing the vibration characteristics of the top cover at complicated flow conditions, laying a basis for further study of vibration suppression design and operational optimization.

Key words: turbine, head cover, wet modal, acoustic-solid coupling, fluid added mass

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