Study on the dynamic response of the powerhouse under the vibration load of the Hydropower Station

Xiaoxin Zhang, Jianping Zeng, Bin Wu, J. Gu
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Abstract

The vibration problem of hydro-turbine generator sets is very complicated. There are examples at home and abroad that the vibration of the generator sets causes the vibration of the plant structure, and even causes the structural damage to affect the normal operation of the power station. The Hydropower Station is a second-class (2) type project. In order to study the dynamic response of the plant under the vibration load of the unit, the finite element dynamic time history method is adopted, and the vibration loads are assumed to be simple harmonic loads. The dynamic response of the plant under the four working conditions are calculated, namely the rated operating conditions, two-phase short-circuit condition, half-magnet short-circuit condition and unit out-of-step condition. The calculation results show that under the four vibration response calculation conditions, the structural deformation is concentrated at the loading position of the machine pier. The dynamic displacements of the stator base section and the bottom section of the machine pier are relatively small and relatively evenly distributed. The stress concentration (or larger stress area) mainly occurs in the machine pier, and the dynamic stress in other parts of the plant is small. It is said that the stress concentration in the load application point and its nearby area is obvious. The displacement of the unit structure in all directions, the maximum root mean square velocity and the maximum root mean square acceleration value, and the vibration stress in each direction did not exceed the allowable value. The plant is safe under the vibration load of the unit.
水电站振动荷载作用下厂房动力响应研究
水轮发电机组的振动问题非常复杂。国内外都有发电机组振动引起厂房结构振动,甚至造成结构损坏影响电站正常运行的例子。该水电站为二类工程。为了研究机组在振动荷载作用下厂房的动力响应,采用有限元动力时程法,并假设振动荷载为简谐荷载。计算了机组在额定运行工况、两相短路工况、半磁短路工况和机组失步工况下的动态响应。计算结果表明,在四种振动响应计算条件下,结构变形集中在机墩加载位置。定子基段和机墩底段的动位移比较小,分布比较均匀。应力集中(或较大应力区域)主要发生在机墩处,厂房其他部位动应力较小。在荷载施加点及其附近区域应力集中较为明显。单元结构在各方向上的位移、最大均方根速度和最大均方根加速度值以及各方向上的振动应力均未超过允许值。在机组的振动载荷下,厂房是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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