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基于底载分配的大型结构件调频方法研究及运用

王九龙 王琇峰 史庆峰 和丹 司先国 张兴田

中国电力2017,Vol.50Issue(11):33-38,6.
中国电力2017,Vol.50Issue(11):33-38,6.DOI:10.11930/j.issn.1004-9649.201

基于底载分配的大型结构件调频方法研究及运用

Study and Application of Frequency Adjustment on Large Scale Structure Based on Bottom Load Redistribution

王九龙 1王琇峰 1史庆峰 2和丹 1司先国 2张兴田2

作者信息

  • 1. 西安交通大学机械工程学院,陕西西安710049
  • 2. 中核核电运行管理有限公司,浙江嘉兴314300
  • 折叠

摘要

Abstract

Structural resonance is one of the common fault types that may induce the large scale structure vibration.Generally,the problem is solved by improving the structure to adjust its own natural frequencies.Due to the difficulty of structural modification,the damping scheme is often used to suppress the vibration.Unfortunately,the resonance property still remains unchanged.In this paper,a new technical thought is proposed,which can change the natural frequencies of the structure by virtue of bottom load adjustment without any structural alteration or extra damping addition.By using the finite element method,the generator model is established and both the static and the modal analyses are carried out.The impacts of different bottom load distribution on the nature frequencies are calculated.Then,the experimental test is conducted.With the stepped gaskets adjusted to change the bottom load distribution,the natural frequencies are obtained through vibration modal testing.Both the theoretical analysis and the experimental results indicate that by altering the bottom load distribution the natural frequencies can be adjusted effectively and kept away from the working frequency such that structural resonance is avoided.This method has been applied for the generator of Qinshan No.2 Nuclear Power Plant,where the problem of structural resonance is successfully solved.

关键词

发电机/振动/结构/有限元/底载分配/固有频率

Key words

generator/vibration/structure/finite element/bottom load distribution/nature frequency

分类

信息技术与安全科学

引用本文复制引用

王九龙,王琇峰,史庆峰,和丹,司先国,张兴田..基于底载分配的大型结构件调频方法研究及运用[J].中国电力,2017,50(11):33-38,6.

基金项目

国家科技重大专项(2014ZX04001051) (2014ZX04001051)

国家自然科学基金资助项目(51421004)This work is supported by National Science and Technology Major Projects (No.2014ZX04001051) and National Natural Science Foundation of China (No.51421004). (51421004)

中国电力

OA北大核心CSCDCSTPCD

1004-9649

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