谐响应分析和时程分析是研究水电站厂房结构在脉动压力作用下的振动响应时最常用的2种方法。为分析2种方法的差异性,采用谐响应分析法和时程分析法计算了同一抽水蓄能电站厂房结构在脉动压力作用下的振动响应。对2种方法计算的厂房结构振幅、振动速度、振动加速度和动应力进行对比分析,从而分析2种计算方法的差异性。结果表明:采用谐响应分析法计算的振幅、振动速度和振动加速度的均方根值大于时程分析的计算结果,但峰值小于时程分析的计算结果;厂房结构动应力数值不大,两者的计算结果差别不大。能够获得脉动压力时程资料时,应尽量采用时程分析法计算动力响应;缺乏脉动压力时程资料时,谐响应法也可用来分析动力响应。
Abstract
Harmonic response analysis and time history analysis are both most commonly used to analyze the vibration responses of powerhouse structure. In order to analyze the differences between these two methods, we calculated the vibration responses of powerhouse structure of a pumped storage station under pressure fluctuations using the two methods. By comparing the vibration amplitude, vibration speed, vibration acceleration and dynamic stresses of powerhouse structure, we obtained the differences between these two methods. Results suggest that the root mean square values of vibration amplitude, vibration speed and acceleration calculated by harmonic response analysis are bigger and peak values are smaller than those calculated by time history analysis. The dynamic stress of powerhouse structure calculated by the two methods are both small and the difference between the results is also small. When the time-history data of pressure fluctuation is available, time history analysis method is preferable; if not, harmonic method can also be used to analyse the dynamic responses of powerhouse structure.
关键词
谐响应分析 /
时程分析 /
脉动压力 /
水电站厂房 /
动力响应
Key words
harmonic response analysis /
time history analysis /
pressure fluctuation /
powerhouse structure /
dynamic response
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参考文献
[1] 柴 山,吕凤军,孙义冈,等.计算汽轮机叶片动应力的谐响应分析法[J].汽轮机技术,2002,44(5):267-268,281.(CHAI Shan, LV Feng-jun, SUN Yi-gang, et al. Computation for Dynamic Stress of Steam Turbine Blade by Using the Method of Harmonic Response Analysis[J]. Turbine Technology, 2002, 44(5): 267-268, 281. (in Chinese))
[2] 陈 婧,马震岳,刘志明,等.三峡水电站主厂房振动分析[J].水力发电学报,2004,23(5): 36-39.(CHEN Jing, MA Zhen-yue, LIU Zhi-ming, et al. Dynamic Analysis of Three Gorges Hydropower House[J]. Journal of Hydroelectric Engineering,2004,23(5):36-39.(in Chinese))
[3] 田少强,潘 虹.轴流泵装置模型试验压力脉动特性研究[J].四川水力发电,2010,29(5):116-120.(TIAN Shao-qiang, PAN Hong. Research of Pressure Fluctuation Characteristics of Model Test of Axial Flow Pump[J]. Sichuan Water Power, 2010, 29(5): 116-120. (in Chinese))
[4] 欧阳金惠,陈厚群,李德玉.三峡电站厂房结构振动计算与试验研究[J].水利学报,2005,36(4):484-490.(OUYANG Jin-hui, CHEN Hou-qun, LI De-yu. Computation of Vibration in Powerhouse of Three Gorges Project and Prototype Verification[J]. Journal of Hydraulic Engineering, 2005, 36(4): 484-490.(in Chinese))
[5] 陈 婧,马震岳,戚海峰,等.宜兴抽水蓄能电站地下厂房结构振动响应分析[J].水电能源科学,2009,27(3):81-83,99.(CHEN Jing, MA Zhen-yue, QI Hai-feng, et al. Analysis on Vibration Responses of Underground Powerhouse Structure of Yixing Pumped Storage Station[J]. Water Resources and Power, 2009, 27(3):81-83,99. (in Chinese))
基金
国家自然科学基金资助项目(51179141)