首页 | 本学科首页   官方微博 | 高级检索  
     检索      

圆柱形消化池模态分析简化计算
引用本文:管晔,姜忻良,刘传卿.圆柱形消化池模态分析简化计算[J].天津大学学报(自然科学与工程技术版),2009,42(8):678-682.
作者姓名:管晔  姜忻良  刘传卿
作者单位:天津大学建筑工程学院,天津,300072 
摘    要:为求解圆柱形消化池在有液状态下的自振频率,并找出不同储液量下消化池自振频率的变化规律,采用大型通用有限元软件ANSYS建立参数化的圆柱形消化池有限元模型,将池内液体在动力作用下产生的动液压力等效为与结构物具有相同加速度的附加质量,并通过对储液罐的对比计算证明此方法的正确性.结果表明,在有液体的状态下,液体的存在会使消化池自振频率降低,且在满池状态下,液体对低阶频率的影响大于对高阶频率的影响.因此,当圆柱形消化池储液量不超过池体容积的一半时,可近似按空池状态计算;当储液量超过池体容积的一半时,需考虑液体振动对消化池振动频率的影响,

关 键 词:圆柱形消化池  动液压力  附加质量  自振频率  储液量

Simplified Modal Analysis of Cylindrical Sludge Digester
GUAN Ye,JIANG Xin-liang,LIU Chuan-qing.Simplified Modal Analysis of Cylindrical Sludge Digester[J].Journal of Tianjin University(Science and Technology),2009,42(8):678-682.
Authors:GUAN Ye  JIANG Xin-liang  LIU Chuan-qing
Institution:(School of Civil Engineering ,Tianjin University ,Tianjin,300072 ,China)
Abstract:In order to calculate the natural frequency of cylindrical sludge digester with liguid and to find out the regularity of natural frequency change with different heights of sewage,the finite element software ANSYS was applied to build the finite element model of a parameterized cylindrical sludge digester. The hydrodynamic pressure caused by the dynamic load of the liquid in sludge was equated with the added-mass that had the same acceleration as the structure. Compared with the result of a liquid storage tank,the method was proved to be correct. Numerical results show that the liquid in the digester decreases the natural frequency,and that when the digester is full of liquid, the effect on the low frequency is stronger than that on the high frequency. Therefore, if the sewage quantity is no more than half of the digester, the frequency can be calculated approximately in terms of an empty digester. If the sewage quantity is more than half of the digester,the effect of the liquid vibration on digester should be taken into consideration.
Keywords:cylindrical sludge digester  hydrodynamic pressure  added-mass  natural frequency  sewage quantity
本文献已被 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号