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U形管固有频率的有限元计算方法 被引量:2

Finite Element Method for Calculation of Natural Frequency of U-tube
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摘要 对采用ANSYS有限元软件计算U形管固有频率的方法进行了详细的介绍,并将计算结果同实验数据和工程常用简化方法进行了比较,得出了如下结论:有限元计算方法更为精确;Moretti-Nguyen三跨简支子系统计算方法与TEMA方法同有限元计算方法相差较大,全系统的方法同有限元计算最为接近;当R/l较小时,端跨长度变化对U形管固有频率可能产生很大影响,在一定的参数范围内可近似地按多跨直管对U形管进行近似。 In this paper, the finite element calculation method for natural frequency of U-tube using ANSYS software was introduced in detail. The results were compared with that from experiments and that from simplified method which is commonly used in engineering. The conclusions were as follow: the finite element method is more accurate than simplified methods; there are significant differences between the results from Moretti-Nguyen's three-span subsystem method or TEMA's method and that from finite element method, and the results from full system method shows most identical to that from finite element method; the changes in ends length may cause significant influence on natural frequency when the parameter R/I is relatively small, and U-tube system can be calculate approximately by using multi-span straight tube system within some parameter scope.
出处 《化工设备与管道》 CAS 2012年第3期34-38,共5页 Process Equipment & Piping
基金 长江学者和创新团队发展计划(IRT0936)
关键词 有限元方法 模态分析 U形管 固有频率 Finite element method Modal analysis U-tube Natural frequency
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参考文献8

  • 1P M Moretti. Fundamental Frequencies of U-Tubes in Tube Bundles[J]. ASME Journal of Pressure Vessel Technology, 1985, 103: 207-210.
  • 2D.C.Nguyen, T.Lester, J.K.Good, et al. Lowest Natural Frequencies of Multiply Stlpported U-Tubes[J]. ASME, Journal of Pressure Vessel Technology, 1984, 106: 414-417.
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二级参考文献10

  • 1聂清德,段振亚,谭蔚,胡玲玲.关于TEMA标准《流体诱发振动》若干问题的讨论(一)[J].压力容器,2004,21(11):1-4. 被引量:8
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  • 10聂清德,谭蔚,吴皓.多跨U形管固有频率的计算[J].压力容器,2011,28(9):15-21. 被引量:8

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二级引证文献8

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