Influence of boundary conditions on Coriolis flow meter measurement

被引:0
|
作者
Kassubek, F [1 ]
Gebhardt, J [1 ]
Friedrichs, R [1 ]
Keller, S [1 ]
机构
[1] ABB Schweiz AG, Corp Res, CH-5405 Daetwil, Switzerland
来源
关键词
D O I
暂无
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
A Coriolis flowmeter can be described by one-dimensional differential equations with appropriate boundary conditions (e.g. Bernoulli's beam theory for bending). As the dependence of the properties of the eigenmodes from the boundary conditions is critical for the performance of a flowmeter, its understanding is important for the development of better devices. In this paper we study how changes in the boundary conditions of ordinary differential equations can be treated with perturbation theory. We describe three perturbative theories allowing to predict effects of boundary perturbation: (i) a direct series expansion using boundary integrals, (ii) a series expansion in the boundary conditions, and (iii) an expansion in the old eigenfunctions. As the described methods are completely general, their application in similar fields is possible.
引用
收藏
页码:281 / 288
页数:8
相关论文
共 50 条
  • [41] Influence of the boundary conditions on aorta blood flow simulations
    Cao, Xinrong
    Wang, Jie
    Wang, Rongpin
    Zhang, Xianwen
    Tang, Jintian
    Qinghua Daxue Xuebao/Journal of Tsinghua University, 2014, 54 (06): : 700 - 705
  • [42] Influence of Boundary Conditions on Fluid Flow on Hydrophobic Surfaces
    Simona, Fialova
    Frantisek, Pochyly
    Michal, Havlasek
    Jiri, Malik
    36TH MEETING OF DEPARTMENTS OF FLUID MECHANICS AND THERMODYNAMICS, 2017, 1889
  • [43] Experimental study on dynamic performance of coriolis mass flow meter and compensation technology
    Dezhi Zheng
    Qiong Nan
    Jiying Shi
    Shangchun Fan
    Instruments and Experimental Techniques, 2012, 55 : 503 - 507
  • [44] Failure analysis of a titanium Coriolis mass flow meter: A case of hydrogen embrittlement
    Santos, I. G. R.
    Vacchi, G. S.
    Silva, R.
    Kugelmeier, C. L.
    Magalhaes, D. C. C.
    Campesan, G. R.
    Rovere, C. A. D.
    ENGINEERING FAILURE ANALYSIS, 2020, 115
  • [45] The performance characteristics of a micro-machined Coriolis flow meter: An evaluation by simulation
    Clark, C.
    Wang, S.
    Cheesewright, R.
    FLOW MEASUREMENT AND INSTRUMENTATION, 2006, 17 (06) : 325 - 333
  • [46] The dynamic performance of a new ultra-fast response Coriolis flow meter
    Clark, C.
    Zamora, M.
    Cheesewright, R.
    Henry, M.
    FLOW MEASUREMENT AND INSTRUMENTATION, 2006, 17 (06) : 391 - 398
  • [47] Bunkering of marine fuel using the coriolis mass flow meter (Mfm) system
    Bunkering of marine fuel using the coriolis mass flow meter (Mfm) system, 2021, : 1 - 49
  • [48] A self-validating digital Coriolis mass-flow meter: an overview
    Henry, MP
    Clarke, DW
    Archer, N
    Bowles, J
    Leahy, MJ
    Liu, RP
    Vignos, J
    Zhou, FB
    CONTROL ENGINEERING PRACTICE, 2000, 8 (05) : 487 - 506
  • [49] Compact Micro-Coriolis Mass-Flow Meter with Optical Readout
    Yariesbouei, Mahdieh
    Sanders, Remco G. P.
    Wiegerink, Remco J.
    Lotters, Joost C.
    MICROMACHINES, 2024, 15 (01)
  • [50] Experimental study on dynamic performance of coriolis mass flow meter and compensation technology
    Zheng, Dezhi
    Nan, Qiong
    Shi, Jiying
    Fan, Shangchun
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2012, 55 (04) : 503 - 507