Skip to main content
Top
Published in: Meccanica 4-5/2017

23-05-2016

Parametric instability analysis of a rotating shaft subjected to a periodic axial force by using discrete singular convolution method

Authors: Zhiwei Song, Zhigang Chen, Wei Li, Yingbin Chai

Published in: Meccanica | Issue 4-5/2017

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Parametric instability problem of a rotating shaft subjected to a periodically varying axial force has been studied by using a numerical simulation method—discrete singular convolution. External viscous damping and internal material damping (Voigt–Kelvin model) have been considered. Parametric instability regions have been presented to illustrate the influence of spinning speed and damping. Numerical results reveal that for rotating shafts with no damping, parametric instability regions under different spinning speeds are ‘V’ shapes, and do not vary obviously with spinning speed increasing. While, for rotating shafts with damping, parametric instability regions are enlarged significantly as spinning speed increases. It may be considered that spinning speed has a great effect on parametric instability of rotating shafts with damping, but little influence on that of rotating shafts with no damping. Moreover, the increase of damping results in reduction of parametric instability regions, which is helpful to improve dynamic stability of systems. And it is also found that effects of internal material damping and external viscous damping on parametric instability regions are similar. Compared to the results by using theoretical methods of Floquet and Bolotin, it is observed that the numerical results support Floquet’s method, disagree with Bolotin’s method for parametrically excited rotating shafts. In consideration of Bolotin’s method leading to enlargement of instability regions, it is strongly recommended that Bolotin’s should not be applied to parametric instability analysis of rotating systems.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Chen LW, Ku DM (1990) Dynamic stability analysis of a rotating shaft by the finite element method. J Sound Vib 143(1):143–151ADSCrossRef Chen LW, Ku DM (1990) Dynamic stability analysis of a rotating shaft by the finite element method. J Sound Vib 143(1):143–151ADSCrossRef
2.
go back to reference Chen LW, Ku DM (1991) Dynamic stability of a rotating shaft embedded in an isotropic Winkler-type foundation. Mech Mach Theory 26(7):687–696CrossRef Chen LW, Ku DM (1991) Dynamic stability of a rotating shaft embedded in an isotropic Winkler-type foundation. Mech Mach Theory 26(7):687–696CrossRef
3.
go back to reference Chen LW, Ku DM (1992) Dynamic stability of a cantilever shaft–disk system. J Vib Acoust Trans ASME 114(3):326–329CrossRef Chen LW, Ku DM (1992) Dynamic stability of a cantilever shaft–disk system. J Vib Acoust Trans ASME 114(3):326–329CrossRef
4.
go back to reference Lee HP (1995) Dynamic stability of spinning pre-twisted beams subject to axial pulsating loads. Comput Methods Appl Mech Eng 127(1–4):115–126ADSCrossRefMATH Lee HP (1995) Dynamic stability of spinning pre-twisted beams subject to axial pulsating loads. Comput Methods Appl Mech Eng 127(1–4):115–126ADSCrossRefMATH
5.
go back to reference Lee HP (1995) Effects of axial base excitations on the dynamic stability of spinning per-twisted cantilever beams. J Sound Vib 185(2):265–278ADSCrossRefMATH Lee HP (1995) Effects of axial base excitations on the dynamic stability of spinning per-twisted cantilever beams. J Sound Vib 185(2):265–278ADSCrossRefMATH
6.
go back to reference Chen LW, Peng WK (1998) Dynamic stability of rotating composite shafts under periodic axial compressive loads. J Sound Vib 212(2):215–230ADSCrossRef Chen LW, Peng WK (1998) Dynamic stability of rotating composite shafts under periodic axial compressive loads. J Sound Vib 212(2):215–230ADSCrossRef
7.
go back to reference Sheu HC, Chen LW (2000) A lumped mass model for parametric instability analysis of cantilever shaft–disk systems. J Sound Vib 234(2):331–348ADSCrossRef Sheu HC, Chen LW (2000) A lumped mass model for parametric instability analysis of cantilever shaft–disk systems. J Sound Vib 234(2):331–348ADSCrossRef
8.
go back to reference Lin CY, Chen LW (2005) Dynamic stability of spinning pre-twisted sandwich beams with a constrained damping layer subjected to periodic axial loads. Compos Struct 70(3):275–286CrossRef Lin CY, Chen LW (2005) Dynamic stability of spinning pre-twisted sandwich beams with a constrained damping layer subjected to periodic axial loads. Compos Struct 70(3):275–286CrossRef
9.
go back to reference Liao CL, Huang BW (1995) Parametric instability of a spinning pretwisted beam under periodic axial force. Int J Mech Sci 37(4):423–439CrossRefMATH Liao CL, Huang BW (1995) Parametric instability of a spinning pretwisted beam under periodic axial force. Int J Mech Sci 37(4):423–439CrossRefMATH
10.
go back to reference Liao CL, Huang BW (1995) Parametric resonance of a spinning pretwisted beam with time-dependent spinning rate. J Sound Vib 180(1):47–65ADSCrossRef Liao CL, Huang BW (1995) Parametric resonance of a spinning pretwisted beam with time-dependent spinning rate. J Sound Vib 180(1):47–65ADSCrossRef
11.
go back to reference Tan TH, Lee HP, Leng GSB (1997) Parametric instability of spinning pretwisted beams subjected to spin speed perturbation. Comput Methods Appl Mech Eng 148(1–2):139–163ADSCrossRefMATH Tan TH, Lee HP, Leng GSB (1997) Parametric instability of spinning pretwisted beams subjected to spin speed perturbation. Comput Methods Appl Mech Eng 148(1–2):139–163ADSCrossRefMATH
12.
go back to reference Tan TH, Lee HP, Leng GSB (1998) Parametric instability of spinning pretwisted beams subjected to sinusoidal compressive axial loads. Comput Struct 66(6):745–764CrossRefMATH Tan TH, Lee HP, Leng GSB (1998) Parametric instability of spinning pretwisted beams subjected to sinusoidal compressive axial loads. Comput Struct 66(6):745–764CrossRefMATH
13.
go back to reference Yoon SJ, Kim JH (2002) A concentrated mass on the spinning unconstrained beam subjected to a thrust. J Sound Vib 254(4):621–634ADSCrossRef Yoon SJ, Kim JH (2002) A concentrated mass on the spinning unconstrained beam subjected to a thrust. J Sound Vib 254(4):621–634ADSCrossRef
14.
go back to reference Young TH, Gau CY (2003) Dynamic stability of spinning pretwisted beams subjected to axial random forces. J Sound Vib 268(1):149–165ADSCrossRef Young TH, Gau CY (2003) Dynamic stability of spinning pretwisted beams subjected to axial random forces. J Sound Vib 268(1):149–165ADSCrossRef
15.
go back to reference Young TH, Gau CY (2003) Dynamic stability of pre-twisted beams with non-constant spin rates under axial random forces. Int J Solids Struct 40(18):4675–4698CrossRefMATH Young TH, Gau CY (2003) Dynamic stability of pre-twisted beams with non-constant spin rates under axial random forces. Int J Solids Struct 40(18):4675–4698CrossRefMATH
16.
go back to reference Pavlović R, Rajković P, Pavlović I (2008) Dynamic stability of the viscoelastic rotating shaft subjected to random excitation. Int J Mech Sci 50(2):359–364CrossRefMATH Pavlović R, Rajković P, Pavlović I (2008) Dynamic stability of the viscoelastic rotating shaft subjected to random excitation. Int J Mech Sci 50(2):359–364CrossRefMATH
17.
go back to reference Pavlović R, Rajković P, Mitić S, Pavlović I (2009) Stochastic stability of a rotating shaft. Arch Appl Mech 79(12):1163–1171CrossRefMATH Pavlović R, Rajković P, Mitić S, Pavlović I (2009) Stochastic stability of a rotating shaft. Arch Appl Mech 79(12):1163–1171CrossRefMATH
18.
go back to reference Pei YC (2009) Stability boundaries of a spinning rotor with parametrically excited gyroscopic system. Eur J Mech A Solids 28(4):891–896CrossRefMATH Pei YC (2009) Stability boundaries of a spinning rotor with parametrically excited gyroscopic system. Eur J Mech A Solids 28(4):891–896CrossRefMATH
19.
go back to reference Chen WR (2010) Parametric instability of spinning twisted Timoshenko beams under compressive axial pulsating loads. Int J Mech Sci 52(9):1167–1175CrossRef Chen WR (2010) Parametric instability of spinning twisted Timoshenko beams under compressive axial pulsating loads. Int J Mech Sci 52(9):1167–1175CrossRef
20.
go back to reference Younesian D, Esmailzadeh E (2010) Nonlinear vibration of variable speed rotating viscoelastic beams. Nonlinear Dyn 60(1–2):193–205CrossRefMATH Younesian D, Esmailzadeh E (2010) Nonlinear vibration of variable speed rotating viscoelastic beams. Nonlinear Dyn 60(1–2):193–205CrossRefMATH
21.
go back to reference Shahgholi M, Khadem SE (2012) Stability analysis of a nonlinear rotating asymmetrical shaft near the resonances. Nonlinear Dyn 70(2):1311–1325MathSciNetCrossRef Shahgholi M, Khadem SE (2012) Stability analysis of a nonlinear rotating asymmetrical shaft near the resonances. Nonlinear Dyn 70(2):1311–1325MathSciNetCrossRef
23.
go back to reference Li W, Song ZW, Gao XX, Chen ZG (2015) Dynamic instability analysis of a rotating ship shaft under a periodic axial force by discrete singular convolution. Shock Vib. doi:10.1155/2015/482607 Li W, Song ZW, Gao XX, Chen ZG (2015) Dynamic instability analysis of a rotating ship shaft under a periodic axial force by discrete singular convolution. Shock Vib. doi:10.​1155/​2015/​482607
24.
go back to reference Bolotin VV (1965) The dynamic stability of elastic systems. Holden-Day Inc, New YorkMATH Bolotin VV (1965) The dynamic stability of elastic systems. Holden-Day Inc, New YorkMATH
26.
go back to reference Iwatsubo T, Sugiyama Y, Ishihara K (1972) Stability and non-stationary vibration of columns under periodic loads. J Sound Vib 23(2):245–257ADSCrossRefMATH Iwatsubo T, Sugiyama Y, Ishihara K (1972) Stability and non-stationary vibration of columns under periodic loads. J Sound Vib 23(2):245–257ADSCrossRefMATH
27.
go back to reference Song ZW, Li W, Liu GR (2012) Stability and non-stationary vibration analysis of beams subjected to periodic axial forces using discrete singular convolution. Struct Eng Mech 44(4):487–499CrossRef Song ZW, Li W, Liu GR (2012) Stability and non-stationary vibration analysis of beams subjected to periodic axial forces using discrete singular convolution. Struct Eng Mech 44(4):487–499CrossRef
29.
go back to reference Song ZW, Chen ZG, Li W, Chai YB (2015) Dynamic stability analysis of beams with shear deformation and rotary inertia subjected to periodic axial forces by using discrete singular convolution method. J Eng Mech. doi:10.1061/(ASCE)EM.1943-7889.0001023 Song ZW, Chen ZG, Li W, Chai YB (2015) Dynamic stability analysis of beams with shear deformation and rotary inertia subjected to periodic axial forces by using discrete singular convolution method. J Eng Mech. doi:10.​1061/​(ASCE)EM.​1943-7889.​0001023
30.
go back to reference Wei GW (1999) Discrete singular convolution for the solution of the Fokker–Planck equations. J Chem Phys 110(18):8930–8942ADSCrossRef Wei GW (1999) Discrete singular convolution for the solution of the Fokker–Planck equations. J Chem Phys 110(18):8930–8942ADSCrossRef
32.
go back to reference Feng BF, Wei GW (2002) A comparison of the spectral and the discrete singular convolution schemes for the KdV-type equations. J Comput Appl Math 145(1):183–188ADSMathSciNetCrossRefMATH Feng BF, Wei GW (2002) A comparison of the spectral and the discrete singular convolution schemes for the KdV-type equations. J Comput Appl Math 145(1):183–188ADSMathSciNetCrossRefMATH
33.
go back to reference Yang SY, Zhou YC, Wei GW (2002) Comparison of the discrete singular convolution algorithm and the Fourier pseudospectral method for solving partial differential equations. Comput Phys Commun 143(2):113–135ADSMathSciNetCrossRefMATH Yang SY, Zhou YC, Wei GW (2002) Comparison of the discrete singular convolution algorithm and the Fourier pseudospectral method for solving partial differential equations. Comput Phys Commun 143(2):113–135ADSMathSciNetCrossRefMATH
34.
go back to reference Ng CHW, Zhao YB, Wei GW (2004) Comparison of discrete singular convolution and generalized differential quadrature for the vibration analysis of rectangular plates. Comput Methods Appl Mech Eng 193(23–26):2483–2506ADSCrossRefMATH Ng CHW, Zhao YB, Wei GW (2004) Comparison of discrete singular convolution and generalized differential quadrature for the vibration analysis of rectangular plates. Comput Methods Appl Mech Eng 193(23–26):2483–2506ADSCrossRefMATH
35.
go back to reference Du H, Lim MK, Lin RM (1994) Application of generalized differential quadrature method to structure problems. Int J Numer Methods Eng 37(11):1881–1896CrossRefMATH Du H, Lim MK, Lin RM (1994) Application of generalized differential quadrature method to structure problems. Int J Numer Methods Eng 37(11):1881–1896CrossRefMATH
36.
go back to reference Zienkiewicz OC, Taylor RL (1989) The finite element method, vol 1. McGraw-Hill, New YorkMATH Zienkiewicz OC, Taylor RL (1989) The finite element method, vol 1. McGraw-Hill, New YorkMATH
37.
go back to reference Wei GW, Zhao YB, Xiang Y (2002) A novel approach for the analysis of high-frequency vibrations. J Sound Vib 257(2):207–246ADSCrossRef Wei GW, Zhao YB, Xiang Y (2002) A novel approach for the analysis of high-frequency vibrations. J Sound Vib 257(2):207–246ADSCrossRef
38.
go back to reference Zhao YB, Wei GW, Xiang Y (2002) Discrete singular convolution for the prediction of high frequency vibration of plates. Int J Solids Struct 39(1):65–88CrossRefMATH Zhao YB, Wei GW, Xiang Y (2002) Discrete singular convolution for the prediction of high frequency vibration of plates. Int J Solids Struct 39(1):65–88CrossRefMATH
40.
go back to reference Wei GW (2001) Discrete singular convolution for beam analysis. Eng Struct 23(9):1045–1053CrossRef Wei GW (2001) Discrete singular convolution for beam analysis. Eng Struct 23(9):1045–1053CrossRef
41.
go back to reference Zhao S, Wei GW, Xiang Y (2005) DSC analysis of free-edged beams by an iteratively matched boundary method. J Sound Vib 284(1–2):487–493ADSCrossRefMATH Zhao S, Wei GW, Xiang Y (2005) DSC analysis of free-edged beams by an iteratively matched boundary method. J Sound Vib 284(1–2):487–493ADSCrossRefMATH
43.
go back to reference Wei GW, Zhao YB, Xiang Y (2001) The determination of natural frequencies of rectangular plates with mixed boundary conditions by discrete singular convolution. Int J Mech Sci 43(8):1731–1746CrossRefMATH Wei GW, Zhao YB, Xiang Y (2001) The determination of natural frequencies of rectangular plates with mixed boundary conditions by discrete singular convolution. Int J Mech Sci 43(8):1731–1746CrossRefMATH
44.
go back to reference Zhao YB, Wei GW (2002) DSC analysis of rectangular plates with non-uniform boundary conditions. J Sound Vib 255(2):203–228ADSCrossRef Zhao YB, Wei GW (2002) DSC analysis of rectangular plates with non-uniform boundary conditions. J Sound Vib 255(2):203–228ADSCrossRef
45.
go back to reference Wei GW, Zhao YB, Xiang Y (2002) Discrete singular convolution and its application to the analysis of plates with internal supports. Part 1: theory and algorithm. Int J Numer Methods Eng 55(8):913–946CrossRefMATH Wei GW, Zhao YB, Xiang Y (2002) Discrete singular convolution and its application to the analysis of plates with internal supports. Part 1: theory and algorithm. Int J Numer Methods Eng 55(8):913–946CrossRefMATH
46.
go back to reference Xiang Y, Zhao YB, Wei GW (2002) Discrete singular convolution and its application to the analysis of plates with internal supports. Part 2: applications. Int J Numer Methods Eng 55(8):947–971CrossRefMATH Xiang Y, Zhao YB, Wei GW (2002) Discrete singular convolution and its application to the analysis of plates with internal supports. Part 2: applications. Int J Numer Methods Eng 55(8):947–971CrossRefMATH
47.
go back to reference Zhao YB, Wei GW, Xiang Y (2002) Plate vibration under irregular internal supports. Int J Solids Struct 39(5):1361–1383CrossRefMATH Zhao YB, Wei GW, Xiang Y (2002) Plate vibration under irregular internal supports. Int J Solids Struct 39(5):1361–1383CrossRefMATH
48.
go back to reference Yu SN, Xiang Y, Wei GW (2009) Matched interface and boundary (MIB) method for the vibration analysis of plates. Commun Numer Methods Eng 25(9):923–950MathSciNetCrossRefMATH Yu SN, Xiang Y, Wei GW (2009) Matched interface and boundary (MIB) method for the vibration analysis of plates. Commun Numer Methods Eng 25(9):923–950MathSciNetCrossRefMATH
49.
go back to reference Civalek Ö (2007) Three-dimensional vibration, buckling and bending analyses of thick rectangular plates based on discrete singular convolution method. Int J Mech Sci 49(6):752–765CrossRef Civalek Ö (2007) Three-dimensional vibration, buckling and bending analyses of thick rectangular plates based on discrete singular convolution method. Int J Mech Sci 49(6):752–765CrossRef
50.
go back to reference Civalek Ö (2009) Fundamental frequency of isotropic and orthotropic rectangular plates with linearly varying thickness by discrete singular convolution method. Appl Math Model 33(10):3825–3835MathSciNetCrossRefMATH Civalek Ö (2009) Fundamental frequency of isotropic and orthotropic rectangular plates with linearly varying thickness by discrete singular convolution method. Appl Math Model 33(10):3825–3835MathSciNetCrossRefMATH
51.
go back to reference Civalek Ö (2008) Free vibration analysis of symmetrically laminated composite plates with first-order shear deformation theory (FSDT) by discrete singular convolution method. Finite Elem Anal Des 44:725–731CrossRef Civalek Ö (2008) Free vibration analysis of symmetrically laminated composite plates with first-order shear deformation theory (FSDT) by discrete singular convolution method. Finite Elem Anal Des 44:725–731CrossRef
52.
go back to reference Civalek Ö (2006) An efficient method for free vibration analysis of rotating truncated conical shells. Int J Press Vessels Pip 83(1):1–12CrossRef Civalek Ö (2006) An efficient method for free vibration analysis of rotating truncated conical shells. Int J Press Vessels Pip 83(1):1–12CrossRef
53.
go back to reference Civalek Ö (2007) A parametric study of the free vibration analysis of rotating laminated cylindrical shells using the method of discrete singular convolution. Thin Walled Struct 45(7–8):692–698CrossRef Civalek Ö (2007) A parametric study of the free vibration analysis of rotating laminated cylindrical shells using the method of discrete singular convolution. Thin Walled Struct 45(7–8):692–698CrossRef
54.
go back to reference Civalek Ö (2007) Numerical analysis of free vibrations of laminated composite conical and cylindrical shells: discrete singular convolution (DSC) approach. J Comput Appl Math 205(1):251–271ADSMathSciNetCrossRefMATH Civalek Ö (2007) Numerical analysis of free vibrations of laminated composite conical and cylindrical shells: discrete singular convolution (DSC) approach. J Comput Appl Math 205(1):251–271ADSMathSciNetCrossRefMATH
55.
go back to reference Civalek Ö (2013) Vibration analysis of laminated composite conical shells by the method of discrete singular convolution based on the shear deformation theory. Compos B Eng 45:1001–1009CrossRef Civalek Ö (2013) Vibration analysis of laminated composite conical shells by the method of discrete singular convolution based on the shear deformation theory. Compos B Eng 45:1001–1009CrossRef
56.
go back to reference Wang XW, Xu SM (2010) Free vibration analysis of beams and rectangular plates with free edges by the discrete singular convolution. J Sound Vib 329(10):1780–1792ADSCrossRef Wang XW, Xu SM (2010) Free vibration analysis of beams and rectangular plates with free edges by the discrete singular convolution. J Sound Vib 329(10):1780–1792ADSCrossRef
57.
go back to reference Xu SM, Wang XW (2011) Free vibration analyses of Timoshenko beams with free edges by using the discrete singular convolution. Adv Eng Softw 42(10):797–806CrossRefMATH Xu SM, Wang XW (2011) Free vibration analyses of Timoshenko beams with free edges by using the discrete singular convolution. Adv Eng Softw 42(10):797–806CrossRefMATH
58.
go back to reference Zhu Q, Wang XW (2011) Free vibration analysis of thin isotropic and anisotropic rectangular plates by the discrete singular convolution algorithm. Int J Numer Methods Eng 86(6):782–800MathSciNetCrossRefMATH Zhu Q, Wang XW (2011) Free vibration analysis of thin isotropic and anisotropic rectangular plates by the discrete singular convolution algorithm. Int J Numer Methods Eng 86(6):782–800MathSciNetCrossRefMATH
59.
go back to reference Duan GH, Wang XW (2013) Free vibration analysis of multiple-stepped beams by the discrete singular convolution. Appl Math Comput 219(24):11096–11109MathSciNetMATH Duan GH, Wang XW (2013) Free vibration analysis of multiple-stepped beams by the discrete singular convolution. Appl Math Comput 219(24):11096–11109MathSciNetMATH
60.
go back to reference Duan GH, Wang XW (2014) Vibration analysis of stepped rectangular plates by the discrete singular convolution algorithm. Int J Mech Sci 82:100–109CrossRef Duan GH, Wang XW (2014) Vibration analysis of stepped rectangular plates by the discrete singular convolution algorithm. Int J Mech Sci 82:100–109CrossRef
61.
go back to reference Lim CW, Li ZR, Wei GW (2005) DSC-Ritz method for high-mode frequency analysis of thick shallow shells. Int J Numer Methods Eng 62(2):205–232ADSCrossRefMATH Lim CW, Li ZR, Wei GW (2005) DSC-Ritz method for high-mode frequency analysis of thick shallow shells. Int J Numer Methods Eng 62(2):205–232ADSCrossRefMATH
62.
go back to reference Hou Y, Wei GW, Xiang Y (2005) DSC-Ritz method for the free vibration analysis of Mindlin plates. Int J Numer Methods Eng 62(2):262–288CrossRefMATH Hou Y, Wei GW, Xiang Y (2005) DSC-Ritz method for the free vibration analysis of Mindlin plates. Int J Numer Methods Eng 62(2):262–288CrossRefMATH
63.
go back to reference Xiang Y, Lai SK, Zhou L (2010) DSC-element method for free vibration analysis of rectangular Mindlin plates. Int J Mech Sci 52(4):548–560CrossRef Xiang Y, Lai SK, Zhou L (2010) DSC-element method for free vibration analysis of rectangular Mindlin plates. Int J Mech Sci 52(4):548–560CrossRef
64.
go back to reference Wan DC, Wei GW (2000) The Study of quasi-wavelets based numerical method applied to Burgers’ equations. Appl Math Mech Engl Ed 21(10):1099–1110MathSciNetCrossRefMATH Wan DC, Wei GW (2000) The Study of quasi-wavelets based numerical method applied to Burgers’ equations. Appl Math Mech Engl Ed 21(10):1099–1110MathSciNetCrossRefMATH
65.
go back to reference Xiong W, Zhao YB, Gu Y (2003) Parameter optimization in the regularized Shannon’s kernels of higher-order discrete singular convolutions. Commum Numer Methods Eng 19(5):377–386CrossRefMATH Xiong W, Zhao YB, Gu Y (2003) Parameter optimization in the regularized Shannon’s kernels of higher-order discrete singular convolutions. Commum Numer Methods Eng 19(5):377–386CrossRefMATH
Metadata
Title
Parametric instability analysis of a rotating shaft subjected to a periodic axial force by using discrete singular convolution method
Authors
Zhiwei Song
Zhigang Chen
Wei Li
Yingbin Chai
Publication date
23-05-2016
Publisher
Springer Netherlands
Published in
Meccanica / Issue 4-5/2017
Print ISSN: 0025-6455
Electronic ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-016-0457-4

Other articles of this Issue 4-5/2017

Meccanica 4-5/2017 Go to the issue

Premium Partners