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Hopf bifurcation and chaos in the solar-forced El Niño /Southern Oscillation recharge oscillator model

Zhang Wu-Fan Zhao Qiang

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Hopf bifurcation and chaos in the solar-forced El Niño /Southern Oscillation recharge oscillator model

Zhang Wu-Fan, Zhao Qiang
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  • A class of solar-forced recharge oscillator model for the El Niño /Southern Oscillation (ENSO) is considered. By transforming the ENSO model equations into the van der Pol-Duffing oscillator with periodic forcing, we obtain the Hopf bifurcation conditions by the harmonic balance method. Numerical simulations also show that the 11-yr solar-cycle forced ENSO system undergoes a transition from the quasi-periodicity route to chaos as the solar-cycle forcing is increased.
    • Funds: Project supported by the National Natural Science Foundation of China (Grant Nos. 40975028 and 41175052).
    [1]

    Philander, S G 1990 El Niño, La Niña, and the Southern Oscillation (London: Academic Press)

    [2]

    Clarke A J 2008 An Introduction to the Dynamics of El Niño and the Southern Oscillation (London: Academic Press)

    [3]

    Sarachik E S and Cane M A 2010 The El Niñ-Southern Oscillation Phenomenon (Cambridge: Cambridge University Press)

    [4]

    McPhaden M J, S E Zebiak, Glantz M H 2006 Science 314 1740

    [5]

    Lin J L 2009 Chin. Ann. Math. 30B 715

    [6]

    Wang C Z 2001 Adv. Atmos. Sci. 18 674

    [7]

    Zhao Q, Liu S K, Liu S D 2012 Acta Phys. Sin. 61 220201 (in Chinese) [赵强, 刘式适, 刘式达 2012 物理学报 61 220201]

    [8]

    Li X J 2010 Chin. Phys. B 19 030201

    [9]

    Wang W, Xu Y, Lu S P 2011 Acta Phys. Sin. 60 030205 (in Chinese) [王雯, 徐燕, 鲁世平 2011 物理学报 60 030205]

    [10]

    Zhang W F, Zhao Q 2013 Chin. Phys. B 22 120201

    [11]

    Zaliapin I, Ghil M 2010 Nonlin. Processes Geophys. 17 123

    [12]

    Tziperman E, Stone L, Cane M, Jarosh H 1994 Science 264 72

    [13]

    Tziperman E, Cane M A, Zebiak S E 1995 J. Atmos. Sci. 50 293

    [14]

    Zhou Q, Chen W, Zhou W 2013 J. Geophys. Res.: Atmospheres 118 5111

    [15]

    Meehl G A, Arblaster J M, Matthes K, Sassi F, Loon H 2009 Science 325 1114

    [16]

    Roy I, Haigh J D 2010 Atmos. Chem. Phys. 10 3147

    [17]

    Haam E, Tung K K 2012 J. Atmos. Sci. 69 2934

    [18]

    Haam E, Tung K K 2013 J. Atmos. Sci. 70 9

    [19]

    White W B, Liu Z 2008 Geophys. Res. Lett. 35 L19607

    [20]

    Saltzman B 2002 Dynamical paleoclimatology: generalized theory of global climate change (international geophysics) (London: Academic Press)

    [21]

    Rial J A, Saha R 2013 Abrupt Climate Change: Mechanisms, Patterns, and Impacts American Geophysical Union, Washington, D.C.

    [22]

    B. De Saedeleer, Crucifix M, Wieczorek S 2013 Climate Dyn. 40 273

    [23]

    Jin F F 1997 J. Atmos. Sci. 54 811

    [24]

    Zhu B Z, Jin F F, Liu Z Y 1991 An Introduction to the nonlinear Dynamics of the atmosphere and ocean (Beijing: Ocean Press) (in Chinese) [朱抱真, 金飞飞, 刘征宇 1991 大气和海洋的非线性动力学概论 (北京: 海洋出版社)]

    [25]

    Hu H Y 2000 Applied Nonlinear Dynamics (Beijing: Aviation Industry Press) (in Chinese) [胡海岩 2000 应用非线性动力学 (北京: 航空工业出版社)]

  • [1]

    Philander, S G 1990 El Niño, La Niña, and the Southern Oscillation (London: Academic Press)

    [2]

    Clarke A J 2008 An Introduction to the Dynamics of El Niño and the Southern Oscillation (London: Academic Press)

    [3]

    Sarachik E S and Cane M A 2010 The El Niñ-Southern Oscillation Phenomenon (Cambridge: Cambridge University Press)

    [4]

    McPhaden M J, S E Zebiak, Glantz M H 2006 Science 314 1740

    [5]

    Lin J L 2009 Chin. Ann. Math. 30B 715

    [6]

    Wang C Z 2001 Adv. Atmos. Sci. 18 674

    [7]

    Zhao Q, Liu S K, Liu S D 2012 Acta Phys. Sin. 61 220201 (in Chinese) [赵强, 刘式适, 刘式达 2012 物理学报 61 220201]

    [8]

    Li X J 2010 Chin. Phys. B 19 030201

    [9]

    Wang W, Xu Y, Lu S P 2011 Acta Phys. Sin. 60 030205 (in Chinese) [王雯, 徐燕, 鲁世平 2011 物理学报 60 030205]

    [10]

    Zhang W F, Zhao Q 2013 Chin. Phys. B 22 120201

    [11]

    Zaliapin I, Ghil M 2010 Nonlin. Processes Geophys. 17 123

    [12]

    Tziperman E, Stone L, Cane M, Jarosh H 1994 Science 264 72

    [13]

    Tziperman E, Cane M A, Zebiak S E 1995 J. Atmos. Sci. 50 293

    [14]

    Zhou Q, Chen W, Zhou W 2013 J. Geophys. Res.: Atmospheres 118 5111

    [15]

    Meehl G A, Arblaster J M, Matthes K, Sassi F, Loon H 2009 Science 325 1114

    [16]

    Roy I, Haigh J D 2010 Atmos. Chem. Phys. 10 3147

    [17]

    Haam E, Tung K K 2012 J. Atmos. Sci. 69 2934

    [18]

    Haam E, Tung K K 2013 J. Atmos. Sci. 70 9

    [19]

    White W B, Liu Z 2008 Geophys. Res. Lett. 35 L19607

    [20]

    Saltzman B 2002 Dynamical paleoclimatology: generalized theory of global climate change (international geophysics) (London: Academic Press)

    [21]

    Rial J A, Saha R 2013 Abrupt Climate Change: Mechanisms, Patterns, and Impacts American Geophysical Union, Washington, D.C.

    [22]

    B. De Saedeleer, Crucifix M, Wieczorek S 2013 Climate Dyn. 40 273

    [23]

    Jin F F 1997 J. Atmos. Sci. 54 811

    [24]

    Zhu B Z, Jin F F, Liu Z Y 1991 An Introduction to the nonlinear Dynamics of the atmosphere and ocean (Beijing: Ocean Press) (in Chinese) [朱抱真, 金飞飞, 刘征宇 1991 大气和海洋的非线性动力学概论 (北京: 海洋出版社)]

    [25]

    Hu H Y 2000 Applied Nonlinear Dynamics (Beijing: Aviation Industry Press) (in Chinese) [胡海岩 2000 应用非线性动力学 (北京: 航空工业出版社)]

Metrics
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  • Cited By: 0
Publishing process
  • Received Date:  15 January 2014
  • Accepted Date:  26 February 2014
  • Published Online:  05 November 2014

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