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骆海英, 段晚锁, 穆穆. 赤道高频纬向风强迫对ENSO事件强度的影响[J]. 气候与环境研究, 2009, 14(5): 465-474. DOI: 10.3878/j.issn.1006-9585.2009.05.02
引用本文: 骆海英, 段晚锁, 穆穆. 赤道高频纬向风强迫对ENSO事件强度的影响[J]. 气候与环境研究, 2009, 14(5): 465-474. DOI: 10.3878/j.issn.1006-9585.2009.05.02
LUO Haiying, . The Effect of Equatorial HighFrequency Zonal WindForcing on ENSO Amplitude[J]. Climatic and Environmental Research, 2009, 14(5): 465-474. DOI: 10.3878/j.issn.1006-9585.2009.05.02
Citation: LUO Haiying, . The Effect of Equatorial HighFrequency Zonal WindForcing on ENSO Amplitude[J]. Climatic and Environmental Research, 2009, 14(5): 465-474. DOI: 10.3878/j.issn.1006-9585.2009.05.02

赤道高频纬向风强迫对ENSO事件强度的影响

The Effect of Equatorial HighFrequency Zonal WindForcing on ENSO Amplitude

  • 摘要: ENSO强度的影响因子是一个具有争议性的问题。作者探讨了一种理想的赤道高频纬向风强迫对ENSO强度的影响。将该问题转化为一类关于模式参数扰动的非线性最优化问题;基于所用的理论ENSO模式,研究了赤道高频纬向风强迫在调制ENSO强度中的角色。结果表明,对于El Nino和La Nina事件,存在两类外强迫,一类促进El Nino事件的发展却抑制 La Nina事件的发展,另一类则抑制El Nno而促进 La Nina事件的发展。这两类外强迫的主要区别在于初始相位的不同。相位决定了外强迫对ENSO事件是促进的还是抑制的,而外强迫的振幅和周期则决定了外强迫影响ENSO强度的大小。这些外强迫主要是通过海洋波动对斜温层深度的调节来影响ENSO事件的强度的。

     

    Abstract: What controls ENSO amplitude remains controversial. The authors explore the effect of a kind of idealized equatorial highfrequency zonal wind forcing on ENSO amplitude. This problem is first transformed into a nonlinear optimization problem related to model parameters. Based on a theoretical ENSO model, the role of highfrequency zonal wind forcing in modulating ENSO amplitude is explored. The results show that there are two kinds of highfrequency zonal wind forcings for ENSO events, where the differences lie in the amplitude of the forcing, the period, and the phase. These differences make one kind of forcing enhance the El Nino event, but suppress the La Nina event,while the other kind suppresses the El Nino event and enhances the La Nina event. The further analysis shows that the phase of the highfrequency zonal wind forcing determines the forcing whether enhances ENSO events or suppresses them, while the amplitude and period of the forcing control the degree of its effect on ENSO intensity. Both of these two types of forcings affect ENSO amplitude mainly by the adjustment of oceanic wave on the thermocline.

     

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