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首页> 外文期刊>Journal of Physical Oceanography >Pacific Decadal Variability In The View Of Linear Equatorial Wave Theory
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Pacific Decadal Variability In The View Of Linear Equatorial Wave Theory

机译:线性赤道波理论视角下的太平洋年代际变率

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It has recently been proposed, within the framework of the linear shallow-water equations, that tropical Pacific decadal variability (PDV) can be accounted for by basin modes with eigenperiods of 10 to 20 yr, amplifying a midlatitude wind forcing with an essentially white spectrum. Here the authors use a different formalism of linear equatorial wave theory. The Green's function is computed for the wind-forced response of a linear equatorial shallow-water ocean and uses the earlier results of Cane and Moore to obtain a compact, closed form expression for the motion of the equatorial thermocline, which applies to all frequencies lower than seasonal. This expression is new and allows a systematic comparison of the effect of low- and high-latitude winds on the equatorial thermocline. At very low frequencies (decadal time scales), the planetary geostrophic solution used by Cessi and Louazel is recovered, as well as the equatorial wave solution of Liu, and a formal explanation for this convergence is given. Nonetheless, this more general solution leads one to a different interpretation of the results. In contrast to the aforementioned studies, the authors find that the equatorial thermocline is inherently more sensitive to local than to remote wind forcing and that planetary Rossby modes only weakly alter the spectral characteristics of the response. Tropical winds are able to generate a strong equatorial response with periods of 10 to 20 yr, while midlatitude winds can only do so for periods longer than about 50 yr. The results suggest that ocean basin modes are an unlikely explanation of decadal fluctuations in tropical Pacific sea surface temperature.
机译:最近有人提出,在线性浅水方程的框架内,本征周期为10至20年的盆地模式可以解释热带太平洋年代际变化(PDV),从而放大了具有基本白色光谱的中纬度风强迫。 。在这里,作者使用线性赤道波理论的不同形式主义。格林函数是针对线性赤道浅水海洋的风力响应而计算的,并使用Cane和Moore的较早结果为赤道热跃层的运动获得了紧凑的,闭合形式的表达式,该表达式适用于所有较低的频率比季节性。这种表达是新的,可以对低纬度风和高纬度风对赤道高温跃层的影响进行系统的比较。在极低的频率(十年时间尺度)下,Cessi和Louazel使用的行星地转解以及Liu的赤道波解得到了恢复,并给出了对此收敛的正式解释。但是,这种更通用的解决方案导致对结果的不同解释。与上述研究相反,作者发现,赤道温床固有地对局部比对远风强迫更敏感,并且行星式Rossby模式仅微弱地改变了响应的光谱特性。热带风能在10至20年的周期内产生强烈的赤道响应,而中纬度风只能在大约50年以上的周期内产生强烈的赤道响应。结果表明,海盆模式不可能解释热带太平洋海表温度的年代际波动。

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