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Impacts of SST and SST anomalies on low-frequency oscillation in the tropical atmosphere

机译:SST和SST异常对热带大气低频振荡的影响

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摘要

Considering the multiscale character of LFO (low-frequency oscillation) in the tropical atmosphere, the effects of SST on LFO in the tropical atmosphere are discussed by using an absolute ageostrophic, baroclinic model. Here, SST effects include sea surface heating and forcing of SST anomalies (SSTAs). Studies of the influences of sea surface heating on LFO frequency and stability show that sea surface heating can slow the speed of waves and lower their frequency when SST is comparatively low; while higher SST leads to unstable waves and less periods of LFO. Since the impact of a SSTA on ultra-long waves is more evident than that on kilometer-scale waves, long-wave approximation is used when we continue to study the effect of SSTAs. Results indicate that SSTAs can lead to a longer period of LFO, and make waves unstable. In other words, positive (negative) SSTAs can make waves decay (grow).
机译:考虑到热带大气中LFO(低频振荡)的多尺度特征,使用绝对年龄营养,斜压模型讨论了SST对热带大气中LFO的影响。这里,SST效应包括海面加热和SST异常(SSTA)的强迫。海面加热对低频振荡频率和稳定性的影响研究表明,当海面温度较低时,海面加热会减慢海浪的速度并降低其频率。而较高的SST会导致不稳定的波动和较短的LFO周期。由于SSTA对超长波的影响比对千米长波的影响更明显,因此当我们继续研究SSTA的影响时,将使用长波近似。结果表明,SSTA可以导致更长的LFO周期,并使波不稳定。换句话说,正(负)SSTA会使波衰减(增长)。

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