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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Equatorial superrotation in Held and Suarez like flows with weak equator-to-pole surface temperature gradient
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Equatorial superrotation in Held and Suarez like flows with weak equator-to-pole surface temperature gradient

机译:赤道至极地表面温度梯度较弱的Held和Suarez样流中的赤道超旋转

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摘要

Equatorial superrotation under zonally symmetric thermal forcing is investigated in a set-up close to that of the classic Held and Suarez set-up. In contrast to the behaviour in the classic set-up, a transition to equatorial superrotation occurs when the equator-to-pole surface equilibrium entropy gradient is weakened. Two factors contribute to this transition: (i) the reduction of breaking Rossby waves from the midlatitudes that decelerate the equatorial flow and (ii) the presence of barotropic instability in the equatorial region, providing stirring to accelerate the equatorial flow. In the latter, Kelvin waves excited by instability near the Equator generate and maintain the superrotation. However, the superrotation is unphysically enhanced if simulations are underresolved and/or overdissipated.
机译:在接近经典Held和Suarez设置的设置中研究了区域对称热强迫下的赤道超旋转。与经典设置中的行为相反,当赤道至极点表面平衡熵梯度变弱时,会发生向赤道超旋转的过渡。造成这一转变的因素有两个:(i)中纬度的断层Rossby波减少,从而使赤道水流减速;(ii)赤道地区存在正压不稳定性,为加速赤道流提供了动力。在后者中,由赤道附近的不稳定性激发的开尔文波产生并维持超旋转。但是,如果模拟的解析度不足和/或耗散过多,则超旋转会自然地增强。

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