论文标题

土星气氛的全球气候建模。第四部分:平流层赤道振荡

Global climate modeling of Saturn's atmosphere. Part IV: stratospheric equatorial oscillation

论文作者

Bardet, Deborah, Spiga, Aymeric, Guerlet, Sandrine, Cabanes, Simon, Millour, Ehouarn, Boissinot, Alexandre

论文摘要

卡西尼板上的复合红外光谱仪(CIRS)显示了平流层温度的赤道振荡,让人联想到地球的准双年生振荡(QBO),以及在土星环下方异常高温。为了更好地了解平流层土星大气循环的这些主要特征,我们已经扩展到更高的高度,即动态恐怖的全球气候模型(GCM),该模型已经在先前的出版物中用于研究对流层动力学,喷气机的形成和行星尺度波活性。首先,我们研究了较高的模型最高影响对流层区域喷气机和动能分布。提高模型顶部可以防止在对流层顶水平上的能量和腹部积累。带有1/2 $^{\ Circ} $纬度/经度分辨率和升高模型顶部的参考GCM模拟表现出由分辨率的行星尺度波产生的QBO样振荡。但是,这个时期比观测更为不规则,并且向下传播更快。此外,与CIRS观察检索相比,建模的QBO样振荡将赤道温度异常的振幅和该赤道振荡的垂直特性长度均降低了一半。这种类似QBO的振荡主要由向西传播的波浪驱动。向东的显着缺乏解释了QBO样振荡的向东波动。在20 $^{\ circ} $ n和20 $^{\ circ} $ s Latitudes时,Dynamico-Saturn GCM在北半球和南半球上表现出几种强烈的季节性向东。这些喷气机与戒指的阴影相关。使用无环阴影的GCM模拟,我们显示了它对土星平流层动力学的影响。残留均值的循环和涡流强迫都受环的阴影影响。

The Composite InfraRed Spectrometer (CIRS) on board Cassini revealed an equatorial oscillation of stratospheric temperature, reminiscent of the Earth's Quasi-Biennial Oscillation (QBO), as well as anomalously high temperatures under Saturn's rings. To better understand these predominant features of Saturn's atmospheric circulation in the stratosphere, we have extended towards higher altitudes the DYNAMICO-Saturn global climate model (GCM), already used in a previous publication to study the tropospheric dynamics, jets formation and planetary-scale waves activity. Firstly, we study the higher model top impact on the tropospheric zonal jets and kinetic energy distribution. Raising the model top prevents energy and enstrophy accumulation at tropopause levels. The reference GCM simulation with 1/2$^{\circ}$ latitude/longitude resolution and a raised model top exhibits a QBO-like oscillation produced by resolved planetary-scale waves. However, the period is more irregular and the downward propagation faster than observations. Furthermore, compared to the CIRS observation retrievals, the modeled QBO-like oscillation underestimates by half both the amplitude of temperature anomalies at the equator and the vertical characteristic length of this equatorial oscillation. This QBO-like oscillation is mainly driven by westward-propagating waves; a significant lack of eastward wave-forcing explains a fluctuating eastward phase of the QBO-like oscillation. At 20$^{\circ}$N and 20$^{\circ}$S latitudes, the DYNAMICO-Saturn GCM exhibits several strong seasonal eastward jets, alternatively in the northern and southern hemisphere. These jets are correlated with the rings' shadowing. Using a GCM simulation without rings' shadowing, we show its impact on Saturn's stratospheric dynamics. Both residual-mean circulation and eddy forcing are impacted by rings' shadowing.

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