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Deep winds beneath Saturn's upper clouds from a seasonal long-lived planetary-scale storm.

机译:土星上空云层下的深风来自季节性的长期行星尺度风暴。

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摘要

Convective storms occur regularly in Saturn's atmosphere. Huge storms known as Great White Spots, which are ten times larger than the regular storms, are rarer and occur about once per Saturnian year (29.5 Earth years). Current models propose that the outbreak of a Great White Spot is due to moist convection induced by water. However, the generation of the global disturbance and its effect on Saturn's permanent winds have hitherto been unconstrained by data, because there was insufficient spatial resolution and temporal sampling to infer the dynamics of Saturn's weather layer (the layer in the troposphere where the cloud forms). Theoretically, it has been suggested that this phenomenon is seasonally controlled. Here we report observations of a storm at northern latitudes in the peak of a weak westward jet during the beginning of northern springtime, in accord with the seasonal cycle but earlier than expected. The storm head moved faster than the jet, was active during the two-month observation period, and triggered a planetary-scale disturbance that circled Saturn but did not significantly alter the ambient zonal winds. Numerical simulations of the phenomenon show that, as on Jupiter, Saturn's winds extend without decay deep down into the weather layer, at least to the water-cloud base at pressures of 10-12 bar, which is much deeper than solar radiation penetrates.
机译:对流风暴经常发生在土星的大气层中。巨大的风暴被称为“大白点”,比常规风暴大十倍,但很少见,每土星年(地球年29.5)大约发生一次。当前的模型提出,大白点的爆发是由于水引起的潮湿对流。但是,迄今为止,总体扰动的产生及其对土星永久风的影响尚未受到数据的约束,因为空间分辨率和时间采样不足以推断土星天气层(对流层中形成云的层)的动态变化。从理论上讲,这种现象是季节性控制的。在这里,我们报告了在北部春季开始时,在北纬一个强弱的西风急流高峰期观察到的风暴,这符合季节周期,但比预期的早。风暴头的移动速度比喷气机快,在两个月的观测期内处于活跃状态,并引发了围绕土星的行星尺度扰动,但并未显着改变周围的纬向风。对该现象的数值模拟表明,与木星一样,土星的风在没有衰减的情况下延伸到天气层,至少在10-12 bar的压力下至少延伸到水云基部,这比太阳辐射的穿透深度大得多。

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