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Maintenance of equatorial superrotation in the atmospheres of Venus and Titan

机译:在金星和泰坦大气中维持赤道超旋转

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This paper extends Leovy's theory on Venus' equatorial superrotation by analytically examining additional terms in the mean zonal momentum equation that stably balances the momentum source of pumping by thermal tides. The general analytical solution is applied to the atmospheres of both Venus and Saturn's moon Titan. The main results are: (ⅰ) Venus' equatorial superrotation of 118 m s~(-1) results primarily from a balance between the momentum source of pumping by thermal tides and the momentum sink of meridional advection of wind shear by horizontal branches of the Hadley circulation; (ⅱ) no solution is found for Titan's stratospheric equatorial superrotation centered at the 1-hPa level; (ⅲ) however, if the main solar radiation absorption layer in Titan's stratosphere is lifted from 1 hPa (~185km) to 0.1 hPa (~288km), an equatorial superrotation of ~110ms~(-1) centered at 0.1-hPa could be maintained. Titan's equatorial superrotation results mainly from a balance between the momentum source of tidal pumping and the momentum sink of frictional drag.
机译:本文通过分析平均纬向动量方程中的其他项来扩展Leovy的金星赤道超旋转理论,以稳定地平衡由热潮推动的动量源。一般的分析解决方案适用于金星和土星的卫星土卫六的大气。主要结果是:(ⅰ)金星的赤道超旋转为118 ms〜(-1),其主要原因是热潮推动的动量源与哈德利水平分支的风切变对流对流的动量汇之间的平衡。循环; (ⅱ)找不到以1-hPa高度为中心的Titan平流层赤道超旋转的解决方案; (ⅲ)但是,如果将泰坦平流层中的主要太阳辐射吸收层从1 hPa(〜185km)提升到0.1 hPa(〜288km),则以0.1-hPa为中心的〜110ms〜(-1)的赤道超旋转可能是保持。土卫六的赤道超旋转主要是由潮汐动量的动量源与摩擦阻力的动量汇之间的平衡引起的。

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