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The impact of subvisible cirrus clouds near the tropical tropopause on stratospheric water vapor

机译:热带对流层顶附近的亚可见卷云对平流层水汽的影响

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摘要

The radiative impact of subvisible cirrus ice clouds at and just below the tropical tropopause has been studied using a zonally averaged interactive chemistry-radiation-dynamics model. Model runs have been performed with and without the inclusion of the radiative heating of these thin ice clouds, and with and without sedimentation. Near-infrared optical depths of 0.005-0.08 were computed for assumed log-normal size distributions of spherical particles having mode radii of 2-10 mu m. Particles with 6 mu m mode radii have computed scattering ratios of 3-15 at 603 nm, in good agreement with lidar observations. The increased radiative heating of these clouds, 0.1-0.2 K/day, results in temperature increases of 1-2 K and vertical velocity increases of 0.02-0.04 mm/s. As a consequence of the warmer tropopause, lower stratosphere water vapor increases by as much as 1 ppmv. The dehydration resulting from sedimentation was found to be a much smaller effect. [References: 16]
机译:使用区域平均互动化学-辐射-动力学模型研究了热带对流层顶及其下方的亚可见卷云的辐射影响。在有或没有包括这些薄冰云的辐射加热以及有无沉淀的情况下进行了模型运行。对于模式半径为2-10微米的球形颗粒的假定对数正态尺寸分布,计算得出了0.005-0.08的近红外光学深度。具有6μm模半径的粒子在603 nm处的散射比计算为3-15,与激光雷达观测非常吻合。这些云的辐射加热增加,为0.1-0.2 K /天,导致温度增加1-2 K,垂直速度增加0.02-0.04 mm / s。对流层顶变暖的结果是,平流层下部的水蒸气增加了多达1 ppmv。发现由沉淀引起的脱水作用要小得多。 [参考:16]

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