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Effects of sea salt aerosols on precipitation and upper troposphere/lower stratosphere water vapour in tropical cyclone systems

机译:海盐气雾剂对热带气旋系统沉淀和上层流层/较低平流层水蒸气的影响

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The effects of sea salt aerosols (SSA) on cloud microphysical processes, precipitation, and upper troposphere/lower stratosphere water vapour in tropical cyclones were studied with the Weather Research and Forecasting with Chemistry model. Two numerical experiments were conducted: a control experiment (CTL) and an experiment with sea salt emission intensity one-tenth of that in the CTL experiment (CLEAN). Results show increased SSA concentrations, increased production rates of auto-conversion of cloud water to form rain, and increased accretion of cloud water by rain in the CTL experiment, leading to an increase in the precipitation amount. The peak value of precipitation is ~17?mm/h in the CTL experiment and ~13?mm/h in the CLEAN experiment, a difference of ~30%. The CTL experiment has more intense vertical movement in the eyewall and thus more water vapour is transported to the upper atmosphere, which promotes cloud ice deposition. This process consumes more water vapour, which makes the CTL experiment drier in the upper troposphere/lower stratosphere layer (altitude above 17?km). At 18-20?km altitude, the domain-averaged water vapour mixing ratio of the CTL experiment is ~0.02 ppmv lower than that of the CLEAN experiment. SSA have the effect of strengthening tropical cyclones and increasing precipitation.
机译:用化学模型研究热带气旋中海盐气雾剂(SSA)对云微微物理过程,降水和上层对流层/较低平流层水蒸气的影响。进行了两项数值实验:对照实验(CTL)和海盐发射强度的实验,其中CTL实验中的十分之一(清洁)。结果表明,SSA浓度提高,增加了云水的自动转化率的生产率,在CTL实验中通过雨量增加云水的增加,导致降水量增加。 CTL实验中沉淀的峰值为〜17?mm / h,在清洁实验中〜13Ωmm/ h,差异为〜30%。 CTL实验在眼镜中具有更强烈的垂直运动,因此将更多的水蒸气运送到高层大气中,这促进了云沉积。该过程消耗更多的水蒸气,这使得CTL实验干燥在上层/较低的平流层层(高度高于17 km)。在18-20 km高度,CTL实验的域平均水蒸气混合比率低于清洁实验的0.02ppmV。 SSA具有加强热带气旋和增加降水的影响。

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