首页> 外文期刊>Journal of geophysical research. Planets >Modeling the Hydrological Cycle in the Atmosphere of Mars: Influence of a Bimodal Size Distribution of Aerosol Nucleation Particles
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Modeling the Hydrological Cycle in the Atmosphere of Mars: Influence of a Bimodal Size Distribution of Aerosol Nucleation Particles

机译:模拟火星大气中的水文循环:气溶胶成核颗粒双峰尺寸分布的影响

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We present a new implementation of the hydrological cycle scheme into a general circulation model of the Martian atmosphere. The model includes a semi-Lagrangian transport scheme for water vapor and ice and accounts for microphysics of phase transitions between them. The hydrological scheme includes processes of saturation, nucleation, particle growth, sublimation, and sedimentation under the assumption of a variable size distribution. The scheme has been implemented into the Max Planck Institute Martian general circulation model and tested assuming monomodal and bimodal lognormal distributions of ice condensation nuclei. We present a comparison of the simulated annual variations, horizontal and vertical distributions of water vapor, and ice clouds with the available observations from instruments on board Mars orbiters. The accounting for bimodality of aerosol particle distribution improves the simulations of the annual hydrological cycle, including predicted ice clouds mass, opacity, number density, and particle radii. The increased number density and lower nucleation rates bring the simulated cloud opacities closer to observations. Simulations show a weak effect of the excess of small aerosol particles on the simulated water vapor distributions.
机译:我们展示了水文循环方案的新实施,进入了火星氛围的一般循环模型。该模型包括用于水蒸气和冰的半拉格朗日传输方案,并考虑它们之间的相变的微观物理学。水文方案包括在可变尺寸分布的假设下的饱和,成核,颗粒生长,升华和沉降过程。该计划已实施到MAX Planck Institute Martian General循环模型中,并假设单态阳极和双峰算核分布的测试。我们对水蒸气的模拟年变化,水平和垂直分布以及冰云进行了比较,以及来自火星轨道轨道上的仪器的可用观察。气溶胶颗粒分布的双极性核算改善了年度水文循环的模拟,包括预测冰云质量,不透明度,数密度和粒子半径。增加数量密度和较低的成核率使模拟的云透明度更接近观察。模拟显示出过量的小气溶胶颗粒对模拟水蒸气分布的弱效果。

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