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Numerical evidence for cloud droplet nucleation at the cloud-environment interface

机译:云环境界面云液滴成核的数值证据

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摘要

Cumulus clouds have long been recognized as being the results of ascending moist air from below the cloud base. Cloud droplet nucleation is understood to take place near the cloud base and inside accelerating rising cloudy air. Here we describe circumstances under which cloud droplet nucleation takes place at the interface of ascending cloudy air and clear air. Evaporation is normally expected to occur at this interface. However, continuity of moving air requires cloud-free air above the boundary of rising cloudy air to move upwards in response to the gradient force of perturbation pressure. We used a one and half dimensional non-hydrostatic cloud model and the Weather Research and Forecast model to investigate the impacts of this force on the evolution of cloud spectra. Our study shows that expansion and cooling of ascending moist air above the cloud top causes it to become supersaturated with condensation rather than evaporation occurring at the interface. We also confirm that Eulerian models can describe the cloud droplet activation and prohibit spurious activation at this interface. The continuous feeding of newly activated cloud droplets at the cloud summit may accelerate warm rain formation.
机译:积云长期被认为是从云底层下调潮湿空气的结果。云液滴成核被理解为在云底部和内部加速升高的阴天空气附近进行。在这里,我们描述了在上升云空气和透明空气的界面处发生云液滴成核的情况。通常预期蒸发在该界面处发生。然而,移动空气的连续性需要在上升浊度空气边界上方的无云空气,以响应于扰动压力的梯度力向上移动。我们使用了一个半维度的非静水压云模型和天气研究和预测模型来研究这种力对云谱的演变的影响。我们的研究表明,云顶上方的上升潮湿空气的膨胀和冷却使其变得过饱和,而不是在界面处发生的蒸发。我们还确认Eulerian模型可以描述云液滴激活并禁止此接口的虚假激活。在云峰会上的新活性云液滴的连续喂养可能加速温暖的雨层。

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