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Supplement to the article "Predicting the morphology of ice particles in deep convection using the super-droplet method" (Shima et al., 2020, GMD)

Authors: Shin-ichiro Shima;

Supplement to the article "Predicting the morphology of ice particles in deep convection using the super-droplet method" (Shima et al., 2020, GMD)

Abstract

This is a supplement to the article "Predicting the morphology of ice particles in deep convection using the super-droplet method" authored by Shin-ichiro Shima, Yousuke Sato, Akihiro Hashimoto, and Ryohei Misumi, published in Geosci. Model Dev., 2020. Typical realization of CTRL, simulated by SCALE-SDM 0.2.5-2.2.0 Movie01.QHYD_TYP-CTRL_2.2.0.gif: Spatial structure of the cumulonimbus Movie02.M-D_TYP-CTRL_2.2.0.gif: Mass-dimension relationship of the ice particles Movie03.phi-D_TYP-CTRL_2.2.0.gif : Aspect ratio–dimension relationship of the ice particles Movie04.rho-D_TYP-CTRL_2.2.0.gif : Apparent density–dimension relationship of the ice particles Movie05.V-D_TYP-CTRL_2.2.0.gif : Velocity-dimension relationship of the ice particles One realization of DX/2, simulated by SCALE-SDM 0.2.5-2.2.0 Movie06.QHYD_DXx0.5_2.2.0.gif: Spatial structure of the cumulonimbus The same setup as Moves 1-5 (typical realization of CTRL) is used, but simulated by SCALE-SDM 0.2.5-2.2.1 Movie07.QHYD_TYP-CTRL.2.2.1.gif: Spatial structure of the cumulonimbus Movie08.M-D_TYP-CTRL_2.2.1.gif: Mass-dimension relationship of the ice particles Movie09.phi-D_TYP-CTRL_2.2.1.gif: Aspect ratio–dimension relationship of the ice particles Movie10.rho-D_TYP-CTRL_2.2.1.gif: Apparent density–dimension relationship of the ice particles Movie11.V-D_TYP-CTRL_2.2.1.gif: Velocity-dimension relationship of the ice particles The same setup as Moves 1-5 (typical realization of CTRL) is used, but simulated by SCALE-SDM 0.2.5-2.2.2 Movie12.QHYD_TYP-CTRL.2.2.2.gif: Spatial structure of the cumulonimbus Movie13.M-D_TYP-CTRL_2.2.2.gif: Mass-dimension relationship of the ice particles Movie14.phi-D_TYP-CTRL_2.2.2.gif: Aspect ratio–dimension relationship of the ice particles Movie15.rho-D_TYP-CTRL_2.2.2.gif: Apparent density–dimension relationship of the ice particles Movie16.V-D_TYP-CTRL_2.2.2.gif: Velocity-dimension relationship of the ice particles

Related Organizations
Keywords

Mixed-Phase Clouds, Particle-Based Cloud Microphysics Model, Cloud Model, Super-Droplet Method

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