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Cloud-MicroPhysics-Turbulence-Telemetry: An inter-multidisciplinary training network for enhancing the understanding and modeling of atmospheric clouds

Periodic Reporting for period 2 - COMPLETE (Cloud-MicroPhysics-Turbulence-Telemetry: An inter-multidisciplinary training network for enhancing the understanding and modeling of atmospheric clouds)

Período documentado: 2018-06-01 hasta 2021-01-31

Collision kernel: polydisperse drop population inside a nearly homogeneous warm cloud portion
Motion of polydisperse water drops inside a simulated interface between cloud top and clear air
LES sim.s of velocity, horizontal-vertical sections of a portion of cloud which include the top
Mixing Diagrams: droplet populations within air and water vapour inside a cloud top
Near-surface air temperature (colors, K) and cloud water (gray shades), sim.s with central hot spot
First in-field experiment with balloon and radioprobe
Collision kernel: poly-disperse drop population inside the interface with ambient air
Boundaries subsiding shell: red neg. buoyant mixture, blue region neg.vertical velocity
Column relative humidity sim.s: a. uniform surface temp, b. sea surface temp anomaly hot spot
In-field experiment with COMPLETE mini green radio and VAISALA probes
Mini-green-expendable radioprobe system architecture
Caption, see below image, S. Shamekh et al, 2020
Motion of polydisperse water drops inside cloud top
Turbulent Numerical sim: Supersaturation visualisation, cloud top, mild unstable stratification
H2020COMPLETE radioprobe board: sensors, radiomodule, microcontroller, power module
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