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Cloud microphysical effects of turbulent mixing and entrainment
Experimental investigation of the local entrainment velocity in a gravity current [abstract]
Map-based advection, low-dimensional simulation, and superparameterization [abstract]
The behaviour of small inertial particles in homogeneous and isotropic turbulence [abstract]
An overview of sea spray aerosol production, scaling, and surface-layer interactions [abstract]
Summarization and exploration as paradigms for visualizing large DNS results [abstract]
Overview of HPC computer architecture: A long march toward exa-scale computing and beyond [abstract]
A novel approach for simulating droplet microphysics in entraining clouds
Finding the favorite regions for droplets to collide in a turbulent flow: Lab data and DNS
The inverse droplet coagulation problem [abstract]
An overview of sea spray aerosol production, scaling, and surface-layer interactions
Parallel implementation and scalability analysis of a turbulent particle laden flow code
The inverse droplet coagulation problem
Effect of gravity on acceleration statistics of inertial particles in homogeneous isotropic turbulence
Hybrids FFTs on heterogeneous CPU/GPU computers [abstract]
Observational and numerical studies on turbulent entrainment-mixing processes [abstract]
Mixing and entrainment at stratocumulus top [abstract]
Modeling the bubbly ocean [abstract]
Relative velocities of inertial particles in turbulent aerosols
A novel approach for simulating droplet microphysics in turbulent clouds

Pages