Pages that link to "Item:Q3510899"
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The following pages link to Numerical simulations of droplet formation in a cross-junction microchannel by the lattice Boltzmann method (Q3510899):
Displaying 10 items.
- A multiphase lattice Boltzmann study of buoyancy-induced mixing in a tilted channel (Q365543) (← links)
- Numerical evaluation of two recoloring operators for an immiscible two-phase flow lattice Boltzmann model (Q438047) (← links)
- Lattice Boltzmann simulation of droplet formation in microchannels under an electric field (Q608769) (← links)
- A mesoscopic simulation study of distributions of droplets in a bifurcating channel (Q1043151) (← links)
- Lattice Boltzmann simulation of droplet formation in T-junction and flow focusing devices (Q1641197) (← links)
- Regularized lattice Boltzmann multicomponent models for low capillary and Reynolds microfluidics flows (Q1649769) (← links)
- Numerical study of obstacle configuration for droplet splitting in a microchannel (Q2015956) (← links)
- Resistance characteristics analysis of droplet logic gate based on lattice Boltzmann method (Q2055470) (← links)
- Lattice Boltzmann simulations of bubble formation in a microfluidic T-junction (Q3095536) (← links)
- Comparison of Lattice Boltzmann, Finite Element and Volume of Fluid Multicomponent Methods for Microfluidic Flow Problems and the Jetting of Microdroplets (Q6111290) (← links)