Fluid flow around NACA 0012 airfoil at low-Reynolds numbers with hybrid lattice Boltzmann method

G Di Ilio, D Chiappini, S Ubertini, G Bella, S Succi - Computers & Fluids, 2018 - Elsevier
We simulate the two-dimensional fluid flow around National Advisory Committee for
Aeronautics (NACA) 0012 airfoil using a hybrid lattice Boltzmann method (HLBM), which …

Consistent simulation of droplet evaporation based on the phase-field multiphase lattice Boltzmann method

H Safari, MH Rahimian, M Krafczyk - Physical Review E, 2014 - APS
In the present article, we extend and generalize our previous article [H. Safari, MH
Rahimian, and M. Krafczyk, Phys. Rev. E 88, 013304 (2013) 10.1103/PhysRevE. 88.013304] …

Regularized lattice Boltzmann multicomponent models for low capillary and Reynolds microfluidics flows

A Montessori, M Lauricella, M La Rocca, S Succi… - Computers & …, 2018 - Elsevier
We present a regularized version of the color gradient lattice Boltzmann (LB) scheme for the
simulation of droplet formation in microfluidic devices of experimental relevance. The …

Evaluation of the effective porosity of an open cell foam material for using in heat and mass transfer numerical simulations

O Soloveva, S Solovev, R Zaripova… - E3S web of …, 2021 - e3s-conferences.org
A comparison of the efficiency of the open cell foam (OCF) models is carried out.
Geometrical models are constructed by the methods of simple cubic, body-centered cubic …

Linear hydrodynamics and stability of the discrete velocity Boltzmann equations

PA Masset, G Wissocq - Journal of Fluid Mechanics, 2020 - cambridge.org
The discrete velocity Boltzmann equations (DVBE) underlie the attainable properties of all
numerical lattice Boltzmann methods (LBM). To that regard, a thorough understanding of …

Coupled lattice Boltzmann finite volume method for conjugate heat transfer in porous media

D Chiappini, A Festuccia, G Bella - Numerical Heat Transfer, Part A …, 2018 - Taylor & Francis
This work presents a coupled lattice Boltzmann finite volume method for dealing with
conjugate heat transfer problems. Lattice Boltzmann scheme is used for fluid-dynamics …

Numerical simulation and experimental study of the flow heat transfer characteristics of rectangular micro-grooved ultra-thin flat plate heat pipes

S Huashan, C Hong, C Kui… - Proceedings of the …, 2024 - journals.sagepub.com
Ultra-thin flat heat pipes (UTFPs) effectively address the heat dissipation challenges of
contemporary compact electronic devices, owing to their superior thermal conductivity and …

Kinematic and dynamic forcing strategies for predicting the transport of inertial capsules via a combined lattice Boltzmann–immersed boundary method

A Coclite, S Ranaldo, MD De Tullio, P Decuzzi… - Computers & …, 2019 - Elsevier
Modeling the transport of deformable capsules under different flow regimens is crucial in a
variety of fields, including oil rheology, blood flow and the dispersion of pollutants. The aim …

Hydrodynamic behavior of the pseudopotential lattice Boltzmann method for interfacial flows

D Chiappini, M Sbragaglia, X Xue, G Falcucci - Physical Review E, 2019 - APS
The lattice Boltzmann method (LBM) is routinely employed in the simulation of complex
multiphase flows comprising bulk phases separated by nonideal interfaces. The LBM is …

Nanofluid heat transfer in wavy-wall channels with different geometries: a finite-volume lattice Boltzmann study

G Di Ilio, S Ubertini, S Succi, G Falcucci - Journal of Scientific Computing, 2020 - Springer
In this work, we perform an extensive numerical investigation of the heat transfer behavior of
nanofluid laminar flows, in wavy-wall channels. The adopted computational approach is …