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Lattice Boltzmann Method

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The article was published on 2011-01-01. It has received 428 citations till now. The article focuses on the topics: HPP model & Bhatnagar–Gross–Krook operator.

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Proceedings ArticleDOI

Convolutional Neural Networks for Steady Flow Approximation

TL;DR: This work proposes a general and flexible approximation model for real-time prediction of non-uniform steady laminar flow in a 2D or 3D domain based on convolutional neural networks (CNNs), and shows that convolutionAL neural networks can estimate the velocity field two orders of magnitude faster than a GPU-accelerated CFD solver and four orders of order than a CPU-based CFDsolver at a cost of a low error rate.
Journal ArticleDOI

Lattice Boltzmann modeling of boiling heat transfer: The boiling curve and the effects of wettability

TL;DR: Li et al. as mentioned in this paper presented a hybrid thermal lattice Boltzmann (LB) model to simulate thermal multiphase flows with phase change based on an improved pseudopotential LB approach.
Journal ArticleDOI

Applications of hybrid models in chemical, petroleum, and energy systems: A systematic review

TL;DR: Different sub-models, hybridization strategies, structural designs, screening criteria, and new directions in hybrid modeling are reviewed, with focus on the corresponding applications in chemical, petroleum, and energy systems.
Journal ArticleDOI

Simulation of Ferrofluid Flow for Magnetic Drug Targeting Using the Lattice Boltzmann Method

TL;DR: In this paper, the influence of a spatially varying magnetic field on Fe3O4-plasma nanofluid flow in a vessel as a targeted drug delivery system is investigated.
Journal ArticleDOI

Generalized three-dimensional lattice Boltzmann color-gradient method for immiscible two-phase pore-scale imbibition and drainage in porous media.

TL;DR: The ability to simulate immiscible two-component flow imbibition and drainage is validated, with excellent results, by numerical simulations in a Berea sandstone, a frequently used benchmark case used in this field, using a complex geometry that originates from a 3D scan of a porous sandstone.
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