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Uhlmann, An immersed boundary method with direct forcing for simulation of particulate flows, J. Comput.
Uhlmann, An immersed boundary method with direct forcing for the simulation of particulate flows, J. Comput.
A direct-forcing fictitious domain (DF/FD) method for the simulation of particulate flows is reported.
High fidelity large-scale direct numerical simulation of particulate flows is of great value in a variety of industrial applications.
This contribution deals with a new numerical method for an accurate and efficient simulation of particulate processes.
This paper presents a three-dimensional viscous vortex method for the simulation of particulate flows with two-way coupling.
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Ladd, Numerical simulations of particulate suspensions via a discretized Boltzman equation.
This article describes the use of the HUBZero middleware to create shared simulations of particulate processes in drug product manufacturing.
Considering that large scale, physical simulant releases in urban areas is prohibitively costly in both time and money, we employ accurate numerical simulations of particulate dispersions in a Monte Carlo fashion to develop a mathematical characterization of sensor measurements under a variety of scenarios.
There have been some attempts in literature to treat cohesive forces in simulations of particulate flows but none of these methods were actually implemented directly into the hard-sphere model but rather have been solved separately as a part of the numerical scheme.
Chemical Engineering Science, in press, doi 10.1016/j.ces.2007.09.007.] as a method to accelerate the simulation speed of particulate processes solved by Monte Carlo methods.
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