CFD simulation of discrete phase trap (trapper) by gravity using ANSYS Fluent software
We deal with the multiphase flow and their increasing application in mechanical and engineering systems. Therefore, to have more efficient operations, we must have a complete understanding of such flows. Multiphase flows are classified into different groups, one of which is the dispersed multiphase flow that is common in engineering systems. Dispersed multiphase flows include bubble flow, droplet flow, and particle flow. In this flow, a phase is considered to be the carrier phase, in which the particles, bubbles, and droplets are dispersed and form the other phases. CFD simulation plays a prominent role in optimizing the design of systems with the dispersed multiphase flow. ANSYS CFD is a powerful tool in this field.
In addition to solving transition equations for a continuous phase, ANSYS Fluent allows us to simulate a discrete second phase in the Lagrangian reference frame. This second phase consists of spherical particles (which may represent droplets or bubbles) dispersed in a continuous phase. The ANSYS Fluent calculates the paths of discrete-phase entities, as well as the heat and mass transfer. The connection between the phase and its effect on both discrete phase paths and continuous phase flow can be included.
In this analysis, we tried to simulate and analyze the flow of a particle absorption mechanism called the discrete phase trap, applying the ANSYS Fluent software using the Discrete Phase model (DPM).
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TITLE: CFD simulation of discrete phase trapper by gravity using ANSYS Fluent software
PROJECT TYPE: Mechanical, Discrete Phase Model
TIME: 36 days
PRIMARY PRICE: 1315$
PRICE IN STORE: 455$