2013Scientia IranicaOpen access

Analytical study of single particle tracking in both free and forced vortices

Alinaghi Salari, Mohsen Karmozdi, Reza Maddahian, Bahareh Firoozabadi

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Abstract

Today, the flow of gas-solid, solid-liquid and liquid-liquid mixtures is broadly used in many industries such as slurry transportation, propulsion, dredging and power generation equipment. In this paper, single solid particle motion through free and forced vortices is analytically studied. The equations are solved for cases in which the drag, pressure gradient, added mass, buoyancy and weight forces are considered individually and simultaneously. Verification has been done for the value of ReP, which confirms the solution for the first t = 0.1 s. The results show that the most important force governing particle motion is the pressure gradient force.

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What this paper is about

Today, the flow of gas-solid, solid-liquid and liquid-liquid mixtures is broadly used in many industries such as slurry transportation, propulsion, dredging and power generation equipment. In this paper, single solid particle motion through free and forced vortices is analytically studied. The equations are solved for cases in which the drag, pressure gradient, added mass, buoyancy and weight forces are considered individually and simultaneously. Verification has been done for the value of ReP, which confirms the solution for the first t = 0.1 s. The results show that the most important force governing particle motion is the pressure gradient force.

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Available abstract

Today, the flow of gas-solid, solid-liquid and liquid-liquid mixtures is broadly used in many industries such as slurry transportation, propulsion, dredging and power generation equipment. In this paper, single solid particle motion through free and forced vortices is analytically studied. The equations are solved for cases in which the drag, pressure gradient, added mass, buoyancy and weight forces are considered individually and simultaneously. Verification has been done for the value of ReP, which confirms the solution for the first t = 0.1 s. The results show that the most important force governing particle motion is the pressure gradient force.

Key concepts: Buoyancy, Mechanics, Vortex, Drag, Particle (ecology), Pressure gradient, Propulsion, Free surface

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