2019•AIP conference proceedingsRequires access

Simulation of Couette flow in semicircular channel

Vadim A. Lebiga, A. Yu. Pak, V. N. Zinovyev, D. S. Mironov, Alexey E. Medvedev

Open publisher page 4 citations

Abstract

Used the set-up with a semi-circular gap allows realization of different types of the Couette flow and to change the flow parameters (velocity, pressure, Reynolds and Knudsen numbers, etc.) over a wide range. Reynolds number can be varied both by the cylinder rotation speed and by changing pressure inside the facility. Obtaining high Knudsen numbers is possible at low pressures and using light gases, since the system is sealed. The nature of the flow varies from laminar to turbulent ones. Simulation of the properties of the flat Couette flow in the stand should be ensured by minimizing the influence of centrifugal forces on the flow, which are manifested by distortion of the linear velocity profile. Preliminary experiments have shown the possibility of modeling the formation of longitudinal vortices in a semi-circular channel similar to the circular Couette flow.

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What this paper is about

Used the set-up with a semi-circular gap allows realization of different types of the Couette flow and to change the flow parameters (velocity, pressure, Reynolds and Knudsen numbers, etc.) over a wide range. Reynolds number can be varied both by the cylinder rotation speed and by changing pressure inside the facility. Obtaining high Knudsen numbers is possible at low pressures and using light gases, since the system is sealed. The nature of the flow varies from laminar to turbulent ones. Simulation of the properties of the flat Couette flow in the stand should be ensured by minimizing the influence of centrifugal forces on the flow, which are manifested by distortion of the linear velocity profile. Preliminary experiments have shown the possibility of modeling the formation of longitudinal vortices in a semi-circular channel similar to the circular Couette flow.

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Available abstract

Used the set-up with a semi-circular gap allows realization of different types of the Couette flow and to change the flow parameters (velocity, pressure, Reynolds and Knudsen numbers, etc.) over a wide range. Reynolds number can be varied both by the cylinder rotation speed and by changing pressure inside the facility. Obtaining high Knudsen numbers is possible at low pressures and using light gases, since the system is sealed. The nature of the flow varies from laminar to turbulent ones. Simulation of the properties of the flat Couette flow in the stand should be ensured by minimizing the influence of centrifugal forces on the flow, which are manifested by distortion of the linear velocity profile. Preliminary experiments have shown the possibility of modeling the formation of longitudinal vortices in a semi-circular channel similar to the circular Couette flow.

Key concepts: Knudsen number, Mechanics, Taylor–Couette flow, Couette flow, Reynolds number, Laminar flow, Turbulence, Flow (mathematics)

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