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Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). The Experimental Fluid Mechanics and Instability Laboratory. The Experimental Fluid Mechanics and Instability Laboratory is located in the Aerospace and Mechanical Engineering Department at The University of Arizona. Rayleigh-Taylor and Richtmyer-Meshkov instabilities are fundamental fluid instabilities, and have applications in many fields, including astrophysics, supersonic combustion flows and fusion reactions.

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Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). The Experimental Fluid Mechanics and Instability Laboratory. The Experimental Fluid Mechanics and Instability Laboratory is located in the Aerospace and Mechanical Engineering Department at The University of Arizona. Rayleigh-Taylor and Richtmyer-Meshkov instabilities are fundamental fluid instabilities, and have applications in many fields, including astrophysics, supersonic combustion flows and fusion reactions.
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Home | fluidlab.arizona.edu Reviews

https://fluidlab.arizona.edu

Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). The Experimental Fluid Mechanics and Instability Laboratory. The Experimental Fluid Mechanics and Instability Laboratory is located in the Aerospace and Mechanical Engineering Department at The University of Arizona. Rayleigh-Taylor and Richtmyer-Meshkov instabilities are fundamental fluid instabilities, and have applications in many fields, including astrophysics, supersonic combustion flows and fusion reactions.

INTERNAL PAGES

fluidlab.arizona.edu fluidlab.arizona.edu
1

Weight/Pulley Drop Tower (RTI)

http://fluidlab.arizona.edu/weightpulley-drop-tower-(rti).html

Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). Weight/Pulley Drop Tower (RTI). Magnetic ( RTI Discontinued). Shock Tube II (RMI Discontinued). The Rayleigh-Taylor instability (RTI) is a buoyancy driven instability that takes place in a stratified fluid system with a constant acceleration directed from the heavy fluid into the light fluid in the presence of interfacial perturbations. Rendering of the experimental setup. Tank and actuating system with voice coil and balance weights.

2

Shock Tube (RMI)

http://fluidlab.arizona.edu/shock-tube-(rmi).html

Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). Weight/Pulley Drop Tower (RTI). Magnetic ( RTI Discontinued). Shock Tube II (RMI Discontinued). Richtmyer-Meshkov instability occurs whenever a shock wave passes over a nearly planar interface separating two fluids of unequal density. It is one of the most fundamental fluid instabilities and is of importance to applications ranging from astrophysics to supersonic combustion. Rendering of the experimental setup.

3

Vacuum experiment (RTI)

http://fluidlab.arizona.edu/vacuum-experiment-(rti).html

Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). Weight/Pulley Drop Tower (RTI). Magnetic ( RTI Discontinued). Shock Tube II (RMI Discontinued). Experiments are visualized using shadowgraphy or by planar Mie scattering. Rendering of the experimental setup. Left: Shadowgraph system; Right: Entire experimental setup. The Experimental Fluid Mechanics and Instability Laboratory. Aerospace and Mechanical Engineering Department at University of Arizona.

4

Magnetic (RTI Discontinued)

http://fluidlab.arizona.edu/magnetic-(rti-discontinued).html

Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). Weight/Pulley Drop Tower (RTI). Magnetic ( RTI Discontinued). Shock Tube II (RMI Discontinued). Rendering of the experimental setup. Test tank inside the magnet. Rendering of tank holder before inserting it into electromagnet. The Experimental Fluid Mechanics and Instability Laboratory. Aerospace and Mechanical Engineering Department at University of Arizona.

5

People

http://fluidlab.arizona.edu/people.html

Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). Pedro E Romero Colio. The Experimental Fluid Mechanics and Instability Laboratory. Aerospace and Mechanical Engineering Department at University of Arizona.

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Weight/Pulley Drop Tower (RTI). Shock tube II (RMI Discontinued). The Experimental Fluid Mechanics and Instability Laboratory. The Experimental Fluid Mechanics and Instability Laboratory is located in the Aerospace and Mechanical Engineering Department at The University of Arizona. Rayleigh-Taylor and Richtmyer-Meshkov instabilities are fundamental fluid instabilities, and have applications in many fields, including astrophysics, supersonic combustion flows and fusion reactions.

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