The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the...

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The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision of graduate student Eric Engelhard

Transcript of The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the...

Page 1: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

The Digital Demo RoomOne-Dimensional Hydrodynamics

Simulator

Conley “Lee” Ditsworthunder the care and feeding of

Dr. Charles F. Gammieand close supervision of graduate student

Eric Engelhard

Page 2: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Project Goal

Provide an on-line simulator that allows students to study hydrodynamic waves using an interactive web-based interface

Page 3: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Types of Waves

• Linear Waves–Hydrodynamic (HD)

–Magnetohydrodynamic (MHD)

• Shock Tubes

Page 4: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

SimulatorOutput

Page 5: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Hydrodynamics• Mass Conservation (Continuity Equation):

• Momentum Conservation:

• Energy Conservation:

Convective Derivative:

Page 6: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Other Constraints• Magnetic Induction Formula:

• Divergence-Free Formula:

• Ideal Gas Equation of State:

• Gravitational Potential (Poisson’s Equation):

Page 7: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Linear Waves“Perturb” the Conservation and Magnetic Induction Equations:

Page 8: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Linearized Hydrodynamic (HD) Equations

Page 9: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

HD Natural Frequencies

Page 10: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

HD Eigenvectors

Page 11: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Magnetohydrodynamic Waves

Newly-defined variables for simplification:

Alfven Speed:

Also:

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MHD Linearized Equations

Page 13: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

MHD Natural Frequencies and Associated Eigenvectors

Page 14: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Fast/Slow Waves

Page 15: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Sample Run: Sound Wave Study of the Jean’s Length

StableUnstable

Page 16: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Stable wave (above Jean’s

Length):

Movie

Page 17: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

Unstable wave (below Jean’s

Length):

Movie

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Sample Shock Tube

Shock Tube

Just For Fun:Here’s a sample shock tube; simulation is set up with equal left and right states, but with opposite fluid velocities

Page 19: The Digital Demo Room One-Dimensional Hydrodynamics Simulator Conley “Lee” Ditsworth under the care and feeding of Dr. Charles F. Gammie and close supervision.

It’s Been A Pleasure!

The One-Dimensional Hydrodynamic Simulator Can Be Found At The Digital Demo Room:

http://rainman.physics.uiuc.edu/ddr/oned/index.html

Conley “Lee” DitsworthRm 235 LLP

[email protected] or [email protected], no office phone available…