Three-dimensional (3-D) Navier-Stokes analysis of the mixing and power extraction in a supersonic chemical oxygen iodine laser (COIL) with transverse I2 injection

Author:

Buggeln Richard1,Shamroth Stephen1,Lampson Alan2,Crowell Peter2

Affiliation:

1. Scientific Research Associates, Glastonbury, CT

2. Logicon RDA, Albuquerque, NM

Publisher

American Institute of Aeronautics and Astronautics

Reference12 articles.

1. A Workstation Based Navier-Stokes Codefor Nozzle Flow with Injection, WL-TR-90-63, Weapons Laboratory, AFSC, Kirtland AFB. NM, October 1990.

2. Solution of the multidimensional compressible Navier-Stokes equations by a generalized implicit method

3. Function Approach to Calculating Three-Dimensional Mixing for Viscous, Parabolic Flows,WL-TR-90-19, AFWL, July 1990.

4. P. G. Crowell. A Comparison of the Effective BinaryDifJusionandMulticomponent Diffusion 9) Modelsfor Laminar Mixing of Oxygedlodine Streams, RDA Report 83-AK-14.2009, May 1983.

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1. Three-dimensional Computational Analysis of Transverse Injection in a Supersonic Combustor;IOP Conference Series: Materials Science and Engineering;2021-04-01

2. Simulation of Flow Unsteadiness in Chemical Laser Flowfields;42nd AIAA Aerospace Sciences Meeting and Exhibit;2004-01-05

3. An Examination of Unsteady Flow Predictions for the Chemical Oxygen-Iodine Laser;34th AIAA Plasmadynamics and Lasers Conference;2003-06-23

4. Validation of parallel Navier-Stokes codes for chemical oxygen/iodine laser flowfields;40th AIAA Aerospace Sciences Meeting & Exhibit;2002-01-14

5. Computation of Compressible Flows Through a Chemical Laser Device with Crossflow Injection;Journal of Propulsion and Power;2001-07

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