D. B. Kothe, and W. J. Rider, Comments on Modeling Inter-facial Flows with Volume-of-Fluid Methods, Technical Report LA-UR-3384, Los Alamos National Laboratory, 1995. | |
R. Caiden, R. P. Fedkiw, and C. Anderson, A Numerical Method for Two-Phase Flow Consisting of Separate Compressible and Incompressible Regions, Journal of Computational Physics, 166, 2001, 1-27. CrossRef | |
C. A. Lowe, Two-phase Shock-Tube Problems and Numerical Methods of Solution, Journal of Computational Physics, 204, 2005, 598-632. CrossRef | |
R. Saurel, and R. Abgrall, A Multiphase Godunov Method for Compressible Multifluid and Multiphase Flows, Journal of Computational Physics, 150, 1999, 425-467. CrossRef | |
S. Lai, and F. S. Laspesa, Ignition Overpressure Measured on STS Lift-Off and Correlation with Subscale Model Tests, JANNAF, 13th Plume Technology Meeting, 1982. | |
E. J. Walsh, and P. M. Hart, Flight-Measured Lift-off Ignition Overpressure, A Correlation with Sub-scale Model Tests, Martin Marietta Aerospace, AIAA Paper, 1981, 81-2458. | |
D. Alvord, Ares 1-X Ignition Overpressure T+30 Day Analysis and Results, Jacobs ESTS Group, January 2010, Kennedy Space Center, FL, ESTSG-FY10-00793. | |
W. G. Reinecke, and G. D. Waldman, A Study of Drop Breakup Behind Strong Shocks with Applications to Flight, AVCO Report, AD-871218, May 1970. | |
J. Woo Jr., J. H. Jones, and S. H. Guest, A Study of Effects of Water Addition on Supersonic Gas Streams, JANNAF, 13th Plume Technology Meeting, 1982. | |
C. Crowe, M. Sommerfeld, and Y. Tsuji, Multiphase Flows with Droplets and Particles, CRC Press, New York, 1998. | |
G. O. Thomas, On the Conditions Required for Explosion Mitigation by Water Sprays, Transactions of the Institution of Chemical Engineers, 78, Part B, September 2000, 339-354. | |
D. Schwer, and K. Kailasanath, Blast Mitigation by Water Mist (2), Shock Wave Mitigation using Glass Particles and Water Droplets, NRL Memorandum Report, January 21, 2003, 6410-03-8658. | |
R. Ananth, H. D. Ladouceur, H. D. Willauer, J. P. Farley, and F. W. Williams, Effect of Water Mist on a Confined Blast, Suppression and Detection Research and Applications Technical Working Conference (SUPDET), Orlando, FL., March 11-13, 2008. | |
H. D. Willauer, R. Ananth, J. P. Farley, G. Back, M. Kennedy, J. O'Connor, and V. M. Gameiro, Blast Mitigation Using Water Mist: Test Series II, NRL Memorandum Report, March 12, 2009, 6180-09-9182. | |
G. Jourdan, L. Biamino, C. Mariani, C. Blanchot, E. Daniel, J. Massoni, L. Houas, R. Tosello, and D. Praguine, Attenuation of a Shock Wave Passing Through a Cloud of Water Droplets, Shock Waves, 20, No. 4, 2010, 285-296. CrossRef | |
H. Ikawa, and F. S. Laspesa, Space Shuttle SRM Ignition Overpressure Prediction Methodology, JANNAF, 13th Plume Technology Meeting, 1982. | |
C. Kiris, W. Chan, D. Kwak, and J. A. Housman, Time-Accurate Computational Analysis of the Flame Trench, The Fifth International Conference on Computational Fluid Dynamics, Seoul, Korea, July 7-11, 2008. | |
C. Kiris, J. A. Housman, and D. Kwak, Space-Time Convergence Analysis of a Ignition Overpressure in the Flame Trench, CFD Review 2010, World Scientific. | |
H. Ikawa, and F. S. Laspersa, Analytical Understanding of WTR Ignition/Duct Overpressure Induced by Space Shuttle Solid Rocket Motor Ignition Transient, AIAA/SAE/ASME 19th Joint Propulsion Conference, Seattle, WA, June 27-29, 1983. | |
J. Troyes, I. Dubois, V. Borie, and A. Boischot, Multi-phase Reactive Numerical Simulations of a Model Solid Rocket Motor Exhaust Jet, 42nd AIAA/ASME/SAI/ASEE Joint Propulsion Conference and Exhibit, Sacramento, CA, July 9-12, 2006. | |
F. Canabal III, Suppression of the Ignition Overpressure Generated by Launch Vehicles, Ph.D. Dissertation, Mechanical and Aerospace Engineering Department, University of Alabama, Huntsville, 2004. | |
F. Canabal III, and A. Frendi, "Study of the Ignition Overpressure Suppression Technique by Water Addition," Journal of Spacecraft and Rockets, 43, No. 4, 2006, 853-865. CrossRef | |
N. D. Moshman, G. V. Hobson and S. S. Sritharan, AMethod for Optimally Controlling Unsteady Shock Strength in One Dimension, AIAA Journal, accepted for publication July 2012. | |
R. Saurel, and R. Abgrall, A Simple Method for Compressible Multifluid Flows, SIAM Journal of Scientific Computing 21, No. 3, 2000, 1115-1145. CrossRef | |
R. Abgrall, How to Prevent Pressure Oscillations in Multicomponent Flow Calculations: A Quasi Conservative Approach, Journal of Computational Physics, 125, 1996, 150-160. CrossRef | |
IAPWS Industrial Formulation 1997 for the Thermodynamic Properties of Water and Steam. (IAPWS-IF97) | |
B. Texier, Lecture 2: Symmetrizable Systems, RMMC Summer School, Laramie, WY, June 2010. | |
S. K. Godunov, A Finite difference Method for the Numerical Computation of Discontinuous Solutions of the Equations of Fluid Dynamics, Matematicheskii Sbornik, 47, 1959, 257-393. | |
B. Van Leer, Toward the Ultimate Conservative Difference Scheme (5) A Second-Order Sequel to Godunov's Method, Journal of Computational Physics, 32, July 1979, 101-136. CrossRef | |
T. I. P. Shih, and W. J. Chyu, Approximate Factorization with Source Terms, AIAA Journal Technical Notes, 29, No. 10, 1759-1760. | |
Gad-el-Hak, M., Flow Control: Passive, Active and Reactive Flow Management, Cambridge University Press, New York, 2000. | |
Sritharan, S. S. editor. Optimal Control of Viscous Flow, SIAM Books, Philadelphia, PA, 1998. | |
Gunzburger, M. D. Perspectives in Flow Control and Optimization, SIAM Books, Philadelphia, PA, 2003. | |
A. Bressan, and A. Marson, A Maximum Principle for Optimally Controlled Systems of Conservations Laws, Rendiconti del Seminario Matematico della Universita di Padova, 94, 1995, 79-94. | |
Fursikov, A. V., Optimal Control of Distributed Systems: Theory and Applications. American Mathematical Society, Providence, Rhode Island, 2000. | |
A. Bressan, and A. Marson, A Variational Calculus for Discontinuous Solutions to Conservation Laws, Communications on Partial Differential Equations, 20, 1995, 1491-1552. CrossRef | |
S. Ulbrich, A Sensitivity and Adjoint Calculus for Discontinuous Solutions of Hyperbolic Conservation Laws with Source Terms, SIAM Journal of Control and Optimization, 41, 2002, 740-783. CrossRef | |
S. Ulbrich, Adjoint-Based Derivative Computations for the Optimal Control of Discontinuous Solution of Hyperbolic Conservation Laws, Systems and Control Letters, 3, 2003, 309-323. | |
Moshman, N. D. 2011 Optimal Control of Unsteady Shock Wave Attenuation in Single- and Two-Phase Flow with Application to Ignition Overpressure in Launch Vehicles. Ph.D. Dissertation, Mechanical and Astronautical Engineering Department, Naval Postgraduate School, Monterey, CA. | |
M. B. Giles, and N. A. Pierce, Adjoint Equations in CFD; Duality, Boundary Conditions and Solution Behavior, AIAA-97-1850, A97-32424, pp. 182-198. | |
R. Giering, and T. Kaminski, Recipes for Adjoint Code Construction, ACM Transactions on Mathematical Software, 24, No. 4, December 1998, 437-474. CrossRef | |
C. Bushens, and H. Maurer, SQP-Methods for Solving Optimal Control Problems with Control and State Constraints; Adjoint Variables, Sensitivity Analysis and Real-Time Control, Journal of Computational and Applied Mathematics, 120, 2000, 85-108. CrossRef | |
E. E. Prudencio, R. Byrd, and X. C. Cai, Parallel Full Space SQP Lagrange-Newton-Krylov-Schwarz Algorithms for PDE-Constrained Optimization Problems, SIAM Journal of Scientific Computation 27, No. 4, 2006, 1305-1328. CrossRef | |
M. K. Banda, and M. Herty, Adjoint IMEX-based Schemes for Control Problems Governed by Hyperbolic Conservation Laws, Computational Optimization and Applications, published online October 14, 2010, Springer, DOI: 10.1007/s10589-010-9362-2. | |
A. K. Alekseev, and I. M. Navon, On Adjoint Variables for Discontinuous Flow, Submitted for publication in Systems and Control Letters, 2002. | |
G. Sutton, and O. Biblarz, Solid Propellant Rocket Fundamentals, Rocket Propulsion Elements, 8th Ed., John Wiley and Sons. Hoboken, New Jersey, 2010, 437-438. | |
Cequel, Chemical Equilibrium in Excel, ©2003, Software and Engineering Associates, Inc. | |
CFD-FASTRAN User's Manual, version 2002, CFD Research Corporation, Huntsville, AL, 2002. |
Optimal Control of Shock Wave Attenuation using Liquid Water Droplets with Application to Ignition Overpressure in Launch Vehicles
Nathan MoshmanRelated information
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, Sivaguru SritharanRelated information1 700 Dyer Road Monterey, CA 93943
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