TECHNICAL PAPERS
Trommsdorff, W., "High-Velocity Free-Flying Ram-Jet Units (TR-Missiles)-Research Work at the German Army Ordnance," AGARD First Guided Missiles Seminar, Munich, Germany, April, 1956.
R.G. Veraar, R. Oosthuisen, K. Andersson, "Ramjet Propulsion for Projecectiles-an Overview of Worldwide Achievements and Future Opportunities," International Journal of Energetic Materials and Chemical Propulsion, Vol. 21, Issue 5, pp. 1-62, 2022.
10.1615/IntJEnergeticMaterialsChemProp.2022038741Kim, K.S. and Sin, J.H., "Necessity and Development Trends of Ramjet Propelled Projectile" Defense and Technology, Vol. 484, pp. 124-131, 2019.
Ronald S. Fry, "A Century of Ramjet Propulsion Technology Evolution," Journal of Propulsion and Power, Vol. 20, No. 1, pp. 27-58, January-February 2004.
10.2514/1.9178Park, I.S. and Han, S.J., "Overseas Official Trip Report(Kick-off Meeting for Fluidic Design Results Analysis of Projectile Configuration)," Agency for Defense Development Report, ADDR-621-231666, 2023.
Park, I.S. and Park, J.W., "Overseas Official Trip Report(Discussion on the Acquisition Permitted Project and Planning of International Co-researching Program(3rd Quarter of a Year))," Agency for Defense Development Report, ADDR-621-232208, 2023.
Thorstein Korsvold, "Boeing and Nammo Team to Develop Guided Artillery Projectile," World Wide Web location, https://www.nammo.com/story/boeing-and- nammo-team-to-develop-guided-artillery-projectile/, 2019.
Raytheon Missiles & Defense, "Raytheon Missiles and Defense, TNO Unveil New Ramjet-Powered Artillery Round," World Wide Web location, https://www.epicos. com/article/578830/raytheon-missiles-and- defense-tno-unveil-new-ramjet-powered-artillery-round, 2020.
Park, I.S. and et al., "Technology Trend Investigation and Analysis Report on the Solid Fuel Based Projectile," Agency for Defense Development Report, 2024(to be published).
Jones, C.E., "Investigations into the Variation of the Internal Ballistics of a Solid Fuel Ramjet through Combustor Design," MS thesis, Naval Postgraduate School, Monterey, C.A., U.S.A., September, 1973.
Mady, C.J., "Effect of Configuration Variables on Performance of Solid Fuel Ramjets," MS thesis, Naval Postgraduate School, Monterey, C.A., U.S.A., June, 1977.
Mady, C.J., Hickey, P.J., and Netzer, D.W., "Combustion Behavior of Solid-Fuel Ramjets," Journal of Spacecraft Rockets, Vol. 15, No. 3, pp. 131-132, 1978.
10.2514/3.57296Netzer, D.W., "Modelling Solid-Fuel Ramjet Combustion," Journal of Spacecraft Rockets, Vol. 14, No. 12, pp. 762-766, 1977.
10.2514/3.27994Netzer, D.W., "Model Applications to Solid-Fuel Ramjet Combustion," Journal of Spacecraft Rockets, Vol. 15, No. 5, pp. 263- 264, 1978.
10.2514/3.57316Stevenson, C.A., "An Adaptation and Validation of a Primitive Variable Mathematical Model for Predicting the Flows in Turbojet Test Cells and Solid Fuel Ramjets," MS thesis, Naval Postgraduate School, Monterey, C.A., U.S.A., June, 1979.
Stevenson, C.A. and Netzer, D.W., "Primitive- Variable Model Applications to Solid-Fuel Ramjet Combustion," Journal of Spacecraft Rockets, Vol. 18, No. 1, pp. 89-94, 1981.
10.2514/3.28050Campbell, W.H., "An Experimental Investigation of the Effects of Swirling Air Flows on the Combustion Properties of a Solid Fuel Ramjet Motor," MS thesis, Naval Postgraduate School, Monterey, C.A., U.S.A., September, 1985.
Binn, B.A., "A Comparison of Solid Fuel Ramjet Flow Characteristics and Combustion Behavior," MS thesis, Naval Postgraduate School, Monterey, C.A., U.S.A., December, 1979.
Charles, C.K., "An Experimental Investigation of Various Metallic/Polymer Fuels in a Two-Dimensional Solid Fuel Ramjet," MS thesis, Naval Postgraduate School, Monterey, C.A., U.S.A., March, 1986.
Karadimitris, A., Scott, C., Netzer, D., and Gany, A., "Regression and Combustion Characteristics of Boron Containing Fuels for Solid Fuel Ramjets," 26th JANNAF Combustion Meeting, Pasadena, C.A., October 23-27, 1989.
Netzer, D.W., Gany, A., Karadimitirs, A., and Scott, C., "Regression and Combustion Characteristics of Boron Containing Fuels for Solid Fuel Ramjets," Journal of Propulsion and Power, Vol. 7, No. 3, pp. 341-347, 1991.
10.2514/3.23332Wooldridge, R.C., "An Experimental Investigation of the Ignition and Flammability Limits of Various Hydrocarbon Fuels in a Two-Dimensional Solid Fuel Ramjet," MS Thesis, Naval Postgraduate School, Monterey, C.A, U.S.A., June, 1987.
Lee, T.H. and Netzer, D.W., "Temperature Effects on Solid-Fuel Ramjet Fuel Properties and Combustion", Journal of Propulsion and Power, Vol. 8, No. 3, pp. 721-723, 1992.
10.2514/3.23539King, M.K., "Ignition and Combustion of Boron Particles and Clouds," Journal of Spacecraft Rockets, Vol. 19, No. 4, pp. 294- 306, 1982.
10.2514/3.62256Komar, J.J., Taylor, G.L., and King, M.K., "Diagnostics of Single Particle Boron Combustion," 21st Aerospace Sciences Meeting, AIAA-1983-70, Reno, NV, January 10-13, 1983.
10.2514/6.1983-70Limage, C.R. and Sargent, W.H., "Propulsion Integration Considerations for Advanced Boron Powered Ramjet," 16th Joint Propulsion Conference, AIAA-1980-1283, Hartford, CT, June 30-July 2, 1980.
10.2514/6.1980-1283King, M.K., Komar, J., and Fry, S.R., "Fuel-Rich Solid Propellant Boron Combustion," Atlantic Research Corp., Report 41-5032-2, V.A., U.S.A., May 31, 1983.
King, M.K., Komar, J., and Fry, S.R., "Fuel- Rich Solid Propellant Boron Combustion," Atlantic Research Corporation, Report 41-5032-3, V.A., U.S.A., May 31, 1984.
Walterick, R.E., Jagoda, J.L., Richardson, C.R.J., de Groot, W.A., Strahle, W.C., and Hubbartt, J.E., "Experiments and Computation on Two-Dimensional Turbulent Flow over a Backward Facing Step," 22nd Aerospace Sciences Meeting, AIAA-1984-13, Reno, NV, Jan. 9-12, 1984.
10.2514/6.1984-13Richardson, J., de Groot, W.A., Jagoda, J.L., Walterick, R.E., Hubbartt, J.E., and Strahle, W.C., "Solid Fuel Ramjet Simulator Results: Experiment and Analysis in Cold Flow," Journal of Propulsion and Power, Vol. 1, No. 6, pp. 488-493, 1985.
10.2514/3.22833Wu, M.Z., Walterick, R.E., de Groot, W.A., Jagoda, J.L., and Strahle, W.C., "Turbulent Diffusion Flame Properties behind a Backward-Facing Step," Journal of Propulsion and. Power, Vol. 8, No. 5, pp. 948-953, 1992.
10.2514/3.23577Kuo, K.K., Litzinger, T.A., and Yang, V., "Fundamental Combustion Processes of Particle-Laden Shear Flows in Solid Fuel Ramjets," Pennsylvania State University, Progress, Report ONR Contract No. N00014-86-K0468, PA, USA, 1989.
Meyer, S.E., Heister, S.D., Slabaugh, C., Lucht, R.P., Pratt, A., Gejji, R.M., Bedard, M., and Lemcherfi, A., "Design and Development of the High Pressure Combustion Laboratory at Purdue University," 53rd Joint Propulsion Conference, AIAA 2017-4965, Atlanta, G.A., July 10-12, 2017.
10.2514/6.2017-4965Senior, W.C.B., Evans, J.V., Gejji, R.M., and Slabaugh, C.D., "Development and Investigation of an Optically Accessible Solid Fuel Ramjet Combustor," AIAA 2021 Science and Technology Forum, January 19-21, 2021.
10.2514/6.2021-1019Evans, J.V., Senior, W.C.B., Gejji, R.M., Strahan, N.L., and Slabaugh, C.D., "Performance of an SFRJ with an Aft-Mixing Section Utilizing Bypass Air," AIAA 2021 Science and Technology Forum, West Lafayette, IN, January 1921, 2021.
10.2514/6.2021-1876McDonald, B., Rice, J., and Stewart, J., "Decomposition Characteristics of an Elemental Sulfur Doped Polysulfide Based Ramjet Fuel," Combustion and Flame, Vol. 176, pp. 1-11, 2017.
10.1016/j.combustflame.2016.10.012McDonald, B., Rice, J., and Stewart, J., "Mechanical and Thermodynamic Characterization of a Copolymer of LP-33 Polysulfide and Hydroxyl Terminated Polybutadiene for Solid Fuel Ramjet Applications," Combustion and Flame, Vol. 184, pp. 11-19, 2017.
10.1016/j.combustflame.2017.05.026McDonald, B. and Rice, J., "Solid Fuel Ramjet Fuel Optimization for Maximum Thrust to Drag Ratio and Impulse Density Subject to Geometric Restraints on Missile Outer Mold Line," Aerospace Science and Technology, Vol. 75, pp. 47-57, 2018.
10.1016/j.ast.2018.01.008Nabity, J.A., Lee, T.H., Natan, B., and Netzer, D.W., "Combustion Behavior of Boron Carbide in Solid Fuel Ramjets," International Journal of Energetic Materials and Chemical Propulsion, Vol. 2, Nos. 1-6, pp. 287-302, 1993.
10.1615/IntJEnergeticMaterialsChemProp.v2.i1-6.160Hedman, T.D., Quigley, J.N., Kalman, J., and Washburn, E.B., "Small-Scale Solid Ramjet Fuel Ignition Experiment," Journal of Propulsion and Power, Vol. 33, No. 5, pp. 1315-1319, 2017.
10.2514/1.B36338Young, G., Hromisin, S., Loeffler, S., and Connell, T.L., "Effect of Oxidizer Type on Solid Fuel Combustion," Journal of Propulsion and Power, Vol. 36, No. 2, pp. 248-255, 2020.
10.2514/1.B37561Sandall, E., Kalman, J., Quigley, J.N., Munro, S., and Hedman, T.D., "A Study of Solid Ramjet Fuel Containing Boron- Magnesium Mixtures," Journal of Propulsion and Power, Vol. 6, No. 4, pp. 243-252, 2017.
10.1016/j.jppr.2017.11.004Jiang, Y., Dincer Yilmaz, N.E., Barker, K.P., Baek, J., Xia, Y., and Zheng, X., "Enhancing Mechanical and Combustion Performance of Boron/Polymer Composites via Boron Particle Fictionalization," Applied Materials and Interfaces, Vol. 13, No. 24, pp. 28908- 28915, 2021.
10.1021/acsami.1c0672734110148Korting, P.A.O.G. and Schoyer, H.F.R., "Experimental Connected Pipe Facility for Solid Fuel Ramjet Combustion Studies," 15th International Congress ICT, Karlsruhe, Germany, 1984.
Korting, P.A.O.G. and Schoyer, H.F.R., "Determination of the Regression Rate in Solid Fuel Ramjets by Means of the Ultrasonic Pulse Echo Method," Heat Transfer in Fire and Combustion Systems, HTD-Vol. 45, pp. 347-353, 1985.
Korting, P.A.O.G., van der Geld, C.W.M., Wijchers, T., and Schoyer, H.F.R., "Combustion of Polymethylmethacrylate in a Solid Fuel Ramjet," Journal of Propulsion and Power, Vol. 6, No. 3, pp. 263-272, 1990.
10.2514/3.25429Elands, P.J.M., "The Prediction of the Flow and Combustion in a Solid Fuel Combustion Chamber by Means of Two Combustion Models Based on the Diffusion Flame Concept," 23rd Joint Propulsion Conference, AIAA-1987-1702, San Diego, C.A., 1987.
10.2514/6.1987-1702Elands, P.J.M. and Vos, J.B., "A Theoretical Investigation of the Flow and Combustion in a Solid Fuel Combustion Chamber," International Specialists Meeting on Solid Fuel Utilization, Lisbon, Portugal, July, 1987.
Elands, P.J.M., "The Calculation of Chemical Reactions and Turbulent Flows Using a Super Computer," Rekenen met de SX-2 Conference, Amsterdam, The Netherlands, June, 1988.
Vos, J.B., "Calculating Turbulent Reacting Flows Using Finite Chemical Kinetics," 22nd Joint Propulsion Conference, AIAA-1986-1655, Huntsville, A.L., 1986.
Vos, J.B., "The Calculation of Turbulent Reacting Flows with a Combustion Model Based on Finite Chemical Kinetics," PhD thesis, Delft University of technology, The Netherlands, April, 1987.
Vos, J.B., "Calculating Turbulent Reacting Flows Using Finite Chemical Kinetics," AIAA Journal, Vol. 25, No. 10, pp. 1365- 1372, 1987.
10.2514/3.9791Vos, J.B., "The Calculation of Chemical Reacting Turbulent Boundary Layers Using the Cray-1 Supercomputer, in Algorithms and Applications on Vector and Parallel Computers," Elsevier Science Publishers, Amsterdam, The Netherlands, 1987.
10.2514/6.1986-1655Vos, J.B., "Simulating an Ignition Pulse in Turbulent Reacting Flows Calculated with a Finite Chemical Kinetics Combustion Model," 23rd Joint Propulsion Conference, AIAA-1987-1979, San Diego, C.A., 1987.
10.2514/6.1987-1979Vos, J.B., A "Numerical Technique to Calculate Reacting Flows Using Finite Rate Chemical Kinetics," 7th GAMM Conference on Numerical Methods in Fluid Mechanics, vol. 20, Vieweg, Braunschweig, Germany, 1988.
De Wilde, J.P., "A Fuel Pyrolysis Model for Combustion Calculations," 27th Joint Propulsion Conference, AIAA-1991-1868, Sacramento, C.A., 1991.
10.2514/6.1991-1868Wittenberg, H., "Introduction of the Solid Fuel Combustion Chamber Project," Symposium Procedure 'High Speed Airbreathing Propulsion, the Solid Fuel Combustion Chamber and Beyond', "Rijswijk, The Netherlands, June 7, 1991.
Schulte, G. and Pein, R., "Regression Rate Study for a Solid Fuel Ramjet," 15th Congress of the International Council of the Aeronautical Sciences, pp. 1331-1336, 1986.
Schulte, G., "Fuel Regression and Flame Stabilization Studies of Solid-Fuel Ramjets," Journal of Propulsion and Power, Vol. 2, No. 4, pp. 301-304, 1986.
10.2514/3.22886Schulte, G., Pein, R., and Hogl, A., "Temperature and Concentration Measurements in a Solid Fuel Ramjet Combustion Chamber," Journal of Propulsion and Power, Vol. 3, No. 2, pp. 114-120, 1987.
10.2514/3.22962Dusterhaus, D.A. and Hogl, A., "Measurement in a Solid Fuel Ramjet Combustion with Swirl," 24th Joint Propulsion Conference, AIAA-1988-3045, Boston, M.A., July 11-13, 1988.
Pein, R. and Vinnemeier, F., "The Influence of Swirl and Fuel Composition of Boron- Containing Fuels on Combustion in a Solid Fuel Ramjet Combustion Chamber," 25th Joint Propulsion Conference, AIAA-1989-2885, Monterey, C.A., July 10-13, 1989.
10.2514/6.1989-2885Pein, R. and Vinnemeier, F., "Swirl and Fuel Composition Effects on Boron Combustion in Solid-Fuel Ramjets," Journal of Propulsion and Power, Vol. 8, No. 3, pp. 609-614, 1992.
10.2514/3.23522Vinnemeier, F.M. and de Wilde, J.P., "Heat Transfer in a Solid Fuel Ramjet Combustor," 5th Joint Thermophysics and Heat Transfer Conference, AIAA 90-1783, Seattle, WA, June 18-20, 1990.
10.2514/6.1990-1783Eisenreich, N., Borne, L., Lee, R.S., Forbes, J.W., and Ciezki, H.K., "Performance of Energetic Materials, in Energetic Materials," U. Teipel, Ed., Weinheim, Germany: Wiley- VCH, pp. 509-602, 2005.
10.1002/3527603921.ch13Hussmann, B. and Pfitzner, M., "Extended Combustion Model for Single Boron Particles-Part I: Theory," University of the Federal Armed Forces Munich, Vol. 157, No. 4, pp. 803-821, 2010.
10.1016/j.combustflame.2009.12.010Hussmann, B. and Pfitzner, M., "Extended Combustion Model for Single Boron Particles-Part II: Validation," Combustion and Flame, Vol. 157, No. 4, pp. 822-833, 2010.
10.1016/j.combustflame.2009.12.009Gany, A. and Netzer, D.W., "Combustion Studies of Metallized Fuels for Solid-Fuel Ramjets," Journal of Propulsion and Power, Vol. 2, No. 5, pp. 423-427, 1986.
10.2514/3.22924Natan, B. and Gany, A., "Ignition and Combustion of Individual Boron Particles in the Flowfield of a Solid Fuel Ramjet," 23rd Joint Propulsion Conference, AIAA- 1987-2034, San Diego, C.A., June 29-July 2, 1987.
10.2514/6.1987-2034Natan, B. and Gany, A., "Effects of Bypass Air on the Combustion of Boron Particles in a Solid Fuel Ramjet," 25th Joint Propulsion Conference, AIAA-1989-2886, Monterey, CA, July 10-13, 1989.
10.2514/6.1989-28862679105Natan, B. and Gany, A., "Ignition and Combustion of Boron Particles in the Flowfield of a Solid Fuel Ramjet," Journal of Propulsion and Power, Vol. 7, No. 1, pp. 37-43, 1991.
10.2514/3.23291Natan, B. and Gany, A., "Effects of Bypass Air on Boron Combustion in Solid Fuel Ramjets," Journal of Propulsion and Power, Vol. 9, No. 1, pp. 155-157, 1993.
10.2514/3.11499Hadar, I. and Gany, A., "Effect of Fuel Properties on the Burning Characteristics in a Solid Fuel Ramjet," 10th International Symposium on Airbreathing Engines, ISABE 91-7135, September, 1991.
Hadar, I. and Gany, A., "Fuel Regression Mechanism in a Solid Fuel Ramjet, Technion," Propellants Explosives, Pyrotechnics, Vol. 17, pp. 70-76, 1992.
10.1002/prep.19920170205Ben-Arosh, R. and Gany, A., "Similarity and Scale Effects in Solid-Fuel Ramjet Combustors," Journal of Propulsion and Power, Vol. 8, No. 3, 1992.
10.2514/3.23523Povitsky, A. and Goldman, Y., "Boron Particle Ignition in High-Speed Flow, Technion," AIAA-1993-2202, 29th Joint Propulsion Conference, Monterey, C.A., June 28-30, 1993.
10.2514/6.1993-2202Natan, B. and Gany, A., "Effects of Bypass Air on Boron Combustion in Solid Fuel Ramjets," Journal of Propulsion and Power, Vol. 9, No. 1, pp. 155-157, 1993.
10.2514/3.11499Natan, B. and Gany, A., "Combustion Characteristics of a Boron-Fueled Solid Fuel Ramjet with Aft-Burner," Journal of Propulsion and Power, Vol. 9, No. 5, pp. 694-701, 1993.
10.2514/3.23677Natan, B. and Netzer, D.W., "Experimental Investigation of the Effect of Bypass Air on Boron Combustion in a Solid Fuel Ramjet," International Journal of Energetic Matererial Chemestry Propulsion, Vol. 2, Nos. 1-6, pp. 427-437, 1993.
10.1615/IntJEnergeticMaterialsChemProp.v2.i1-6.260Natan, B. and Netzer, D.W., "Boron-Carbide Combustion in Solid Fuel Ramjets Using Bypass Air. Part I: Experimental Investigation," Propellants Explosive Pyrotechnic, Vol. 21, No. 6, pp. 289-294, 1996.
10.1002/prep.19960210602Natan, B. and Netzer, D.W., "Boron-Carbide Combustion in Solid Fuel Ramjets Using Bypass Air. Part II: Theoretical Investigation," Propellants Explosive Pyrotechnic, Vol. 22, No. 1, pp. 6-10, 1997.
10.1002/prep.19970220104Gany, A., "Comprehensive Consideration of Boron Combustion in Airbreathing Propulsion," 42nd Joint Propulsion Conference, Sacramento, CA, July 9-12, 2006.
10.2514/6.2006-4567Gany, A., "Thermodynamic Limitation on Boron Energy Realization in Ramjet Propulsion," Acta Astronaut., Vol. 98, No. 1, pp. 128-132, 2014.
10.1016/j.actaastro.2014.01.023Pelosi-Pinhas, D. and Gany, A., "Solid-Fuel Ramjet Regulation by Means of an Air- Division Valve," Journal of Propulsion and Power, Vol. 16, No. 6, pp. 1069-1074, 2000.
10.2514/2.5677Pelosi-Pinhas, D. and Gany, A., "Bypass- Regulated Solid Fuel Ramjet Combustor in Variable Flight Conditions," Journal of Propulsion and Power, Vol. 19, No. 1, pp. 73-80, 2003.
10.2514/2.6082Saraf, S. and Gany, A., "Experimental Investigation of Metalized Solid Fuel Ramjet Combustor," International Journal of Energetic Material and Chemical Propulsion, Vol. 11, No. 2, pp. 107-121, 2012.
10.1615/IntJEnergeticMaterialsChemProp.2012001388Muller, G.T. and Gany, A., "Burning Phenomena of a Polymeric Fuel Containing Expandable Graphite," Propellants Explosive Pyrotechnic, Vol. 45, No. 11, pp. 1764-1768, 2020.
10.1002/prep.202000138Raghunandan, B.N., Ravichandran, E.R., and Marathe, A.G., "Combustion Related to Solid Fuel Ramjets," Journal of Propulsion and Power, Vol. 1, No. 6, pp. 502-504, 1985.
10.2514/3.22837Krishnan, S. and George, P., "Solid Fuel Ramjet Combustor Design," Prog. Aerospace Science, Vol. 34, pp. 219-256, 1998.
10.1016/S0376-0421(98)00005-0Basu, T.B. and Khatri, K.N., "Effect of Differential Thrust Generation by Uni- Dimensional Ramjet Flow on the Flight of the Solid Fuel Ramjet Projectile through the Atmosphere," 11th International Symposium on Ballistics, Brussels, Belgium, 1989.
Basu, T.B., "Optimization Studies for Solid Fuel Ramjet Projectiles," 12th International Symposium on Ballistics, San Antonio, Texas, U.S.A., 1990.
Basu, T.B., "Long Range Artillery Shooting by Controlled Solid Fuel Ramjet Projectile (SFRJ)," 13th International Symposium on Ballistics, Stockholm, Sweden, 1992.
Yang, J.T. and Wu, C.Y.Y., "Solid-Fuel Regression during Ignition Transient in a Ramjet," 25th International Symposium on Combustion, Vol. 25, No. 1, pp. 1603-1608, 1994.
10.1016/S0082-0784(06)80806-4Wu, C.Y.Y. and Yang, J.T., "Effects of Inlet Configuration on Ignition and Fuel Regression behind a Backstep," Journal of Propulsion and Power, Vol. 13, No. 6, pp. 714-720, 1997.
10.2514/2.5243Liou, T.M. and Hwang, P.H., "Numerical Visualization of Flame Spreading in Solid-Fuel Ramjet Combustors," Journal of Flow Visualization Image Process, Vol. 3, Nos. 2-3, pp. 193-205, 1996.
10.1615/JFlowVisImageProc.v3.i2-3.70Liou, T.M., Hwang, P.W., Li, Y.C., and Chan, C.Y., "Flame Stability Analysis of Turbulent Non-Premixed Reacting Flow in a Simulated Solid-Fuel Ramjet Combustor," The Chinese Journal of Mechanics-Series A, Vol. 18, No. 1, pp. 43-51, 2002.
10.1017/S172771910000201XHsiao, F.C., Lai, Y.H., and Yang, J.T., "Vortical Structure of Reacting Flow in a Sudden-Expansion Combustor with Solid Fuel," Journal of Propulsion and Power, Vol. 25, No. 5, pp. 1145-1148, 2009.
10.2514/1.41914Yang, J.T., Hsiao, F.C., and Lin, Y.C., "A Study of Flame Spread over Convectively Ignited Solid Fuel in a Sudden-Expansion Combustor," 44th Joint Propulsion Conference, AIAA-2008-5039, Hartford, C.T., July 21-23, 2008.
10.2514/6.2008-5039Chen, X., Zhou, C., Zheng, Y., and Ju, Y., "Influence of Cowl Leading Edge on Inlet Performance of Ramjet Assisted-Range Projectiles," 41st Joint Propulsion Conference, Tucson, A.Z., July 10-13, 2005.
10.2514/6.2005-3642Chen, X., Zheng, Y., Zhou, C., and Ju, Y., "Numerical Simulation on Ramjet Inlet with Different Cowl Leading Edge," 35th Fluid Dynamics Conference, Toronto, Canada, June 6-9, 2005.
10.2514/6.2005-5288Chen, X., Zheng, J., and Liang, H., "Experimental and Numerical Research on Inlet of Ramjet Assisted Projectile," 43rd Joint Propulsion Conference, Cincinnati, O.H., July 8-11, 2007.
10.2514/6.2007-5010Sun, B., Wu, X.S., Cai, W.X., and Xia, Q., "Numerical Simulation of Pitot Solid Fuel Ramjets," Proc. of IEEE International Conference on Computational Intelligence and Software Engineering, Wuhan, China, Dec 11-13, 2009.
10.1109/CISE.2009.5365984Xia, Q., Wu, X., Sun, B., and Yu, L., "Three-Dimensional Numerical Simulation on Inlet of Solid Fuel Ramjet Projectile," 2nd International Conference on Modelling and Simulation, Vol. 7, Manchester, England, U.K., May 21-22, 2009.
Gong, L., Chen, X., Yang, H., Li, W., and Zhou, C., "Investigation on the Effect of Diaphragm on the Combustion Characteristics of Solid-Fuel Ramjet," Acta Astronaut., Vol. 139, pp. 449-462, 2017.
10.1016/j.actaastro.2017.07.031Gong, L., Chen, X., Musa, O., Yang, H., and Zhou, C., "Numerical and Experimental Investigation of the Effect of Geometry on Combustion Characteristics of Solid-Fuel Ramjet," Acta Astronaut, Vol. 141, pp. 110- 122, 2017.
10.1016/j.actaastro.2017.09.027Gong, L., Chen, X., and Musa, O., "Modeling of the Turbulent Combustion in Solid-Fuel Ramjet," Energy Procedia, Vol. 141, pp. 267-272, 2017.
10.1016/j.egypro.2017.11.104Musa, O., Xiong, C., and Changsheng, Z., "Experimental and Numerical Investigation on the Ignition and Combustion Stability in Solid Fuel Ramjet with Swirling Flow," Acta Astronaut., Vol. 137, pp. 157-167, 2017.
10.1016/j.actaastro.2017.04.021Musa, O., Xiong, C., and Changsheng, Z., "Combustion Characteristics and Turbulence Modeling of Swirling Reacting Flow in Solid Fuel Ramjet, Acta Astronaut, Vol. 139, pp. 1-17, 2017.
10.1016/j.actaastro.2017.06.023Musa, O., Xiong, C., Changsheng, Z., and Li, W., "Effect of Inlet Conditions on Swirling Turbulent Reacting Flows in a Solid Fuel Ramjet Engine," Applied Thermal Engineering, Vol. 113, pp. 186-207, 2017.
10.1016/j.applthermaleng.2016.11.023Musa, O., Xiong, C., Changsheng, Z., and Min, Z., "Combustion Modeling of Unsteady Reacting Swirling Flow in Solid Fuel Ramjet," 2017 International Conference on Mechanical, System and Control Engineering, ICMSC 2017, pp. 115-120, 2017.
10.1109/ICMSC.2017.7959454Musa, O., Xiong, C., Changsheng, Z., and Min, Z., "Validation of Multi-Physics Coupling Code for Unsteady Reacting Swirling Flow in Solid Fuel Ramjet," Proceeding of 2nd International Conference on Frontiers of Sensors Technologies, ICFST 2017, pp. 86-89, 2017.
10.1109/ICFST.2017.8210479Musa, O., Xiong, C., Chang-sheng, Z., Ying- kun, L., and Wen-He, L., "Investigations on the Influence of Swirl Intensity on Solid-Fuel Ramjet Engine," Computers and Fluids, Vol. 167, pp. 82-99, 2018.
10.1016/j.compfluid.2018.02.033Li, L., Chen, X., Zhou, C., Li, W., and Zhu, M., "Experimental and Model Investigation on Agglomeration of Aluminized Fuel-Rich Propellant in Solid Fuel Ramjet," Combustion and Flame, Vol. 219, pp. 437-448, 2020.
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- Publisher :The Korean Society of Propulsion Engineers
- Publisher(Ko) :한국추진공학회
- Journal Title :Journal of the Korean Society of Propulsion Engineers
- Journal Title(Ko) :한국추진공학회지
- Volume : 28
- No :3
- Pages :128-146
- Received Date : 2024-02-06
- Revised Date : 2024-03-20
- Accepted Date : 2024-03-25
- DOI :https://doi.org/10.6108/KSPE.2024.28.3.128


Journal of the Korean Society of Propulsion Engineers








