1. Ainley, D.G. and Mathieson, G.C.R., "An examination of the flow and pressure losses in blade rows of axial-flow turbines", HM Stationery Office, N.G.T.E Report, 33 pages, (1951).
2. Stenning, A.H., "Design of Turbines for High Energy Fuel Low Power Output Applications", MIT Dynamic Analysis and Control Laboratory, (1953).
3. fuer Thermische Turbomaschinen-Mitteilungen, Report. 1959 (4), Suter, P. and Traupel, W., "Investigation on windage loss of turbine rotors", Eidgenoessische Technische Hochschule-Institut fuer Turbomaschinen-Mitteilungen, Zurich, Vol. (4), 39 pages, (1959).
4. Roelke, R.J., "Miscellaneous Losses-Tip Clearance and Disk Friction", in Turbine Design and Applications, 24 pages, (1973).
5. Buckingham, Ed., "Windage Resistance of Steam Turbine Wheels", Engineer, pp. 362-364, (1914).
6. Doyle, M., "Theories for Predicting Partial-Admission Losses in Turbines", Prog. Aerosp. Sci., Vol. 29(4), pp. 489-490, (1962).
7. Ohlsson, G.O., "Partial-Admission Turbines", Journal of the Aerospace Science, Vol. 29(9), pp. 1017-1028, (1962).
8. Balge, O.E. and Binsley, R.L., "Axial Turbine Performance Evaluation Part A- Loss Geometry Relationships", J. Eng. Gas Turbines Power, pp. 341-348, (1968).
9. Klassen, H.A., "Cold-air investigation of effects of partial admission on performance of 3.75-inch mean-diameter single stage axial-flow turbine", NASA Report TND-4700, 23 pages, (1968).
10. Yahya, S.M. and Doyle, M.D.C., "Aerodynamic Losses in Partial Admission Turbines", Int. J. Mech. Sci., Vol. (11), pp. 417-431, (1969).
11. Verneau, A., "Supersonic turbines for organic fluid Rankine cycles from 3 to 1300 kW", Von Karman Inst. For Fluid Dynamics, Small High Pressure Ratio Turbines, Report No., N 88-14364 06-37, 55 pages, (1987).
12. Bohn, D., Gier, J. and Ziemann, M., "Influence of the cross-over channel geometry on the flow equalization in partial-admission turbines", VGB Powertech-English Edition, Vol. 78, pp. 49-54, (1998).
13. Cho, S.Y., Cho, C.H. and Kim, C., "Performance Prediction on a Partially Admitted Small Axial-Type Turbine", JSME Int J., Ser. B, Vol. 49(4): pp. 1290-1297, (2006).
14. آقایی طوق، رضا، مسگرپور طوسی، ابوالقاسم، "بررسی تجربی و عددی آثار پذیرش جزئی بر توزیع جریان در فضای محوری توربین فراصوت"، نشریه علوم کاربردی و محاسباتی در مکانیک، 24 (2)، ص 16، (2013).
15. Jeong, E., Lee, H.G. and Park, P.G., "Tip Clearance Effect on the Performance of a Shrouded Supersonic Impulse Turbine", J. Propul. Power, Vol. 24(6), pp. 1295-1300, (2008).
16. Jeong, E. and Kang, S.H. "Effect of Nozzle-Rotor Clearance on Turbine Performance", in ASME Joint U.S.-European Fluid Eng. Summer Meeting, Miami, Fl., Vol. (2), pp. 273-278, November-December, (2006).
17. Avsianikov, B.V., "Theory and calculation of feed systems’s elements (In Russian)", pp. 392-487, Machinestroeineh publication, Moscow, (1983).
18. Vasiliev, U.A., "Theory and Design of Gas turbines (In Russian)", pp. 168-221, Machinestroeineh publication, Moscow, , (1982).
19. Khalshevnicov, K.V., "Theory and Calculation of Turbomachines (In Russian)", pp. 241-396, Machinestroeineh publication, Moscow, (1979).
20. Taylor, B.N., "Guidelines for Evaluating and Expressing the Uncertainty of NIST Measurement Results", Diane publication, New York, (2009).
21. PTC, A., 22,"Gas Turbine Power Plants", American Society of Mechanical Engineers, New York, New York, (1997).
22. PTC, A., 10, "Performance Test Code on Compressors and Exhausters", American Society of Mechanical Engineers, New York, New York, (1997).
23. ISO 5389, "Turbocompressors Performance Test Code, in Turbocomp", (1992).
24. ISO Standard British, "British Standard Specification for Gas Turbine acceptance tests", (1989).
25. ANSI B36 10/19 nd., Carbon Alloy Pipes ASME Stainless Steel.
26. Bikov, N.N., "An Experimental Stand for Model Gas Turbines Research (In Russian)", Machinestroeineh publication, Moscow, pp. 118-402, (1956).
27. Celicov, V.A., "Gas Turbine Modeling by Heavy Gas (In Russian)", MAI publication, Moscow, (1957).
28. Celicov, V.A., "Physical Modeling of gas-dynamic process in power plants elements (In Russian)", MAI publication, Moscow, (1995).
29. McDaniels, D.M. and Snellgrove, L.M., "Liquid propulsion turbomachinery model testing", in SAE Technical paper, No. 921029, Aerotech'92 Conference, April 1, (1992).
30. آقایی طوق، رضا، مسگرپورطوسی، ابوالقاسم، "مطالعهی جریان در یک توربین فراصوت خاص و بررسی تأثیر تغییر هندسی لبهی پرهها بر عملکرد توربین"، نشریه علوم کاربردی و محاسباتی در مکانیک، 22(1)، (2011).
31. Aghaei-Togh, R. and Tousi, A.M., "Experimental and numerical investigation of design optimization of a partial admitted supersonic turbine", Propulsion and Power Research, Vol. (2), pp. 70-83, (2013).
32. Varma, A.K. and Soundranayagam, S., "Experimental study of a small partial admission axial turbine with low aspect ratio blade", Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, Vol. 228(1), pp. 20-34 (2012).
33. Jensen, J., Kristensen, A., Sorenson, S. and Houbak, N., "Mean value modeling of a small turbocharged diesel engine", in SAE Technical Paper 910070, SAE Detroit, Michigan, United States, (1991).
34. Biliayev, E. and Cherbakov, V., "Mathematical modeling of liquid engines", Machinestroeineh publication, Moscow, (1999).
35. Orkisz, M. and Stawarz, S., "Modeling of turbine engine axial-flow compressor and turbine characteristics", Journal of Propulsion and Power, Vol. 16(2), pp. 336-339, (2000).
36. Aghaei-Togh, R. and Tousi, A.M., "Flow pattern improvement in nozzle-rotor axial gap in impulse turbine", Aircraft Engineering and Aerospace Technology, Vol. 86(2), pp. 108-116, (2014).
37. Aghaei-Togh, R., Tousi, A.M., and Boroomand, M., "Design Optimization of a Partial Admitted Supersonic Turbine Using Genetic Algorithm and 3D Numerical Analysis", in International Mechanical Engineering Congress & Exposition ASME: Houston, Texas, USA, pp. 15-26, (2012).
38. آقایی طوق، رضا، مسگرپورطوسی، ابوالقاسم، "بهینهسازی پذیرش جزئی توربین فراصوت"، بیستمین کنفرانس مهندسی مکانیک، دانشگاه صنعتی امیرکبیر، تهران، (1391).
39. Kohl, R.C., Howard, Z.H. and Warren, J., "Effects of partial admission on performance of a gas turbine", NACA-TN-1807 Report, NASA Document ID: 19930082483, pp. 79-87, (1949).
40. Kacker, S.C. and Okapuu, U., "Mean line prediction method for axial flow turbine efficiency", Journal of Engineering for Power, Vol. 104(1), pp. 104-111, (1982).
41. Kline, S.J. and McClintock, F.A., "Analysis of Uncertainty in Single-Sample Experiments", Mechanical Engineering, Vol. 75, pp. 3-9, (1953).