Czasopismo
2000
|
Vol. XLVII, nr 1
|
5-20
Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Analiza zbiegania się fali detonacyjnej w polu magnetycznym.
Języki publikacji
Abstrakty
Influence of magnetic field on parameters of normal detonation wave and cumulation process of cylindrical detonation wave in gaseous explosive mixture was examined. A review of applications of generalised Chester-Chisnell-Whitham (CCW) method used for analysis of implosion processes of detonation waves is presented.
Zbadano wpływ pola magnetycznego na parametry normalnej fali detonacyjnej i proces kumulacji cylindrycznej fali detonacyjnej w gazowej mieszaninie wybuchowej. Przedstawiono przegląd zastosowań uogólnionej metody Chestera-Chisnell-Withama (CCW) do analizy procesów implozji fal detonacyjnych.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
5-20
Opis fizyczny
Twórcy
autor
- Military University of Technology, Institute of Optoelectronics, ul. S. Kaliskiego 2, 00-908 Warsaw, Poland, asarzyn@ack.wat.waw.pl
Bibliografia
- [1] Guderley G.: Starke kugelige und zylindrische Verdichtungsstosse in der Nahe des Kugelmitielpunktes bzw der Zylinderachse. Luftfahrtforschung, 19 (1942), 9.
- [2] Zeldovich Ya.B.: Converging cylindrical detonation wave (in Russian). ZETF, 36 (1959), 3.
- [3] Tyl J.: Implosion of a detonation wave in a magnetic field. J. Tech. Phys., 40 (1999), 4.
- [4] Tyl J., Włodarczyk E.: Compression of magnetic flux in a semiconductor by a convergent cylindrically symmetric shock wave. J. Tech. Phys., 30 (1989), 1.
- [5] Tyl J., Włodarczyk E.: Implosion of a cylindrical magnetohydrodynamic shock wave in a solid medium. J. Tech. Phys., 31 (1990), 1.
- [6] Tyl J.: The influence of the action of magnetic field on the phenomenon of implosion of a cylindrical Shockwave in gas. J. Tech. Phys., 33 (1992), 2.
- [7] Chester W.: The quasi-cylindrical shock tube. Phil. Mag., 45 (1954), 7.
- [8] Chisnell R.F.: The motion of a shock wave in a channel, with applications to cylindrical and spherical shock wave. J. Fluid Mech.k, 2 (1957), 3.
- [9] Whitham G.B.: On the propagation of shock waves through regions of non-uniform area or flow. J. Fluid Mech., 4 (1958), 4.
- [10] Whitham G.B.: Linear and nonlinear waves. Wiley, New York, 1974.
- [11] Tyl J., Włodarczyk E.: Analysis of concentric shock waves. J. Tech. Phys., 25 (1984), 1.
- [12] Tyl J.: Analysis of concentric detonation waves (in Polish). PhD Thesis., Warszawa, WAT, 1985.
- [13] Tyl J., Włodarczyk E.: Analysis of concentric detonation waves in gaseous explosive mixtures. J. Tech. Phys., 28 (1987), 3.
- [14] Tyl J., Włodarczyk E.: Propagation of concentric detonation waves in condensed explosives. J. Tech. Phys., 28 (1987), 4.
- [15] Tyl J., Włodarczyk E.: Implosion of a detonation wave in a gas mixture (in Polish). MTS, 27 (1989), 2.
- [16] Tyl J.: Analytical solution of the problem of convergent detonation wave with variable explosion heat. J. Tech. Phys., 32 (1991), 3-4.
- [17] Lee J.H., Lee B.H.K.: Cylindrical imploding shock waves. Phys. Fluids, 8 (1965), 12.
- [18] Tarver C.M., Urtiev P.A.: Theoretical modelling of converging and diverging detonation waves in solid and gaseous explosives. In: „Dynamics of Shock Waves, Explosions and Detonations" (p.369). Progress in Astronautics and Aeronautics, 1985.
- [19] Tyl J., Włodarczyk E.: Equations of state of the detonation products and explosives. Equations of the detonation macrokinetics. (Survey of the literature data) (in Polish). MTS, 24 (1986), 1/2.
- [20] Lee E., Finger M., Collins W.: JWL equation of state coefficients for high explosives. Report UCID-16189, 1973.
- [21] Tyl .T., Włodarczyk E.: Equation of state of detonation products of octogen. J. Tech. Phys., 24(1983), 2.
- [22] Nagayama K.: New method of magnetic flux compression by means of the propagation of shock-induced metallic transition in semiconductors. Appl. Phys. Lett., 38 (1981), 2.
- [23] Tyl J., Włodarczyk E.: Theoretical and experimental investigation into problems of convergent detonation waves. Survey of literature data. J. Tech. Phys., 28 (1987), 2,
- [24] Jelkind A.I., Gusar F.N.: Measurement of electric conductance behind a front of detonation wave propagating in TNT (in Russian). FGV, 22 (1986), 5.
- [25] Zababahin E.I., Zababahin I.E.: Phenomena of unlimited cumulation (in Russian). Nauka, Moscow, 1988.
- [26] Verma B.G., Vishwakarma J.P.: Converging cylindrical detonation waves in magnetogasdynamics. Indian J. Pure Appl. Math., 10 (1979), 6.
- [27] Tyl J.: Cumulative effects at the front of annular detonation wave. J. Tech. Phys., 40 (1999), 2.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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