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Information Journal Paper

Title

AN ESTIMATION OF DROPLET INITIAL SIZE IN EXPLOSIVE DISPERSAL OF LIQUID FUEL FROM FUEL-AIR EXPLOSIVE DEVICES

Pages

  1-12

Abstract

 Fuel–air explosive devices are used to disperse liquid fuels into open atmosphere and create detonation waves in the resultant cloud. To numerically study of flow field inside the cloud, the initial conditions of injection as well as the droplet initial size should be designated. In the present paper the primary break up of liquid fuel dispersed from a FAE device was simulated by using FILM INSTABILITY MODEL and a computer code was written to perform the calculations. Experimental results were used to validate the numerical one and the estimated droplet initial mean size was given to a far field simulation code as input data. Then the result of this latter simulation was compared with the related experimental results. With regard to numerical and experimental results, we proposed an interval to estimate the initial size of droplet dispersed from a FAE device. Generally, the results show mean droplet diameter is of centimeter order of magnitude.

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  • Cite

    APA: Copy

    DOUSTDAR, M.M.. (2012). AN ESTIMATION OF DROPLET INITIAL SIZE IN EXPLOSIVE DISPERSAL OF LIQUID FUEL FROM FUEL-AIR EXPLOSIVE DEVICES. AEROSPACE MECHANICS JOURNAL, 8(2 (28) (HEAT TRANSFER AND PROPULSION)), 1-12. SID. https://sid.ir/paper/102085/en

    Vancouver: Copy

    DOUSTDAR M.M.. AN ESTIMATION OF DROPLET INITIAL SIZE IN EXPLOSIVE DISPERSAL OF LIQUID FUEL FROM FUEL-AIR EXPLOSIVE DEVICES. AEROSPACE MECHANICS JOURNAL[Internet]. 2012;8(2 (28) (HEAT TRANSFER AND PROPULSION)):1-12. Available from: https://sid.ir/paper/102085/en

    IEEE: Copy

    M.M. DOUSTDAR, “AN ESTIMATION OF DROPLET INITIAL SIZE IN EXPLOSIVE DISPERSAL OF LIQUID FUEL FROM FUEL-AIR EXPLOSIVE DEVICES,” AEROSPACE MECHANICS JOURNAL, vol. 8, no. 2 (28) (HEAT TRANSFER AND PROPULSION), pp. 1–12, 2012, [Online]. Available: https://sid.ir/paper/102085/en

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