Ebook: Horst. Charge design considerations and their effect on pressure waves in guns
Author: Ingo W. Мау Albert W.
- Genre: Technique // Military equipment: Weapon
- Tags: Военные дисциплины, Баллистика и динамика выстрела, Боеприпасы, Пороховые заряды артиллерийских боеприпасов
- Language: English
- pdf
Technical report ARBRL-TR-
02277. US army armament research and development command.
Ballistic Research Laboratory. Aberdeen Proving Ground, Maryland. 1980, - 64 p.Combustion instability, usually manifested as longitudinal pressure waves, has long been a serious problem in the design of high-performance, conventional guns. The source of this phenomenon was identified correctly to lie in the ignition phase of the interior ballistic cycle. Only recently, however, has it been understood that the ignition phase not only involves functioning of the igniter train components themselves but also depends on such factors as distribution of ullage, flow restrictions, and propellant bed mobility. The concepts of local as well as macroscopic gas permeability have been shown to be important factors governing the formation, growth, and dissipation of pressure waves. High gas generation rates during the ignition and flamespreading phase, as defined by both burning surface and linear burning rates, also load to in-creased levels of traveling pressure waves. The integration of these concepts into two-phase-flow interior ballistic codes now is beginning to allow a more precise unraveling of the interaction among these complex processes.Contents:
Introduction.
Pressure-wave phenomenology.
Experimental considerations.
Charge-design factors influencing pressure waves.
Reliable gun ignition.
Conclusions.
02277. US army armament research and development command.
Ballistic Research Laboratory. Aberdeen Proving Ground, Maryland. 1980, - 64 p.Combustion instability, usually manifested as longitudinal pressure waves, has long been a serious problem in the design of high-performance, conventional guns. The source of this phenomenon was identified correctly to lie in the ignition phase of the interior ballistic cycle. Only recently, however, has it been understood that the ignition phase not only involves functioning of the igniter train components themselves but also depends on such factors as distribution of ullage, flow restrictions, and propellant bed mobility. The concepts of local as well as macroscopic gas permeability have been shown to be important factors governing the formation, growth, and dissipation of pressure waves. High gas generation rates during the ignition and flamespreading phase, as defined by both burning surface and linear burning rates, also load to in-creased levels of traveling pressure waves. The integration of these concepts into two-phase-flow interior ballistic codes now is beginning to allow a more precise unraveling of the interaction among these complex processes.Contents:
Introduction.
Pressure-wave phenomenology.
Experimental considerations.
Charge-design factors influencing pressure waves.
Reliable gun ignition.
Conclusions.
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