2017
DOI: 10.2322/tjsass.60.77
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Modeling and Stability Analysis of Pogo Vibration in Liquid-Propellant Rockets with a Two-Propellant System

Abstract: Considering the coupling interaction between oxidant system and fuel system in liquid-propellant rockets, the modeling and stability problem of Pogo vibration in liquid-propellant rockets with a two-propellant system are investigated. Firstly, the differential equations of the two-propellant equivalent system are derived through the physical characteristics and coupling mechanism of the basic elements in a propulsion system based on reasonable assumptions and simplification. Next, the dynamic equations of the … Show more

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Cited by 11 publications
(2 citation statements)
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“…POGOsuppressor installation is one of the common ways to eliminate longitudinal (POGO) vibrations of liquid launch vehicles. The mechanism of longitudinal vibrations is due to the convergence of natural frequencies of launch vehicles structure with natural frequencies of propulsion system feedlines [9,11,13,22]. Medium and especially heavy and super-heavy launch vehicles are prone to loss of longitudinal stability as a result of launch vehicle big mass, consequently, the structural low oscillation frequencies.…”
Section: Mathematical Modeling Of Start-up Transients At Clustered Pr...mentioning
confidence: 99%
“…POGOsuppressor installation is one of the common ways to eliminate longitudinal (POGO) vibrations of liquid launch vehicles. The mechanism of longitudinal vibrations is due to the convergence of natural frequencies of launch vehicles structure with natural frequencies of propulsion system feedlines [9,11,13,22]. Medium and especially heavy and super-heavy launch vehicles are prone to loss of longitudinal stability as a result of launch vehicle big mass, consequently, the structural low oscillation frequencies.…”
Section: Mathematical Modeling Of Start-up Transients At Clustered Pr...mentioning
confidence: 99%
“…POGOsuppressor installation is one of the common ways to eliminate longitudinal (POGO) vibrations of liquid launch vehicles. The mechanism of longitudinal vibrations is due to the convergence of natural frequencies of launch vehicles structure with natural frequencies of propulsion system feedlines [9,11,13,22]. Medium and especially heavy and super-heavy launch vehicles are prone to loss of longitudinal stability as a result of launch vehicle big mass, consequently, the structural low oscillation frequencies.…”
Section: Mathematical Modeling Of Start-up Transients At Clustered Pr...mentioning
confidence: 99%