2010Journal of Propulsion and PowerRequires access

Theoretical Investigation on the Dynamics of a Gas-Liquid Coaxial Swirl Injector

Lijun Yang, Qing-fei Fu

Open publisher page 20 citations

Abstract

the injector into two parts: the recessed chamber and the section before the recessed chamber. The gaseous injector flow before the recessed chamber is considered to be steady; only the response of the mass flow rate at the exit of coaxial injector to the pressure fluctuation at the liquid injector inlet has been investigated. The dynamic characteristics of the coaxial swirl injector can now be considered as two processes: the dynamics of the liquid swirl injector and the dynamics of the recessed chamber. The transfer function of the whole injector is obtained by combining the transfer functions of these two processes. The influence of the injector configuration and working condition on the injector dynamic characteristics was also studied. A smaller mixing ratio, larger mass flow rate, higher ambient pressure, smaller ratio of recess length to diameter, and larger geometry parameter would decrease theamplituderesponse ofthemass flowratepulsation, buttheseparametershavelittleeffectonthephasefrequency of the coaxial swirl injector.

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What this paper is about

the injector into two parts: the recessed chamber and the section before the recessed chamber. The gaseous injector flow before the recessed chamber is considered to be steady; only the response of the mass flow rate at the exit of coaxial injector to the pressure fluctuation at the liquid injector inlet has been investigated. The dynamic characteristics of the coaxial swirl injector can now be considered as two processes: the dynamics of the liquid swirl injector and the dynamics of the recessed chamber. The transfer function of the whole injector is obtained by combining the transfer functions of these two processes. The influence of the injector configuration and working condition on the injector dynamic characteristics was also studied. A smaller mixing ratio, larger mass flow rate, higher ambient pressure, smaller ratio of recess length to diameter, and larger geometry parameter would decrease theamplituderesponse ofthemass flowratepulsation, buttheseparametershavelittleeffectonthephasefrequency of the coaxial swirl injector.

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Available abstract

the injector into two parts: the recessed chamber and the section before the recessed chamber. The gaseous injector flow before the recessed chamber is considered to be steady; only the response of the mass flow rate at the exit of coaxial injector to the pressure fluctuation at the liquid injector inlet has been investigated. The dynamic characteristics of the coaxial swirl injector can now be considered as two processes: the dynamics of the liquid swirl injector and the dynamics of the recessed chamber. The transfer function of the whole injector is obtained by combining the transfer functions of these two processes. The influence of the injector configuration and working condition on the injector dynamic characteristics was also studied. A smaller mixing ratio, larger mass flow rate, higher ambient pressure, smaller ratio of recess length to diameter, and larger geometry parameter would decrease theamplituderesponse ofthemass flowratepulsation, buttheseparametershavelittleeffectonthephasefrequency of the coaxial swirl injector.

Key concepts: Injector, Coaxial, Mechanics, Materials science, Mass flow rate, Chamber pressure, Volumetric flow rate, Inlet

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