Nonlinear modeling and analysis of pressure wave inside ceup fuel pipeline

Qaisar Hayat, Liyun Fan, Enzhe Song, Xiuzhen Ma, Bingqi Tian, Naeim Farouk

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Operating conditions dependent large pressure variations are one of the working characteristics of combination electronic unit pump (CEUP) fuel injection system for diesel engines. We propose a precise and accurate nonlinear numerical model of pressure inside HP fuel pipeline of CEUP using wave equation (WE) including both viscous and frequency dependent frictions. We have proved that developed hyperbolic approximation gives more realistic description of pressure wave as compared to classical viscous damped wave equation. Frictional effects of various frequencies on pressure wave have been averaged out across valid frequencies to represent the combined effect of all frequencies on pressure wave. Dynamic variations of key fuel properties including density, acoustic wave speed, and bulk modulus with varying pressures have also been incorporated. Based on developed model we present analysis on effect of fuel pipeline length on pressure wave propagation and variation of key fuel properties with both conventional diesel and alternate fuel rapeseed methyl ester (RME) for CEUP pipeline.

Original languageEnglish
Article number521859
JournalMathematical Problems in Engineering
Volume2014
DOIs
StatePublished - 2014
Externally publishedYes

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