A Study on the Presure Resonance with Combustion Chamber Geometry for a Spark Ignition Engine

스파크 점화기관의 연소실 형상에 따른 공진현상 해석에 관한 연구

  • 박경석 (경희대학교 기계.산업시스템공학부) ;
  • 장석형 (경희대학교 대학원)
  • Published : 2001.06.27

Abstract

Pressure resonance frequency that is caused in the combustion chamber can be interpreted to acoustic analysis. Until now the pressure resonance has been assumed and calculated to a disc type combustion chamber that neglected the combustion chamber height because the knock occurs near the TDC(top dead center). In this research FEM(fine element method) has been used to calculate the pressure resonance frequency inside the experimental engine combustion. The reduce error of the resonance frequency obtained by FEM has decreased about 50% compared to the calculation of Draper's equation. Due to the asymmetry in the shape of the combustion chamber that was neglected in Draper's equation we could find out that a new resonance frequency could be generated. To make the experimental results equal we could know that the speed of sound that satisfies Draper's equation was selected 13% higher than all the pent-roof type combustion considered.

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