Header menu link for other important links
X
Determination of unsteady heat release distribution from acoustic pressure measurements
P. Bala Subrahmanyam, ,
Published in
2003
Abstract
An integral method is developed to solve the inverse problem of determining the oscillatory heat release distribution from the knowledge of the acoustic pressure field within a combustor. Unlike earlier approaches, in which the problem is formulated in terms of Fredholm integral equation, the inverse problem is reformulated in terms of Volterra integral equation. This reformulation facilitates the recovery of heat release at all frequencies. The resulting Volterra integral equation is solved using both direct numerical method (DNM) and implicit least squares method (ILSM). The results show that the implicit least squares method is superior to the direct numerical method and yields accurate determination of heat release at all frequencies. © 2003 by Bala Subrahmanyam Pesala, R. I. Sujith and M. Ramakrishna.
About the journal
Journal39th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit
Open AccessNo
Concepts (14)
  •  related image
    ACOUSTIC PRESSURE FIELD
  •  related image
    ACOUSTIC PRESSURE MEASUREMENTS
  •  related image
    FREDHOLM INTEGRAL EQUATIONS
  •  related image
    Heat release
  •  related image
    HEAT RELEASE DISTRIBUTION
  •  related image
    IMPLICIT LEAST SQUARES
  •  related image
    Integral method
  •  related image
    Volterra integral equations
  •  related image
    Integral equations
  •  related image
    Inverse problems
  •  related image
    Least squares approximations
  •  related image
    Numerical methods
  •  related image
    Propulsion
  •  related image
    Thermoacoustics