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The Generalized PN Synthetic Acceleration Method for Linear Transport Problems with Highly Anisotropic Scattering

Kassem M. Khattab

Nuclear Science and Engineering / Volume 125 / Number 2 / February 1997 / Pages 171-177

Technical Paper / dx.doi.org/10.13182/NSE97-A24263

The diffusion synthetic acceleration (DSA) method has been known to be an effective tool for accelerating the iterative solution of transport equations with isotropic or mildly anisotropic scattering. However, the DSA method is not effective for transport equations that have strongly anisotropic scattering. A generalization of the modified DSA (MDSA) method is proposed that converges (clock time) faster than the MDSA method. This method is developed, the results of a Fourier analysis that theoretically predicts its efficiency are described, and numerical results that verify the theoretical prediction are presented.