Accelerated Deterministic Phonon Transport With Consistent Material Temperature and Intensities

Author:

Whitman Nicholas H.1,Palmer Todd S.1,Anistratov Dmitriy Y.2,Greaney P. Alex3

Affiliation:

1. School of Nuclear Science and Engineering, Oregon State University Corvallis, OR 97331

2. Department of Nuclear Engineering, North Carolina State University , Raleigh, NC 27695

3. Department of Mechanical Engineering, University of California–Riverside Riverside, CA 92521

Abstract

Abstract We present a method for deterministically solving the frequency and temperature dependent phonon radiative transport (PRT) equation in the single-mode relaxation time (SMRT) approximation in the self-adjoint angular flux (SAAF) form. To handle the nonlinear coupling between the phonon intensities and the material temperature, we apply a linearization approach that is similar to one in thermal radiative transport. This procedure leads to the PRT equation with pseudo-scattering. The method presented includes acceleration of both the inner pseudo-scattering source iterations and outer temperature iteration with a gray diffusion synthetic acceleration (DSA) and Anderson acceleration, respectively. We use the finite-element method to discretize the PRT equation in space and the method of discrete ordinates (SN) for angular discretization. The proposed method is verified by a gray method of manufactured solutions problem and demonstrated on a problem using temperature and direction dependent multigroup data from lithium aluminate (LiAlO2). The iterative performance of the acceleration method in each test is then compared to the unaccelerated method.

Funder

National Nuclear Security Administration

Publisher

ASME International

Reference26 articles.

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2. Gray Phonon Transport Prediction of Thermal Conductivity in Lithium Aluminate With Higher-Order Finite Elements on Meshes With Curved Surfaces;J. Comput. Theor. Transp.,2021

3. An Implicit Monte Carlo Scheme for Calculating Time and Frequency Dependent Nonlinear Radiation Transport;J. Comput. Phys.,1971

4. A Grey Transport Acceleration Method for Time-Dependent Radiative Transfer Problems;J. Comput. Phys.,1988

5. A Synthetic Acceleration Scheme for Radiative Diffusion Calculations;J. Quant. Spectrosc. Radiat. Transfer,1985

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