Jeffery D. Densmore, Ph.D.

Affiliations: 
2002 University of Michigan, Ann Arbor, Ann Arbor, MI 
Area:
Nuclear Engineering
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"Jeffery Densmore"

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Edward W. Larsen grad student 2002 University of Michigan
 (Variational variance reduction for Monte Carlo reactor analysis.)
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Publications

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Densmore JD. (2018) Singular Eigenfunction Expansion Solution for Time-Dependent Neutron Transport with Delayed Neutrons Nuclear Science and Engineering. 191: 231-247
Densmore JD, Gill DF, Pounders JM. (2016) Cellwise Block Iteration as a Multigrid Smoother for Discrete-Ordinates Radiation-Transport Calculations Journal of Computational and Theoretical Transport. 1-26
Wollaeger RT, Wollaber AB, Urbatsch TJ, et al. (2016) Implicit Monte Carlo with a Linear Discontinuous Finite Element Material Solution and Piecewise Non-Constant Opacity Journal of Computational and Theoretical Transport. 45: 123-157
Densmore JD. (2015) Spatial moments of continuous transport problems computed on grids: Time-dependent problems Journal of Computational and Theoretical Transport. 42: 85-98
Densmore JD, Park H, Wollaber AB, et al. (2015) Monte Carlo simulation methods in moment-based scale-bridging algorithms for thermal radiative-transfer problems Journal of Computational Physics. 284: 40-58
Densmore JD, Gill DF, Pounders JM. (2015) A multigrid method for the Self-Adjoint Angular Flux equation based on cellwise block Jacobi iteration Mathematics and Computations, Supercomputing in Nuclear Applications and Monte Carlo International Conference, M and C+Sna+Mc 2015. 4: 2800-2818
Wollaber AB, Larsen EW, Densmore JD. (2013) A Discrete Maximum Principle for the Implicit Monte Carlo Equations Nuclear Science and Engineering. 173: 259-275
Park H, Knoll DA, Rauenzahn RM, et al. (2013) An efficient and time accurate, moment-based scale-bridging algorithm for thermal radiative transfer problems Siam Journal On Scientific Computing. 35
Park H, Densmore JD, Wollaber AB, et al. (2013) Monte Carlo solution methods in a moment-based scale-bridging algorithm for thermal radiative transfer problems: Comparison with fleck and cummings International Conference On Mathematics and Computational Methods Applied to Nuclear Science and Engineering, M and C 2013. 4: 2430-2441
Wollaber AB, Larsen EW, Densmore JD. (2013) A discrete maximum principle for the Implicit Monte Carlo equations Nuclear Science and Engineering. 173: 259-275
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