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Dive into the research topics where Alan H. Glasser is active.

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Featured researches published by Alan H. Glasser.


Journal of Computational Physics | 2012

Modeling open boundaries in dissipative MHD simulation

E. T. Meier; Alan H. Glasser; V.S. Lukin; Uri Shumlak

The truncation of large physical domains to concentrate computational resources is necessary or desirable in simulating many natural and man-made plasma phenomena. Three open boundary condition (BC) methods for such domain truncation of dissipative magnetohydrodynamics (MHD) problems are described and compared here. A novel technique, lacuna-based open boundary conditions (LOBC), is presented for applying open BC to dissipative MHD and other hyperbolic and mixed hyperbolic-parabolic systems of partial differential equations. LOBC, based on manipulating Calderon-type near-boundary sources, essentially damp hyperbolic effects in an exterior region attached to the simulation domain and apply BC appropriate for the remaining parabolic effects (if present) at the exterior region boundary. Another technique, approximate Riemann BC (ARBC), is adapted from finite volume and discontinuous Galerkin methods. In ARBC, the value of incoming flux is specified using a local, characteristic-based method. A third commonly-used open BC, zero-normal derivative BC (ZND BC), is presented for comparison. These open BC are tested in several gas dynamics and dissipative MHD problems. LOBC are found to give stable, low-reflection solutions even in the presence of strong parabolic behavior, while ARBC are stable only when hyperbolic behavior is dominant. Pros and cons of the techniques are discussed and put into context within the body of open BC research to date.


arXiv: Plasma Physics | 2016

Overview of HiFi -- implicit spectral element code framework for multi-fluid plasma applications

Vyacheslav S. Lukin; Alan H. Glasser; Weston Lowrie; E.T. Meier


Bulletin of the American Physical Society | 2010

Multi-Block Development and Applications of HiFi

Weston Lowrie; Uri Shumlak; V.S. Lukin; Alan H. Glasser


Archive | 2009

HiFi -- Adaptive, Implicit, High Order Finite Element Code for General Multi-Fluid Applications.

Vyacheslav S. Lukin; Alan H. Glasser; Weston Lowrie; E.T. Meier


Bulletin of the American Physical Society | 2014

PSI-Center Validation Studies

B.A. Nelson; C. Akcay; Alan H. Glasser; C.J. Hansen; T.R. Jarboe; G.J. Marklin; Richard D. Milroy; K.D. Morgan; Peter Norgaard; Uri Shumlak; D.A. Sutherland; B.S. Victor; C.R. Sovinec; J.B. O'Bryan; Eric Held; Jeong-Young Ji; V.S. Lukin


Bulletin of the American Physical Society | 2010

Recent Results of ICC Experiment Simulations by the PSI-Center

B.A. Nelson; Alan H. Glasser; Thomas R. Jarboe; C.C. Kim; G.J. Marklin; Weston Lowrie; E. T. Meier; Richard D. Milroy; Uri Shumlak; C.R. Sovinec; J.B. O'Bryan; Eric Held; Jeong-Young Ji; V.S. Lukin


Bulletin of the American Physical Society | 2010

Lacunae-based open boundary conditions for dissipative MHD

Eric Meier; Alan H. Glasser; V.S. Lukin; Uri Shumlak


Archive | 2009

Systematic ab initio Hall MHD numerical study of three-dimensional magnetic field relaxation in a closed system.

Vyacheslav S. Lukin; Weston Lowrie; G.J. Marklin; Alan H. Glasser; Christopher Douglas Cothran; M. R. Brown


Archive | 2009

Application of Scalable Solver Techniques to Magnetized Plasma Problems in 2D and 3D

Alan H. Glasser; Vyacheslav S. Lukin


Bulletin of the American Physical Society | 2009

Non-reflecting boundary conditions for dissipative MHD

E.T. Meier; Alan H. Glasser; V.S. Lukin; U. Shumlak

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V.S. Lukin

United States Naval Research Laboratory

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Weston Lowrie

University of Washington

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Uri Shumlak

University of Washington

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E.T. Meier

Lawrence Livermore National Laboratory

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G.J. Marklin

University of Washington

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B.A. Nelson

University of Washington

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C.R. Sovinec

University of Wisconsin-Madison

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E. T. Meier

University of Washington

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Eric Held

Utah State University

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