Bulletin of the American Physical Society
APS March Meeting 2021
Volume 66, Number 1
Monday–Friday, March 15–19, 2021; Virtual; Time Zone: Central Daylight Time, USA
Session P19: Matter in Extreme Environments: Theoretical and Experimental Advances
3:00 PM–5:24 PM,
Wednesday, March 17, 2021
Sponsoring
Units:
DCOMP DMP
Chair: Xiaoyu Wang, State Univ of NY - Buffalo
Abstract: P19.00007 : Thermal gradient effect on the helium and intrinsic defects transport properties in Tungsten*
5:00 PM–5:12 PM
Live
Presenter:
Enrique Martinez Saez
(Clemson University)
Authors:
Enrique Martinez Saez
(Clemson University)
Nithin Mathew
(Los Alamos National Laboratory)
Danny Perez
(Los Alamos National Laboratory)
Brian Wirth
(University of Tennessee)
Dimitrios Maroudas
(University of Massachusetts)
Plasma-facing materials (PFMs) in a fusion reactor are expected to withstand stringent conditions, with high heat and particle fluxes,which will create strong gradients of temperature and concentration. Helium ash, hydrogenic species and neutron-created point defects will migrate in the presence of the afore-mentioned gradients. In this work, we use nonequilibrium molecular dynamics simulations to study the transport properties of He, and self-interstitial atoms in the presence of thermal gradients in tungsten. We observe that in both cases, the defects and impurity atoms tend to migrate toward the hot regions of the material. The resulting concentration profiles are in agreement with the predictions of irreversible thermodynamics. We demonstrate that, when the mass-heat transport coupling is considered, the resulting steady-state profiles vary significantly from those when species transport is decoupled from heat transport.
*U.S. Department of Energy, Office of Science, Office of Fusion Energy Sciences, Office of Advanced Scientific Computing Research through the Scientific Discovery through Advanced Computing (SciDAC) project on Plasma Surface Interactions
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