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政治大學 AQI 45 26°C PM2.5 6
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Uedu Open / Plasma Transport Theory
22.616

Plasma Transport Theory

Prof. Kim Molvig | Fall 2003
Science & Math Chemistry Physics Engineering Chemical Engineering High Energy Physics Nuclear Physics Physical Chemistry
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CC BY-NC-SA 4.0
Course introduction

This course describes the processes by which mass, momentum, and energy are transported in plasmas, with special reference to magnetic confinement fusion applications.

The Fokker-Planck collision operator and its limiting forms, as well as collisional relaxation and equilibrium, are considered in detail. Special applications include a Lorentz gas, Brownian motion, alpha particles, and runaway electrons.

The Braginskii formulation of classical collisional transport in general geometry based on the Fokker-Planck equation is presented.

Neoclassical transport in tokamaks, which is sensitive to the details of the magnetic geometry, is considered in the high (Pfirsch-Schluter), low (banana) and intermediate (plateau) regimes of collisionality.

Course Information
SourceMIT 開放式課程
DepartmentNuclear Science and Engineering
LanguageEnglish
Number of videos0
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