Title of article :
An Eulerian MHD model for the analysis of magnetic flux compression by expanding diamagnetic fusion plasma sphere
Author/Authors :
Sijoy، نويسنده , , C.D. and Chaturvedi، نويسنده , , Shashank، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Abstract :
The process of magnetic flux compression (MFC) inside a solenoid by expanding diamagnetic plasma sphere produced by an inertial fusion micro-explosions and its application as a direct energy conversion scheme to convert a part of plasma kinetic energy into pulsed electrical energy has been recently reported [1]. For a detailed analysis of this concept, an Eulerian multi-material MHD model is developed using magnetic vector potential formulation for electro-magnetic field calculations and classical volume-of-fluid method for material interface tracking. The diffusion term in the magnetic induction equation is solved implicitly while the advection terms are computed using a second-order MUSCL scheme. An iteration procedure using ADI scheme is used for the free space field calculation. In this paper, we describe the details of the new MHD model, its validation against the semi-analytical solutions (for magnetic Reynolds number ≫1) of magnetic convective-diffusion equations and application to explore the concept of MFC by expanding plasma sphere. The simulation results show that the algorithm is capable of handling complex plasma dynamics inside the MFC system. Also, the results indicate the development and the evolution of MRT like instability near the stagnation point. The magnetic field diffusion into the plasma during the expansion phase is found to be negligible.
Keywords :
Multi-material , Direct energy conversion , Plasma expansion , Fusion , Interface reconstruction , Flux compression , Interface tracking , MHD , compressible flow , Volume-of-Fluid
Journal title :
Fusion Engineering and Design
Journal title :
Fusion Engineering and Design