Fundamental Scaling of Adiabatic Compression of Field Reversed Configuration Thermonuclear Fusion Plasmas

Author:

Kirtley D.,Milroy R.

Abstract

AbstractField Reversed Configuration (FRC) plasmas are plasma devices that have demonstrated that through magnetic compression they can be heated to thermonuclear fusion conditions in the parameter space of an energy-producing generator Kirtley et al. (IEEE Symposium on Fusion Engineering, 2021). Of particular interest, FRCs are high-beta, in that the plasma particle kinetic energy is in balance with an externally applied magnetic field at all stages of operation. The following work will show that a cylindrical approximation for the energy and particle distribution within an FRC can, within 11%, match the fusion performance results of both full Magnetohydrodynamic (MHD) simulations as well as all robust, modern theoretical spatial and energy distribution models. Further, by using the simplified cylindrical model, detailed fusion reaction, radiation, and energy transport equations are now numerically-tractable and can be modelled over a wide parameter space. In the second section of this work, a detailed numerical model will be presented with the key theoretical performance of the compression of high-beta fusion plasmas in both deuterium–tritium (D–T) and deuterium–helium-3 (D–He-3) fuels. As will be shown, a high-beta D–He-3 plasma outperforms a low-beta D–T fuel and can theoretically yield a net-positive fusion generator.

Funder

Venture Capital

Publisher

Springer Science and Business Media LLC

Subject

Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference46 articles.

1. D. Kirtley, A. Hine, R. Milroy, C.Pihl, R. Ryan, A. Shimazu, G. Votroubek, Thermonuclear field reversed configuration plasmas in the trenta prototype. IEEE Symposium on Fusion Engineering. (2021)

2. D. Kirtley et al., Overview of staged magnetic compression of FRC targets. APS Division of Plasma Physics Meeting. (2018).

3. D.Kirtley, et al., Vacuum vessel and divertor design and results of 16 month operation of the Trenta Magneto-Inertial Fusion prototype. IEEE symposium on fusion engineering, 2021

4. J.F. Santarius et al., Final report for the field-reversed configuration power plant critical-issue scoping study. University of Illinois, Fusion Studies Laboratory, Urbana, IL (US); University of Wisconsin-Madison, WI; University of Washington (US) (2001)

5. J.F. Santarius et al., Could advanced fusion fuels be used with today’s technology? J. Fus. Energy 17(1), 33–40 (1998)

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