2018Fusion Science & TechnologyRequires access

About a New Fusion Reactor Scheme

E. Mazzucato

Open publisher page 8 citations

Abstract

Based on the assumption that the cross-field transport of energy in low-β cylindrical plasmas imbedded in an axial magnetic field is lower than in tokamaks, a fusion reactor scheme is proposed consisting of long straight plasmas connected by short curved sections. It should be capable of producing 13 GW of fusion power when operating in deuterium-tritium at the same plasma density, temperature, and magnetic field of ITER with only a minor improvement in the plasma confinement of the straight sections.

About this research paper

What this paper is about

Based on the assumption that the cross-field transport of energy in low-β cylindrical plasmas imbedded in an axial magnetic field is lower than in tokamaks, a fusion reactor scheme is proposed consisting of long straight plasmas connected by short curved sections. It should be capable of producing 13 GW of fusion power when operating in deuterium-tritium at the same plasma density, temperature, and magnetic field of ITER with only a minor improvement in the plasma confinement of the straight sections.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Based on the assumption that the cross-field transport of energy in low-β cylindrical plasmas imbedded in an axial magnetic field is lower than in tokamaks, a fusion reactor scheme is proposed consisting of long straight plasmas connected by short curved sections. It should be capable of producing 13 GW of fusion power when operating in deuterium-tritium at the same plasma density, temperature, and magnetic field of ITER with only a minor improvement in the plasma confinement of the straight sections.

Key concepts: Tokamak, Plasma, Fusion power, Magnetic confinement fusion, Deuterium, Fusion, Magnetic field, Nuclear fusion

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