Criteria for the economic viability of fusion power plants

Fuente: arXiv
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Autores principales: Whyte, D. G., Lo, A., Bielajew, R., Hancock, M., Moeykens, R., Shaw, G.
Formato: Preprint
Publicado: 2026
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author Whyte, D. G.
Lo, A.
Bielajew, R.
Hancock, M.
Moeykens, R.
Shaw, G.
author_facet Whyte, D. G.
Lo, A.
Bielajew, R.
Hancock, M.
Moeykens, R.
Shaw, G.
contents Commercial fusion energy requires frameworks to assess both the scientific and economic viability of a wide variety of fusion concepts. Inspired by the Lawson criterion's ability to universally describe fusion energy gain, a generalized framework is developed to determine the economic gain of fusion power plants. The model exploits temporal equilibrium, and engineering and cost parameters normalized to the energy capture surface. The derived criteria for economic gain are therefore independent of the power plant's absolute power, impartial to the particulars of its fusion technology, and can be applied to any fusion confinement concept. The derivation of the economic gain factor, $Q_{econ}$, results in nonlinear equations with ten controlling normalized design parameters ranging from fusion power density and surface component lifetime to energy fluence, price of energy, and component efficiency and cost. These ten controlling parameters are varied over a wide range to provide high-level insights in design, finance and operational tradeoffs that improve the prospects for economically viable fusion energy.
format Preprint
id arxiv_https___arxiv_org_abs_2604_07367
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Criteria for the economic viability of fusion power plants
Whyte, D. G.
Lo, A.
Bielajew, R.
Hancock, M.
Moeykens, R.
Shaw, G.
Plasma Physics
General Economics
Economics
Physics and Society
Commercial fusion energy requires frameworks to assess both the scientific and economic viability of a wide variety of fusion concepts. Inspired by the Lawson criterion's ability to universally describe fusion energy gain, a generalized framework is developed to determine the economic gain of fusion power plants. The model exploits temporal equilibrium, and engineering and cost parameters normalized to the energy capture surface. The derived criteria for economic gain are therefore independent of the power plant's absolute power, impartial to the particulars of its fusion technology, and can be applied to any fusion confinement concept. The derivation of the economic gain factor, $Q_{econ}$, results in nonlinear equations with ten controlling normalized design parameters ranging from fusion power density and surface component lifetime to energy fluence, price of energy, and component efficiency and cost. These ten controlling parameters are varied over a wide range to provide high-level insights in design, finance and operational tradeoffs that improve the prospects for economically viable fusion energy.
title Criteria for the economic viability of fusion power plants
topic Plasma Physics
General Economics
Economics
Physics and Society
url https://arxiv.org/abs/2604.07367