Calculations of net present value for a small modular fusion power plant

Author:

Webbe-Wood David1ORCID,Nuttall William J.2ORCID

Affiliation:

1. Post-graduate student, School of Engineering and Innovation, Open University, Milton Keynes, UK (corresponding author: )

2. Professor, School of Engineering and Innovation, Open University, Milton Keynes, UK

Abstract

If, as suggested by proponents, fusion small modular reactors (SMRs) can be developed faster than envisaged by the multi-national ITER/DEMO programme, the question remains as to whether such reactors will be a viable commercial proposition. Such viability will depend on a range of factors, including capital costs, income from the sale of electricity and the cost of capital. To investigate these effects, net present values (NPVs) were calculated for a range of scenarios for both first of a kind and Nth of a kind plants supplying electricity to the UK grid beginning in 2040. Calculations have also been carried out to delineate the ‘space’ in which positive NPVs would be obtained. These calculations show that there are combinations of capital costs, electricity prices and costs of capital in which a fusion SMR plant would be financially viable. These calculations, being based on uncertain costs and incomes, are necessarily uncertain. The calculations show that minimisation of capital costs must be a key goal for those seeking to develop a fusion SMR as a commercial proposition.

Publisher

Thomas Telford Ltd.

Subject

General Energy,Renewable Energy, Sustainability and the Environment

Reference25 articles.

1. Waste expectations of fusion steels under current waste repository criteria

2. Bechtel National Inc (2017) Conceptual Cost Study for a Fusion Power Plant Based on Four Technologies from the DOE ARPA-E ALPHA Program. Bechtel National Inc., Woodruff Scientific Inc & Decysive Systems. See http://woodruffscientific.com/pdf/ARPAE_Costing_Report_2017.pdf (accessed 26/05/2023).

3. Economic viability of light water small modular nuclear reactors: General methodology and vendor data

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1. Editorial;Proceedings of the Institution of Civil Engineers - Energy;2023-10

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