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Report No: MIT-GFR-014 Topical Report 300 MWe Supercritical CO2 Plant Layout and Design

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Report No: MIT-GFR-014 Topical Report 300 MWe Supercritical CO2 Plant Layout and Design ( report-no-mit-gfr-014-topical-report-300-mwe-supercritical-c )

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1. Introduction 1.1 General This topical report summarizes Year 1, Task 2 progress under the contract “Qualification of the Supercritical CO2 Power Conversion Cycle for Advanced Reactor Applications”, having the scope defined in the following excerpts from the Sandia statement of work: Objective To complete assessment of the Supercritical CO2 Brayton Cycle to the point where confident commitment can be made to its accelerated development for use in advanced reactor concepts. Task 2. Engineer a plant layout for a 300 MWe power train and develop a first order cost estimate for this power plant, focusing on savings due to its simplicity and compactness. University will have the following goals: Task 2. Aim at quantifying the postulated cost advantage of the S-CO2 cycle, which so far has been asserted mainly on the basis of engineering judgment. This is an essential task since there is a broad consensus that capital cost reductions on the order of thirty percent or so are necessary for nuclear power to make major inroads into the future market for central station generation of electricity. 1.2 Scope of This Report This topical report focuses exclusively on plant layout and cost assessment for the supercritical CO2 Brayton power cycle. As such it is somewhat specialized and presupposes familiarity with considerable more general background material. Such is available in the recent comprehensive topical report: V. Dostal, M.J. Driscoll, P. Hejzlar, “A Supercritical Carbon Dioxide Cycle for Next Generation Reactors,” MIT-ANP-TR-100, March 10, 2004 Note that this report covers much the same material as recently reported under Task 2 of the project’s annual report: MIT-GFR-012, “Annual Report: Qualification of the Supercritical CO2 Power Conversion Cycle for Advanced Reactor Applications”, by Y. Wang et al, April 9, 2004 2

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