University of Chicago's The Economics Future of Nuclear Power PDF

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Even over a 5-year construction period, the interest costs account for nearly one-third of the total capital cost. 3 percent. These figures show nonetheless the importance of keeping construction delays under control and offering assurances that would reduce the risk premium investors require. Chapter 5 below goes into detail on choice of construction time and WACC in the energy scenarios to be analyzed. 4. Reactor Designs and Capital Cost Scenarios for Economic Analysis A considerable narrowing of overnight costs estimates is accomplished by considering near-term reactor types.

2. Relationship to OECD Cost Formula A significant portion of the cost data used in this study was drawn from OECD (1998). Thus it may be helpful to see the relationship between the cost formula used here and the formula used in that study. The OECD formula is a standard levelized cost formula, looking at the ratio between the total sum of discounted costs and the total sum of discounted generation: -t EGC= (∑ [(It+Mt+Ft)(1+r) ])/G t G= ∑ [Et(1+r)-t] t where: EGC= Average lifetime levelized electricity generation cost per kWh It = Capital expenditures in the year t 2-17 Mt = Operation and maintenance expenditures in the year t Ft = Fuel expenditures in the year t Et = Electricity generation in the year t r = Discount rate.

2. 3. 4. 5. 6. 7. 3. 4. 5. 1. Introduction Capital costs are especially important to the competitiveness of nuclear power, since they account for a major share of the levelized cost of electricity (LCOE). The literature on nuclear power plant costs reports a wide array of capital costs. 2 of this chapter deals with the overnight cost component of capital costs. 3 deals with the interest component. 4 uses the results of the chapter to narrow the range of capital costs to be used in the economic analysis of the present study, proposing to limit the analysis to three near-term reactors as the most realistic possibility and to allow for remaining uncertainty based on analysis of the individual components of capital costs.

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The Economics Future of Nuclear Power by University of Chicago

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