Advanced Nuclear Power Technology Program A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors

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Advanced Nuclear Power Technology Program A Supercritical Carbon Dioxide Cycle for Next Generation Nuclear Reactors ( advanced-nuclear-power-technology-program-supercritical-carb )

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Chapter 8 contains the economic assessment of the direct supercritical CO2 cycle and compares the obtained results with the helium direct cycle. The costs for different selected designs as described in Chapter 6 are used. Chapter 9 describes the main components. Due to their novelty the Printed Circuit Heat Exchangers (PCHE) are described here in detail. The effect of wavy channels and conduction length on the PCHE performance is presented here as well. The design of turbomachinery as developed by Yong Wang, which is used for the development of plant layout and for the development of a control scheme is presented here. The last task performed in this chapter is the development of plant layout. In Chapter 10 the selected designs, the component performance and plant layout are summarized. Chapter 11 compares the potential of the recompression cycle to its primary competitors the helium Brayton and steam Rankine cycles. The cycles are compared based on thermal efficiency, which is presented over a wide range of operating temperatures. Chapter 12 deals with the development of a suitable control scheme for the recompression cycle. First, the typical control methods for ideal gas Brayton cycles are summarized. These approaches are then applied to the case of the recompression cycle. Chapter 13 summarizes the most important results and findings, draws the major conclusions and recommends future work. 8

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