Operation and Analysis of a Supercritical CO2 Brayton Cycle

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Operation and Analysis of a Supercritical CO2 Brayton Cycle ( operation-and-analysis-supercritical-co2-brayton-cycle )

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The report begins by first summarizing the design, status of assembly, and expected performance of the S- CO2 loop. The next section describes the major components of the supercritical Brayton loop. Each component section includes a description of the component and its expected operating characteristics, illustrates the design and manufacture of that component with engineering design drawings and photos, includes a detailed analysis of that component using SNL's and BNI’s steady state and dynamic design and analysis codes followed by measured data. The analysis section includes predictions and measurements of losses, leakage, windage, compressor performance, compressor inlet temperature and pressure control performance, and flow map predictions and measurements where available. The development and validation models that are capable of predicting these operational performance characteristics in supercritical CO2 are important. Many models and fits are available for air and steam, but very little data exists for supercritical fluids, and the development and validation of these models is one of the main purposes of performing these tests. The final section of this report describes the experimental results that have been generated using the S-CO2 compression and Brayton loops. These include a summary of the development, operation, and control experiments and results. More details can be found in the many reports generated by the S-CO2 Brayton team. Some of these reports are listed below and are detailed in the references section.  Status Report of Small Scale S- CO2 Brayton Cycle Demonstration Program (2007)  Supercritical CO2 Brayton Cycle Compression and Control Near the Critical Point (2008)  Initial status and test results for a supercritical CO2 Brayton cycle test-loop (2008)  Design of the Gen IV Supercritical CO2 Split-flow Compressor Test Loop (2008)  Analysis of Supercritical CO2 Compressor Operation Near the Critical Point of CO2 (2008)  Gen IV S-CO2 Brayton Cycle Test Loop Design and Split-flow S-CO2 Compressor Test Loop Construction Description (2009)  Supercritical CO2 Compression Loop Operation and Test Results (2009)  Supercritical CO2 Heated, but Un-recuperated, Brayton Loop Operation and Test Results (2009)  Supercritical CO2 Test Loop Operation and First Test Results (2009)  Supercritical CO2 Brayton Cycle Power Generation Development Program and Initial Test Results (2009) 12

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