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August 17, 20251 citations

Performance Predictions for a Super-Critical CO2 Compressor Operating Near the Liquid-Vapor Dome

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SPSylvain PierreYCYa-tien ChiuGJGiridhar Jothiprasad

Key Points

  • Initial experiments identified challenges in accurate performance measurements, highlighting gaps in CFD predictive capability.
  • Recent CFD predictions near critical inflow conditions were compared with measurements to investigate contributing factors to mismatches.
  • An advanced 4MW compressor was developed for Concentrated Solar Power applications to potentially reduce power block size.
  • Future research aims to refine CFD predictions, incorporating detailed geometric features and phase change dynamics.

Abstract

Abstract A team led by GE Vernova Advanced Research, GE Aerospace Research and Southwest Research Institute (SwRI) designed, built and tested an advanced 4MW compressor operating near the liquid-vapor dome of Carbon Dioxide (CO2) under US Department of Energy (DoE) Solar Technologies Office (SETO) program DE-EE-0007109. The compressor was targeted towards a Concentrated Solar Power (CSP) plant where Super-Critical Carbon Dioxide (sCO2) cycles offer the potential to reduce power block size. The initial learning from the effort centered around the challenges of accurate performance measurements, and a gap in CFD predictive capability in conditions near the dome. An in-depth detailed CFD study was conducted in an attempt to improve upon the initial data-match, considering the impact of leakage flows at smaller impeller sizes, complex inlet and exit scroll geometries and/or choking effects arising from phase change. Additional data was collected in 2023, incorporating some of the recommendation from the initial test learning. In this paper, CFD predictions at inflow conditions near the critical point are compared with the recent measurements. Contributing factors to the mismatch between prediction and experiment are investigated using CFD models that include additional geometric details from the as-tested compressor, compression system steady and unsteady simulations. Future research to further improve CFD predictions is also discussed.

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Cite This Study

Pierre et al. (2025) studied this question.

synapsesocial.com/papers/68a36f840a429f7973332141https://doi.org/10.1115/gt2025-153026
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