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March 25, 2026Thermo0 citationsOpen Access

Thermodynamic Assessment of Heat Pump Configurations for Waste Heat Integrated Carnot Batteries

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MSMárcio Bueno dos SantosASAndré Luiz Cruz SousaJAJorge André

Key Points

  • This research evaluates how different heat pump configurations and working fluids affect the efficiency of Carnot batteries.
  • Conducted a thermodynamic assessment of heat pump and ORC configurations.
  • Evaluated system performance using various metrics, including efficiency and heat capacity.
  • Performed grid-search optimization across a range of temperatures for storage outlet and waste heat.
  • Single-stage heat pump configurations are optimal at low to moderate temperature lifts.
  • Two-stage and cascade systems perform better at higher temperature lifts.
  • R-601 fluid shows the highest round-trip efficiencies at elevated temperatures, while R-600 enables compact system designs.

Abstract

Carnot batteries based on the coupling of high-temperature heat pumps (HTHPs) and Organic Rankine Cycles (ORCs) emerge as promising solutions for large-scale and long-duration energy storage, enabling sector coupling and the valorization of industrial waste heat. In such systems, the charging subsystem plays a dominant role, as variations in heat pump performance influence the round-trip efficiency more strongly than comparable variations in the ORC. This work presents a thermodynamic assessment of Rankine-based HP–ORC Carnot batteries focusing on the influence of heat pump configuration and working fluid selection. System performance is evaluated using the heat pump coefficient of performance, volumetric heat capacity, ORC efficiency, and Carnot battery round-trip efficiency through a grid-search optimization over a wide range of storage outlet and waste heat source temperatures. The results show that single-stage configurations are optimal at low to moderate temperature lifts, while two-stage and cascade systems become advantageous at higher lifts. Among the investigated fluids, R-601 provides the highest round-trip efficiencies at elevated storage temperatures, whereas R-600 enables more compact systems due to its higher volumetric heat capacity. These findings provide design guidance for selecting heat pump configurations and working fluids in industrial waste-heat-assisted Carnot battery applications.

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Cite This Study

Santos et al. (2026) studied this question.

synapsesocial.com/papers/69c37b41b34aaaeb1a67d79ahttps://doi.org/10.3390/thermo6010021
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