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April 17, 2026Thermal Science and Engineering Progress0 citationsOpen Access

Simulation-based performance assessment of an elastocaloric heat-pump system for residential cooling in Mediterranean regions

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LCLuca CirilloSGSabrina GargiuloLVLucrezia Verneau

Key Points

  • The research aims to assess the performance of an elastocaloric heat pump for residential cooling in Mediterranean climates.
  • Utilized COMSOL–TRNSYS framework for dynamic simulations.
  • Simulated a single-room cooling scenario in Naples, Italy.
  • Analyzed different air velocities and loading-unloading cycle frequencies to identify optimal configurations.
  • Elastocaloric heat pump operates optimally at 0.5 Hz cycle frequency and 9-12 m/s air velocities.
  • Achieved temperature span of 22 K and an equivalent COP of approximately 6.5.
  • Showed up to 80% lower annual energy consumption compared to conventional vapor-compression systems.

Abstract

• COMSOL–TRNSYS framework assesses an elastocaloric heat pump under realistic climate. • A single-room case study is simulated for Naples, Italy (Mediterranean conditions). • Optimal performance is achieved at a 0.5 Hz loading–unloading cycle and moderate airflow rates. • Under optimal conditions, electricity use is up to 80% lower vs vapour compression. This study presents a dynamic numerical investigation of a solid-state heat pump based on a rotary elastocaloric device developed at the University of Naples Federico II. The behavior of the experimental prototype was modelled in COMSOL Multiphysics, and its performance was subsequently coupled with a TRNSYS dynamic simulation to evaluate operation under realistic boundary conditions for the Mediterranean climate of Naples (Italy). A conventional vapour-compression air-conditioning for a single-room office was modelled under the same thermal and boundary conditions to provide a direct and consistent performance benchmark. Several operating scenarios were analyzed for the elastocaloric device by varying air velocity and cycle frequency to identify optimal configurations for cooling and heating modes. Results show that the elastocaloric heat pump achieves its best performance at a frequency of 0.5 Hz and moderate air velocities (9–12 m s −1 ), yielding a temperature span of 22 K, an equivalent COP of approximately 6.5, and up to 80% lower annual energy consumption than a conventional vapour-compression system. The COMSOL–TRNSYS framework works well to integrate the elastocaloric regenerator’s thermal behavior with the heat-pump system’s dynamic performance. The results obtained with this approach demonstrate that an elastocaloric heat pump could be a good long-term, refrigerant-free option for small-scale air conditioning.

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Cite This Study

Cirillo et al. (2026) studied this question.

synapsesocial.com/papers/69e1cffa5cdc762e9d859079https://doi.org/10.1016/j.tsep.2026.104698
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