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September 20, 2025EnergiesOpen Access

Hybrid PCM–Liquid Cooling System with Optimized Channel Design for Enhanced Thermal Management of Lithium–Ion Batteries

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Authors

SHSu Woong HyunJKJae Hyuk KimDSD Shin

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Overview

This study demonstrates a hybrid cooling system that reduces battery temperatures by 9 °C, indicating improved thermal management for lithium-ion batteries.

Key Points

  • A hybrid cooling system can lower lithium-ion battery temperatures by 9 °C, significantly improving thermal management.
  • Under air-cooled conditions, the PCM system achieved a 47% reduction in temperature, outperforming traditional cooling methods.
  • Numerical simulations assessed the thermal performance of multiple cooling channel configurations in the proposed system.
  • The hybrid design enhances temperature uniformity, making it a promising solution for lithium-ion battery applications.

Cite This Study

Hyun et al. (2025) studied this question.

synapsesocial.com/papers/68d46fc631b076d99fa69b37https://doi.org/10.3390/en18184996
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Numerical Optimization of a Hybrid Cooling System for Lithium‐Ion Battery Packs: PCM‐Assisted and Liquid Cooling Integration2025
  2. 2Heat Dissipation and Structural Optimization of Cylindrical Lithium-Ion Batteries with Phase Change Material–Liquid Hybrid Cooling: A Numerical Study2025
  3. 3Comparative Thermal Analysis of PCM and Hybrid Cooling with Liquid Cooling for Lithium Ion Battery2026
  4. 4Numerical investigation of hybrid PCM–liquid cooling for lithium-ion battery thermal management2026
  5. 5Novel hybrid battery thermal management system based on a central cooling channel with an integrated conductive fin, porous media, and phase change materials2026 · 2 citations