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October 13, 2025Heat Transfer EngineeringOpen Access

Performance Analysis of a Single-Stage Metal Hydride Hydrogen Compression System

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Authors

PLP.Y. LangYGY.T. GeXZXinyu Zhang

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Overview

Computational fluid dynamics model reveals impacts of thermal conditions on hydrogen compression efficiency.

Key Points

  • Increasing the high-temperature heat source and decreasing the low-temperature heat sink enhance performance significantly.
  • A maximum compression efficiency of 8.861% is achieved under optimal thermal conditions of TH = 80 °C and TL = 10 °C.
  • The computational fluid dynamics model validates key metrics like hydrogen sorption capacity and energy consumption using experimental data.
  • Improvements in thermal conductivity of the metal hydride alloy positively correlate with increases in hydrogen sorption capacity and compression work.

Cite This Study

Lang et al. (2025) studied this question.

synapsesocial.com/papers/68ecfebf950606aabec094f0https://doi.org/10.1080/01457632.2025.2571275
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