Numerical performance analysis of liquid hydrogen centrifugal pumps: A focus on the effectiveness of water as a substitute test fluid

Green hydrogen is considered a viable means of decarbonizing heavy-duty transport. Liquid hydrogen (LH 2 ) outperforms compressed hydrogen due to its higher density, particularly for long-distance, massive transport. Transferring high LH 2 mass flow rates may require switching to cryogenic centrifugal pumps. The necessary experimental tests with LH 2 are complex to handle; hence, water is commonly used as a substitute test fluid. This study considers five different centrifugal pump impellers for LH 2 with specific speeds from 10 to 90. The aim is to analyze the effectiveness of water as a substitute test fluid. Loss analyses show that the impeller is less efficient with water (up to a 6% drop) due to higher dynamic viscosity, which leads to lower Reynolds numbers and higher skin friction. Finally, we propose a correlation for the hydraulic efficiency factor between LH 2 and water, based on the specific speed number.

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Publication Details

Journal
International Journal of Hydrogen Energy
Published
2026-09-18
DOI
https://doi.org/10.1016/j.ijhydene.2026.157460
Primary Topic
Cavitation Phenomena in Pumps
Type
article
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article

Numerical performance analysis of liquid hydrogen centrifugal pumps: A focus on the effectiveness of water as a substitute test fluid

Tommaso Capurso, Michele Stefanizzi, Marco Torresi, D. Giampietro
International Journal of Hydrogen Energy
Cavitation Phenomena in Pumps
article

Numerical performance analysis of liquid hydrogen centrifugal pumps: A focus on the effectiveness of water as a substitute test fluid

Tommaso Capurso, Michele Stefanizzi, Marco Torresi, D. Giampietro
article en

Abstract

Green hydrogen is considered a viable means of decarbonizing heavy-duty transport. Liquid hydrogen (LH 2 ) outperforms compressed hydrogen due to its higher density, particularly for long-distance, massive transport. Transferring high LH 2 mass flow rates may require switching to cryogenic centrifugal pumps. The necessary experimental tests with LH 2 are complex to handle; hence, water is commonly used as a substitute test fluid. This study considers five different centrifugal pump impellers for LH 2 with specific speeds from 10 to 90. The aim is to analyze the effectiveness of water as a substitute test fluid. Loss analyses show that the impeller is less efficient with water (up to a 6% drop) due to higher dynamic viscosity, which leads to lower Reynolds numbers and higher skin friction. Finally, we propose a correlation for the hydraulic efficiency factor between LH 2 and water, based on the specific speed number.

International Journal of Hydrogen EnergyVol. 276
Conservatoire National des Arts et Métiers (FR), HESAM Université (FR), Polytechnic University of Bari (IT)
Clean water and sanitation
Openalex Percentile: Top 19%
Cavitation Phenomena in Pumps
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Numerical performance analysis of liquid hydrogen centrifugal pumps: A focus on the effectiveness of water as a substitute test fluid — Tommaso Capurso, Michele Stefanizzi, et al. · International Journal of Hydrogen Energy (2026) | TGRS Research Map | TGRS