Modeling Comparison of a Two-Phase Mechanically Pumped Loop with a Conventional Ethylene Glycol Water Single-Phase Mechanically Pumped Loop for Fuel-Cell Cooling in TheMa4HERA †
Abstract
1. Introduction
1.1. Background
1.2. Introduction to Mechanically Pumped Loops

2. System Configuration and Analysis
2.1. System Architecture
2.2. 2Φ MPL Fluid Selection
2.3. System Analysis
3. Results
3.1. Baseline: 1Φ EGW Operating at 90 °C
3.2. 2Φ Methanol Operating at 90 °C
3.3. 2Φ Methanol vs. 1Φ EGW Operating at 90 °C
3.4. Effect of 1Φ MPL Operating Temperature
3.5. Effect of 2Φ MPL Operating Temperature
4. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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| 1 EGW | 2 Methanol | 2 Ethanol | |||
|---|---|---|---|---|---|
| 90 °C | 130 °C | 90 °C | 130 °C | ||
| Pump | [bar] | 1.97 | 2.00 | 0.7 | 1.00 |
| Pump flowrate | [lpm] | 1389 | 1384 | 309 | 339 |
| Pump power | [kW] | 9.1 | 9.2 | 0.7 | 1.1 |
| Pump mass | [kg] | 32 | 32 | 7 | 8 |
| Ram air HX frontal area | [m2] | 2.52 | 1.40 | 2.04 | 1.22 |
| Ram air HX mass | [kg] | 128 | 66 | 90 | 51 |
| Accumulator volume | [L] | 18 | 33 | 202 | 167 |
| Accumulator mass 2 | [kg] | neglected | neglected | 22 (-) 1 | 37 (-) 1 |
| Fluid mass | [kg] | 341 | 294 | 213 (59) 1 | 168 (54) 1 |
| Tubing mass | [kg] | 50 | 43 | 31 | 23 |
| H2HX mass | [kg] | 12 | 6 | 15 | 8 |
| Cooling system mass | [kg] | 563 | 442 | 378 (202) 1 | 295 (144) 1 |
| Mass reduction 3 | [%] | - | 21 | 33 (64) 1 | 47 (74) 1 |
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© 2026 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
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Weijer, T.A.F.v.d.; Es, J.v.; Gerner, H.J.v.; Nijenhuis, A.K.t.; Biesheuvel, J.; Delpu, G.; Cherdouh, F.; Peimbert, E.T.; Gantus, R.A.; Trolliet, P.; et al. Modeling Comparison of a Two-Phase Mechanically Pumped Loop with a Conventional Ethylene Glycol Water Single-Phase Mechanically Pumped Loop for Fuel-Cell Cooling in TheMa4HERA. Eng. Proc. 2026, 133, 173. https://doi.org/10.3390/engproc2026133173
Weijer TAFvd, Es Jv, Gerner HJv, Nijenhuis AKt, Biesheuvel J, Delpu G, Cherdouh F, Peimbert ET, Gantus RA, Trolliet P, et al. Modeling Comparison of a Two-Phase Mechanically Pumped Loop with a Conventional Ethylene Glycol Water Single-Phase Mechanically Pumped Loop for Fuel-Cell Cooling in TheMa4HERA. Engineering Proceedings. 2026; 133(1):173. https://doi.org/10.3390/engproc2026133173
Chicago/Turabian StyleWeijer, Tim A. F. van de, Johannes van Es, Henk Jan van Gerner, Arne K. te Nijenhuis, Julian Biesheuvel, Guilhem Delpu, Fatima Cherdouh, Esli Trejo Peimbert, Ricardo Abib Gantus, Pierre Trolliet, and et al. 2026. "Modeling Comparison of a Two-Phase Mechanically Pumped Loop with a Conventional Ethylene Glycol Water Single-Phase Mechanically Pumped Loop for Fuel-Cell Cooling in TheMa4HERA" Engineering Proceedings 133, no. 1: 173. https://doi.org/10.3390/engproc2026133173
APA StyleWeijer, T. A. F. v. d., Es, J. v., Gerner, H. J. v., Nijenhuis, A. K. t., Biesheuvel, J., Delpu, G., Cherdouh, F., Peimbert, E. T., Gantus, R. A., Trolliet, P., Galzin, G., & Mauhe, L. L. (2026). Modeling Comparison of a Two-Phase Mechanically Pumped Loop with a Conventional Ethylene Glycol Water Single-Phase Mechanically Pumped Loop for Fuel-Cell Cooling in TheMa4HERA. Engineering Proceedings, 133(1), 173. https://doi.org/10.3390/engproc2026133173

