Design and multi-objective optimization of low-temperature proton exchange membrane fuel cells with efficient water recovery and high electrochemical performance
Author:
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction
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1. Study on a novel self-adaptive cathode flow field with deformable baffles for proton exchange membrane fuel cell;Applied Energy;2025-01
2. An inquiry into transport phenomena and artificial intelligence-based optimization of a novel bio-inspired flow field for proton exchange membrane fuel cells;Applied Energy;2024-12
3. An enhanced salp swarm algorithm with chaotic mapping and dynamic learning for optimizing purge process of proton exchange membrane fuel cell systems;Energy;2024-11
4. Multi-objective optimization of proton exchange membrane fuel cell based methanol-solar-to-X hybrid energy systems;Applied Energy;2024-11
5. A machine learning driven 3D+1D model for efficient characterization of proton exchange membrane fuel cells;Energy and AI;2024-09
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