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portada Modeling and Numerical Simulation of Proton Exchange Membrane Fuel Cells. Concepts, Methods, and Challenges
Type
Physical Book
Year
2025
Pages
228
Format
Paperback
Dimensions
22.9x15.2 cm
ISBN13
9780443241185

Modeling and Numerical Simulation of Proton Exchange Membrane Fuel Cells. Concepts, Methods, and Challenges

Fangming Jiang;Wei Lin;Mohmed Ahmed Dafalla;Fengping Hu (Author) · Elsevier - Health Sciences Division · Paperback

Modeling and Numerical Simulation of Proton Exchange Membrane Fuel Cells. Concepts, Methods, and Challenges - Fangming Jiang;Wei Lin;Mohmed Ahmed Dafalla;Fengping Hu

New Book Imported to Austria
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287,92 €

Synopsis "Modeling and Numerical Simulation of Proton Exchange Membrane Fuel Cells. Concepts, Methods, and Challenges"

Modeling and Numerical Simulation of Proton Exchange Membrane Fuel Cells: Concept, Methods, and Challenges provides a concise guide to the modeling of PEM fuel cells. The book offers detailed methodologies, codes, and algorithms on every aspect of PEM fuel cells, from cold start to degradation. Chapters cover the development, basic principles, and components of PEM fuel cells, discuss the transport phenomena and mathematical formulation of macro-scale PEM fuel cell models, single cell and stack-level models, and model validation, and explain multi-phase transport modeling in PEM fuel cells, including different multiphase models like flow in gas flow channels, porous electrodes, and multi-phase model validation. The book also addresses multiphase mixture formulation, finite-volume, direct numerical simulation, Lattice Boltzmann, and pore network models, along with a section on modeling the cold start process of PEM fuel cells, including the non-isothermal transient cold start model, reduced-dimensional transient model, and the impact of different parameters on the cold start performance. Final sections cover the degradation and lifetime modeling of PEM fuel cells, including stress-induced degradation mechanisms, physics-based and data-driven modeling methods, and coupled performance-degradation models. Finally, recent progress on multi-scale and multi-dimensional modeling of PEM fuel cells, including micro and nano-scale modeling and multi-scale coupled models, is covered.

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