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Proton-exchange membrane (PEM) fuel cell system mathematical modelling
Omran Abdelnasir
, David Smith
,
Abed Alaswad
,
Amirpiran Amiri
,
Jose Ricardo Sodre
, alessandro Lucchesi
College of Engineering and Physical Sciences
Mechanical, Biomedical & Design Engineering
Energy and Bioproducts Research Institute (EBRI)
Chemical Engineering & Applied Chemistry
Aston University
Università di Pisa
Research output
:
Unpublished contribution to conference
›
Unpublished Conference Paper
›
peer-review
160
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Overview
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Student theses
(1)
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Dive into the research topics of 'Proton-exchange membrane (PEM) fuel cell system mathematical modelling'. Together they form a unique fingerprint.
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Weight
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Engineering
Mathematical Modeling
100%
Proton-Exchange Membrane Fuel Cells
100%
Proton-Exchange Membrane Fuel Cells System
100%
Resistive
50%
Flow Velocity
50%
Flow Rate
50%
Conversion Efficiency
50%
Peak Load
50%
Test Bench
50%
State Condition
50%
Fuel Cell Stack
50%
Current Reference
50%
Proton Exchange Membrane
50%
Fuel Cell Types
50%
Proton-Exchange Membrane Fuel Cells Performance
50%
Resistive Load
50%
Load Resistance
50%
Capacitor Bank
50%
Fuel Cell
50%
Keyphrases
Mathematical Modeling
100%
Proton Exchange Membrane Fuel Cell (PEMFC)
100%
Conversion Efficiency
25%
Peak Load
25%
Generated Power
25%
Steady-state Conditions
25%
Software-based
25%
MATLAB Simulink
25%
Supercapacitor
25%
Fuel Cell
25%
Fuel Cell Stack
25%
Cell Current
25%
Variable Load
25%
Current Reference
25%
Fuel Cell Performance
25%
Stack System
25%
Hydrogen Conversion
25%
Hydrogen Flow Rate
25%
Proton Exchange Membrane Fuel
25%
Flow Rate Variation
25%
Load Resistance
25%
Resistive Load
25%
Capacitor Bank
25%
Load Flow
25%
Chemical Engineering
Proton Exchange Membrane Fuel
100%