Related Experiment Video
Updated: May 21, 2025

Improving the Combustion Performance of a Hybrid Rocket Engine using a Novel Fuel Grain with a Nested Helical Structure
Published on: January 18, 2021
1D hydrogen engine modeling to investigate air-fuel ratio, spark timing, and water injection effects on performance
Omar Mohamed Saied1, Mohamed Abdelwahab2
1Automotive Mechatronics Department, Faculty of Engineering, German International University, Cairo, Egypt.
Abstract:
This study presents a comprehensive 1D modeling and simulation of a hydrogen-fueled internal combustion engine, focusing on the impacts of air-fuel ratio, spark timing, and water injection on performance and emissions. Using a single-cylinder BMW F650 GS engine as a baseline, simulations were conducted in Ricardo WAVE to evaluate engine behavior under varying conditions. Results demonstrate that hydrogen fueling reduces CO emissions to negligible levels but increases NOx emissions under specific conditions due to elevated combustion temperatures. Water injection effectively mitigates NOx formation and enhances volumetric efficiency while slightly compromising power output at high hydrogen-to-water ratios. The findings highlight hydrogen's potential as a sustainable fuel for internal combustion engines and underline the importance of optimizing operating parameters to balance performance, efficiency, and emissions. This research contributes valuable insights into the development of cleaner, hydrogen-powered transportation solutions.
Related Concept Videos
Otto and Diesel Cycle
Internal Combustion Engine
Design Example: Automobile Ignition System
One can generate a large voltage using a car battery of 12 volts with the help of inductors. Inductors are known for opposing...
Work Done in an Adiabatic Process
Typical Model Studies
Batteries and Fuel Cells

