Buch, Englisch, 315 Seiten, Format (B × H): 154 mm x 238 mm, Gewicht: 582 g
Buch, Englisch, 315 Seiten, Format (B × H): 154 mm x 238 mm, Gewicht: 582 g
ISBN: 978-1-4987-0308-6
Verlag: CRC Press
Dual-Fuel Diesel Engines offers a detailed discussion of different types of dual-fuel diesel engines, the gaseous fuels they can use, and their operational practices. Reflecting cutting-edge advancements in this rapidly expanding field, this timely book:
- Explains the benefits and challenges associated with internal combustion, compression ignition, gas-fueled, and premixed dual-fuel engines
- Explores methane and natural gas as engine fuels, as well as liquefied petroleum gases, hydrogen, and other alternative fuels
- Examines safety considerations, combustion of fuel gases, and the conversion of diesel engines to dual-fuel operation
- Addresses dual-fuel engine combustion, performance, knock, exhaust emissions, operational features, and management
- Describes dual-fuel engine operation on alternative fuels and the predictive modeling of dual-fuel engine performance
Dual-Fuel Diesel Engines covers a variety of engine sizes and areas of application, with an emphasis on the transportation sector. The book provides a state-of-the-art reference for engineering students, practicing engineers, and scientists alike.
Zielgruppe
Engineering students, practicing engineers, and scientists.
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
Introduction. The Internal Combustion Engine. The Compression Ignition Engine. Gas-Fueled Engines. The Premixed Dual-Fuel Engine. Methane and Natural Gas as Engine Fuels. Liquefied Petroleum Gases, Hydrogen, and Other Alternative Fuels. Safety Considerations. Combustion of Fuel Gases. The Conversion of Diesel Engines to Dual-Fuel Operation. The Diesel Fuel Pilot. Gaseous Fuel Admission. Dual-Fuel Engine Combustion. Dual-Fuel Engine Performance. Knock in Dual-Fuel Engines. Exhaust Emissions. Some Operational Features of Dual-Fuel Engines. Dual-Fuel Engine Management. Dual-Fuel Engine Operation on Alternative Fuels. Predictive Modeling of Dual-Fuel Engine Performance.