Beschreibung
Produktdetails
Einband
Taschenbuch
Erscheinungsdatum
21.08.2026
Verlag
Pippet SkySeitenzahl
196
Maße (L/B/H)
22,9/15,2/1,1 cm
Gewicht
293 g
Sprache
Englisch
EAN
9798869103765
The development of alternative fuels for internal combustion engines is an important area of mechanical engineering, energy engineering, and sustainable transportation research. Variable Compression Ratio Engine with Biodiesel provides a focused technical examination of biodiesel production, fuel properties, variable compression ratio (VCR) engine operation, experimental engine performance, combustion behavior, exergy analysis, and response surface methodology. The book connects internal combustion engine technology, renewable fuels, thermodynamics, experimental analysis, and optimization within an integrated engineering framework. The book introduces the fundamentals of diesel engine operation and examines the importance of compression ratio in determining engine performance and combustion characteristics. A variable compression ratio engine provides an experimental platform for studying the effects of compression ratio under different operating conditions. Changes in compression ratio can influence combustion behavior, thermal efficiency, fuel consumption, emissions, and other performance parameters, making it an important variable in engine analysis. A central focus of the book is biodiesel as an alternative fuel for compression-ignition engines. Biodiesel can be produced from suitable biological feedstocks through chemical processing and can be evaluated as a fuel for diesel-engine applications. The book discusses the characteristics of biodiesel and the relationship between fuel properties and engine behavior, providing a technical foundation for understanding biodiesel-fueled engine operation. The biodiesel production process is examined in detail, including the general principles of transesterification and the stages involved in preparing biodiesel. Filtering, heating, acid esterification, alkaline esterification, heating and mixing, settling, and separation are discussed as relevant processing steps. Understanding these stages is important for evaluating how biodiesel is prepared and how its resulting fuel properties may influence subsequent engine testing.
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