Internal Combustion Engines: Applied Thermosciences 2nd Edition, by Colin R. Ferguson and Allan T. Kirkpatrick focuses on thermodynamic evaluation, from the requisite first law to more refined purposes and engine design. This book offers trendy introduction to internal combustion engines and their mechanics.
This text covers the numerous types of internal combustion engines, including spark ignition, compression ignition, and stratified charge engines, and examines processes, preserving equations of state easy by assuming constant specific heats. Equations are restricted to heat engines and later applied to combustion engines.
Matters embrace practical equations of state, stoichiometry, predictions of chemical equilibrium, engine efficiency standards, and friction, which is discussed in terms of the hydrodynamic principle of lubrication and experimental strategies reminiscent of dimensional analysis. Up-to-date literature references in each chapter provide a useful resource for additional study. New pictures and figures present modern engine components and engine performance.
Internal Combustion Engines: Applied Thermosciences applies the ideas of thermodynamics, fluid mechanics, and heat transfer to internal combustion engines. Each chapter has been reorganized to clearly current modeling and evaluation techniques. The book includes new materials on thermodynamic modeling, consumption and exhaust move, friction, combustion, various fuels, emissions, and instrumentation.
The book incorporates many worked examples that illustrate vital features of internal combustion engines. Up-to-date dialogue of latest engine applied sciences exposes readers to present engineering practice. Java primarily based applets for computation of engine thermodynamics, friction and heat switch can be found on the book’s website online with numerous worked examples and homework issues for pupil assignment.
Internal Combustion Engines: Applied Thermosciences [Paperback]
Colin R. Ferguson and Allan T. Kirkpatrick
Wiley; 2 edition
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