Engine Modeling and Simulation [E-Book] / edited by Avinash Kumar Agarwal, Dhananjay Kumar, Nikhil Sharma, Utkarsha Sonawane.
This book focuses on the simulation and modeling of internal combustion engines. The contents include various aspects of diesel and gasoline engine modeling and simulation such as spray, combustion, ignition, in-cylinder phenomena, emissions, exhaust heat recovery. It also explored engine models and...
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Personal Name(s): | Agarwal, Avinash Kumar, editor |
Kumar, Dhananjay, editor / Sharma, Nikhil, editor / Sonawane, Utkarsha, editor | |
Edition: |
1st edition 2022. |
Imprint: |
Singapore :
Springer,
2022
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Physical Description: |
XIV, 364 pages 142 illustrations, 112 illustrations in color (online resource) |
Note: |
englisch |
ISBN: |
9789811686184 |
DOI: |
10.1007/978-981-16-8618-4 |
Series Title: |
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Energy, Environment, and Sustainability
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Subject (LOC): |
- Introduction to Engine Modeling and Simulation
- Development of Engine Models and Analysis of Cylinder Bore Piston Stresses and Temperature Effects in IC Engine
- Mathematical Modeling of Injection and Spray Characteristics of a Diesel Engine: A Review
- Spray Breakup Modelling for Internal Combustion Engines
- Modeling and Simulation of Diesel Engines using CFD and its Applications in Optimizing Various In-Cylinder Techniques
- Physical and Data-Driven Models Hybridisation for Modelling the Dynamic State of a Four-Stroke Marine Diesel Engine
- Soot Particles and NOx Modelling for Diesel Engine
- NOx emission prediction model for DI diesel engine
- Fundamentals, Evolution, and Modeling of Ignition Systems for Spark Ignition Engines
- Methods in SI engine modelling: Auto calibration of combustion and heat transfer models, and exergy analysis
- Investigation on the effect of injection timings on combustion, performance and emissions of a pure methanol fuelled DISI engine through 1-D simulations
- Automotive exhaust thermoelectric generator unit integrated to exhaust noise muffler: Heat recovery and noise attenuation simulations
- Diesel engine waste heat recovery schemes for improved fuel economy and reduced emissions: Simulation result.