reciprocating combustion engines architecture scuola di dottorato di ricerca 2010 - road vehicle and...

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Reciprocating combustion engines architecture Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 1. Combustion engines main principles and definitions 2. Reciprocating combustion engines architecture 3. Reciprocating engines dynamic properties 4. Engine components and systems 5. The engine management system for gasoline and Diesel engines 6. The emission Requirements & Technology 7. Engine vehicle integration 7.1 Engine layout and mounting 7.2 Engine-vehicle cooling system 7.3 Intake system 7.4 Exhaust system John Heywood, Internal Combustion Engine Fundamentals / McGraw-Hill Charles F. Taylor, The internal Combustion Engine in Theory and Practice /The M.I.T. Press Automotive Handbook – R. Bosch/SAE Advanced engine technology (Heinz Heisler) – Butterworth/Heinemann Light and Heavy Vehicle Technology (M.J. Nunney) - CGIA, MSAE, MIMI

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Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science

1. Combustion engines main principles and definitions

2. Reciprocating combustion engines architecture

3. Reciprocating engines dynamic properties

4. Engine components and systems

5. The engine management system for gasoline and Diesel engines

6. The emission Requirements & Technology

7. Engine vehicle integration

7.1 Engine layout and mounting7.2 Engine-vehicle cooling system7.3 Intake system7.4 Exhaust system

John Heywood, Internal Combustion Engine Fundamentals / McGraw-Hill Charles F. Taylor, The internal Combustion Engine in Theory and Practice /The M.I.T. Press Automotive Handbook – R. Bosch/SAE Advanced engine technology (Heinz Heisler) – Butterworth/Heinemann Light and Heavy Vehicle Technology (M.J. Nunney) - CGIA, MSAE, MIMI

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 2

Architecture configuration

In-line engine

The cylinders are arranged consecutively in a single plane

V-engine

The cylinders are arranged in two planes in a V configuration

Radial engine

The cylinders are arranged radially in one or more planes

Opposed-cylinder (boxer) engine

The cylinders are horizontally opposed

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 3

4 in-line engine configuration

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 4

Boxer engine configuration / “flat four”

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 5

5 in-line engine configuration

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 6

V6 @ 60° engine configuration

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 7

V8 @ 72° engine configuration

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 8

V10 @ 72° engine configuration

Reciprocating combustion engines architecture

Scuola di Dottorato di Ricerca 2010 - Road vehicle and engine engineering science 9

1850hp Wright R-2600-29 Cyclone 14-cylinder radial. Note that this is effectively two 7 cylinder radials back to back with the rear bank of cylinders being rotated half the cylinder to cylinder spacing.

A model 5 cylinder radial engine built by Ron Lane.