gasoline engine operation

23
Gasoline Engine Gasoline Engine Operation Operation chapter15

Upload: naida

Post on 19-Jan-2016

56 views

Category:

Documents


1 download

DESCRIPTION

chapter 15. Gasoline Engine Operation. FIGURE 15.1 The rotating assembly for a V-8 engine that has eight pistons and connecting rods and one crankshaft. - PowerPoint PPT Presentation

TRANSCRIPT

Page 1: Gasoline Engine Operation

Gasoline EngineGasoline EngineOperationOperation

chapter15

Page 2: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.1 FIGURE 15.1 The rotating assembly for a V-8 engine that has eight pistons and The rotating assembly for a V-8 engine that has eight pistons and connecting rods and one crankshaft.connecting rods and one crankshaft.

Page 3: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.2 FIGURE 15.2 A Ford flathead V-8 engine. This engine design was used by Ford Motor A Ford flathead V-8 engine. This engine design was used by Ford Motor Company from 1932 through 1953. In a flathead design, the valves located next to Company from 1932 through 1953. In a flathead design, the valves located next to (beside) the cylinders.(beside) the cylinders.

Page 4: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.3 FIGURE 15.3 A cylinder head with four valves per cylinder, two intake valves (larger) A cylinder head with four valves per cylinder, two intake valves (larger) and two exhaust valves (smaller).and two exhaust valves (smaller).

Page 5: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.4 FIGURE 15.4 The coolant temperature is controlled by the thermostat, which opens and The coolant temperature is controlled by the thermostat, which opens and allows coolant to flow to the radiator when the temperature reaches the rated allows coolant to flow to the radiator when the temperature reaches the rated temperature of the thermostat.temperature of the thermostat.

Page 6: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.5 FIGURE 15.5 A typical lubrication system, showing the oil pan, oil pump, oil filter, and oil A typical lubrication system, showing the oil pan, oil pump, oil filter, and oil passages.passages.

Page 7: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.6 FIGURE 15.6 The downward movement of the piston draws the air–fuel mixture into the The downward movement of the piston draws the air–fuel mixture into the cylinder through the intake valve on the intake stroke. On the compression stroke, the cylinder through the intake valve on the intake stroke. On the compression stroke, the mixture is compressed by the upward movement of the piston with both valves closed. mixture is compressed by the upward movement of the piston with both valves closed. Ignition occurs at the beginning of the power stroke, and combustion drives the piston Ignition occurs at the beginning of the power stroke, and combustion drives the piston downward to produce power. Ondownward to produce power. Onthe exhaust stroke, the upward-moving piston forces the burned gases out the open the exhaust stroke, the upward-moving piston forces the burned gases out the open exhaust valve.exhaust valve.

Page 8: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.6FIGURE 15.6(continued)(continued)..

Page 9: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.7 FIGURE 15.7 Cutaway of an engine showing the cylinder, piston, connecting rod, and Cutaway of an engine showing the cylinder, piston, connecting rod, and crankshaft.crankshaft.

Page 10: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.8 FIGURE 15.8 Automotive engine cylinder arrangements.Automotive engine cylinder arrangements.

Page 11: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.9 FIGURE 15.9 A horizontally opposed engine design helps to lower the vehicle’s center of A horizontally opposed engine design helps to lower the vehicle’s center of gravity.gravity.

Page 12: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.10 FIGURE 15.10 A longitudinally mounted engine drives the rear wheels through a A longitudinally mounted engine drives the rear wheels through a transmission, driveshaft, and differential assembly.transmission, driveshaft, and differential assembly.

Page 13: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.11 FIGURE 15.11 Two types of front-engine, front-wheel drive mountings.Two types of front-engine, front-wheel drive mountings.

Page 14: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.12 FIGURE 15.12 Cutaway of an overhead valve (OHV) V-8 engine showing the lifters, Cutaway of an overhead valve (OHV) V-8 engine showing the lifters, pushrods, roller rocker arms, and valves.pushrods, roller rocker arms, and valves.

Page 15: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.13 FIGURE 15.13 SOHC engines usually require additional components, such as a rocker SOHC engines usually require additional components, such as a rocker arm, to operate all of the valves. DOHC engines often operate the valves directly.arm, to operate all of the valves. DOHC engines often operate the valves directly.

Page 16: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.14 FIGURE 15.14 A DOHC engine uses a camshaft for the intake valve and a separate A DOHC engine uses a camshaft for the intake valve and a separate camshaft for the exhaust valves in each cylinder head.camshaft for the exhaust valves in each cylinder head.

Page 17: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.15 FIGURE 15.15 A supercharger on a Ford V-8.A supercharger on a Ford V-8.

Page 18: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.16 FIGURE 15.16 A turbine wheel is turned by the expanding exhaust gases.A turbine wheel is turned by the expanding exhaust gases.

Page 19: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.17 FIGURE 15.17 A rotary engine operates on the four-stroke cycle but uses a rotor instead A rotary engine operates on the four-stroke cycle but uses a rotor instead of a piston and crankshaft to achieve intake, compression, power, and exhaust stroke.of a piston and crankshaft to achieve intake, compression, power, and exhaust stroke.

Page 20: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.18 FIGURE 15.18 The bore and stroke of pistons are used to calculate an engine’s The bore and stroke of pistons are used to calculate an engine’s displacement.displacement.

Page 21: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.19 FIGURE 15.19 The distance between the centerline of the main bearing journal and the The distance between the centerline of the main bearing journal and the centerline of the connecting rod journal determines the stroke of the engine. This photo centerline of the connecting rod journal determines the stroke of the engine. This photo is a little unusual because it shows a V-6 with a splayed crankshaft used to even out is a little unusual because it shows a V-6 with a splayed crankshaft used to even out the impulses on a 90°, V-6 engine design.the impulses on a 90°, V-6 engine design.

Page 22: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.20 FIGURE 15.20 Compression ratio is the ratio of the total cylinder volume (when the Compression ratio is the ratio of the total cylinder volume (when the piston is at the bottom of its stroke) to the clearance volume (when the piston is at the piston is at the bottom of its stroke) to the clearance volume (when the piston is at the top of its stroke).top of its stroke).

Page 23: Gasoline Engine Operation

chapter 15 Gasoline Engine Operation

FIGURE 15.21 FIGURE 15.21 Torque is a twisting force equal to the distance from the pivot point times Torque is a twisting force equal to the distance from the pivot point times the force applied expressed in units called pound-feet (lb-ft) or Newton-meters (N-m).the force applied expressed in units called pound-feet (lb-ft) or Newton-meters (N-m).