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Seminar On Seminar On Gasoline Direct Gasoline Direct Injection Injection
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Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Dec 18, 2015

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Page 1: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Seminar On Seminar On Gasoline Direct InjectionGasoline Direct Injection

Page 2: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

• Introduction• Transition of fuel supply• Major Objectives of the GDI engine• The difference between new GDI and current MPI • Basic technical features of GDI Engine• Operation• Major characteristics of the GDI engine• Achievements in GDI• Disadvantage• Conclusion

Page 3: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

INTRODUCTIONINTRODUCTION In internal combustion engines, gasoline direct injection is a

variant of fuel injection employed in modern two- and four- stroke petrol engines. The petrol/gasoline is highly pressurised, and injected via a common rail fuel line directly into the combustion chamber of each cylinder, as opposed to conventional multi-point fuel injection that happens in the intake tract, or cylinder port.

Page 4: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Transition of fuel supplyTransition of fuel supply

Page 5: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Major Objectives of the GDI engine Major Objectives of the GDI engine

Ultra-low fuel consumption that betters that of even diesel engines

Superior power to conventional MPI engines

WHY NOT CARBURETTOR?

Carburetor has following disadvantages

•Vapour lock•Perfect air/fuel mixture cannot be obtained•Lack of throttle response•Low volumetric efficiency •Mechanical device•Compromises on emission

Page 6: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Why The GDI ?Why The GDI ?

• Lower Fuel Consumption and More Output•Improved Volumetric Efficiency•Very efficient intake and relatively high compression ratio deliver both high performance and response•Lower octane requirement •More precise air-fuel ratio control•More rapid starting•Reduced CO2 emissions•Improved transient response.

Advantages of GDI Engines are:Advantages of GDI Engines are:

Page 7: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

In two-stroke enginesIn two-stroke enginesThe benefits of direct injection are even more pronounced in two-stroke engines, because it eliminates much of the pollution they cause. In conventional two-strokes, the exhaust and intake ports are both open at the same time, at the bottom of the piston stroke. A large portion of the fuel/air mixture entering the cylinder from the crankcase through the intake ports goes directly out, unburned, through the exhaust port. With direct injection, only air comes from the crankcase, and fuel is not injected until the piston rises and all ports are closed

Page 8: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

The difference between new GDI and current MPI

The difference between new GDI and current MPI

•In MPI or Multi-Point Injection, the fuel is injected to each intake port•In MPI engines there are limits to fuel supply response and the combustion control because the fuel mixes with air before entering the cylinder. •In GDI, gasoline is directly injected into the cylinder as in a diesel engine•The injection timings are precisely controlled to match load conditions.

Page 9: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Basic technical features of GDI EngineBasic technical features of GDI Engine The Upright Straight Intake Port.

The Curved-top Piston.

The High Pressure Fuel Pump.

The High Pressure Swirl Injector.

Page 10: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

OperationOperation• Fuel is delivered to the fuel rail by the high-pressure

pump• A closed control loop comprising the fuel pressure

sensor, pressure control valve and electronic control unit controls the pressure of the hydraulic system individually for all operating points.

• The Electronic control unit coordinates the different torque parameters according to the position of the accelerator pedal and undertakes the necessary control actions in the engine.

Page 11: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Engine Diagram Engine Diagram

Page 12: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Major characteristics of the GDI engineMajor characteristics of the GDI engine

1. Ultra-lean Combustion Mode Under most normal driving conditions, up to

speeds of 120km/h, the GDI engine operates in ultra-lean combustion mode for less fuel consumption. In this mode, fuel injection occurs at the latter stage of the compression stroke and ignition occurs at an ultra-lean air-fuel ratio of 30 to 40

Page 13: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

2. Superior Output Mode When the GDI engine is operating with higher loads or at higher speeds, fuel injection takes place during the intake stroke. This optimizes combustion by ensuring a homogeneous, cooler air-fuel mixture that minimized the possibility of engine knocking.

Page 14: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

3. In-cylinder AirflowThe GDI engine has upright straight intake ports rather than horizontal intake ports used in conventional engines. The upright straight intake ports efficiently direct the airflow down at the curved-top piston, which redirects the airflow into a strong reverse tumble for optimal fuel injection

Page 15: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

4. Fuel Spray Newly developed high-pressure swirl injectors provide the ideal spray pattern to match each engine operational modes. And at the same time by applying highly swirling motion to the entire fuel spray, they enable sufficient fuel atomization that is mandatory for the GDI even with a relatively low fuel pressure of 50kg/cm2

Page 16: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

5. Optimized Configuration of the Combustion ChamberThe curved-top piston controls the shape of the air-fuel mixture as well as the airflow inside the combustion chamber, and has an important role in maintaining a compact air fuel mixture. The mixture, which is injected late in the compression stroke, is carried toward the spark plug before it can disperse.

Page 17: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Realization of lower fuel consumptionRealization of lower fuel consumption

•Fuel Consumption during IdlingThe GDI engine maintains stable combustion even at low idle speeds. Moreover, it offers greater flexibility in setting the idle speed.Compared to conventional engines, its fuel consumption during idling is 40% less.

Page 18: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

•Fuel Consumption during Cruising Drive

At 40km/h, for example, the GDI engine uses 35% less fuel than a comparably sized conventional engine

Page 19: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

Realization of Superior Output Realization of Superior Output

Compared to conventional engines, the GDI engine provides better volumetric efficiency. The upright straight intake ports enable smoother air intake. And the vaporization of fuel, which occurs in the cylinder at a late stage of the compression stroke, cools the air for better volumetric efficiency.

•Improved Volumetric Efficiency

Page 20: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

•Increased Compression RatioThe cooling of air inside the cylinder by the vaporization of fuel minimizes engine knocking. This allows a high compression ratio of 12, and thus improve combustion efficiency.

Page 21: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

AchievementsAchievements• Engine performance Compared to conventional MPI engines of a comparable size, the GDI

engine provides approximately 10% greater output and torque at all speeds.

Page 22: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

•Vehicle Acceleration

In high-output mode, the GDI engine provides outstanding acceleration.The following chart compares the performance of the GDI engine with a conventional MPI engine

Page 23: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

DisadvantageDisadvantage

Complexity and Cost :

Direct injection systems are more expensive to build because their components must be more rugged -- they handle fuel at significantly higher pressures than indirect injection systems and the injectors themselves must be able to withstand the heat and pressure of combustion inside the cylinder.

Page 24: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

ConclusionConclusionGasoline direct injection (GDI) engine technology has received considerable attention over the last few years as a way to significantly improve fuel efficiency without making a major shift away from conventional internal combustion technology. In many respects, GDI technology represents a further step in the natural evolution of gasoline engine fueling systems.

Page 25: Seminar On Gasoline Direct Injection. Introduction Transition of fuel supply Major Objectives of the GDI engine The difference between new GDI and current.

ReferencesReferences1. Internal Combustion Engines By: Anand V

Domkundwar.2. Internal Combustion Engines By: Mathur & Sharma. 3. www.howstuffworks.com4. www.mitsubishi-np.in5. www.autoworld.com6. Wikipedia.org