Four stroke engine - Energy Education (2024)

Figure 1. 4-stroke internal combustion engine. 1:fuel injection, 2:ignition, 3:expansion(work is done), 4:exhaust.[1]

The four-stroke engine is the most common types of internal combustion engines and is used in various automobiles (that specifically use gasoline as fuel) like cars, trucks, and some motorbikes (many motorbikes use a two stroke engine). A four stroke engine delivers one power stroke for every two cycles of the piston (or four piston strokes). There is an animation to the right (Figure 1) of a four-stroke engine and further explanation of the process below.

  1. Intake stroke: The piston moves downward to the bottom, this increases the volume to allow a fuel-air mixture to enter the chamber.
  2. Compression stroke: The intake valve is closed, and the piston moves up the chamber to the top. This compresses the fuel-air mixture. At the end of this stroke, a spark plug provides the compressed fuel with the activation energy required to begin combustion.
  3. Power Stroke: As the fuel reaches the end of it’s combustion, the heat released from combusting hydrocarbons increases the pressure which causes the gas to push down on the piston and create the power output.
  4. Exhaust stroke: As the piston reaches the bottom, the exhaust valve opens. The remaining exhaust gas is pushed out by the piston as it moves back upwards.


The thermal efficiency of these gasoline engines will vary depending on the model and design of the vehicle. However in general, gasoline engines convert 20% of the fuel (chemical energy) to mechanical energy—in which only 15% will be used to move the wheels (the rest is lost to friction and other mechanical elements).[2] One way thermodynamic efficiency can improve in engines is through a higher compression ratio. This ratio is the difference between the minimum and maximum volume in the engine chamber (seen as TDC and BDC on figure 2). A higher ratio will allow a larger fuel-air mixture to enter, causing a higher pressure, leading to a hotter chamber, which increases thermal efficiency.[2]

The Otto Cycle

Figure 2.The real otto cycle process that occurs in a four stroke engine.[3]

The pressure volume diagram (PV diagram) that models the changes the fuel-air mixture undergoes in pressure and volume in a four stroke engine is called the Otto cycle. The changes in these will create heat, and use this heat to move the vehicle or machine (hence why it's a type of heat engine). The Otto cycle can be seen in Figure 2 (real Otto Cycle) and Figure 3 (ideal Otto Cycle). The component in any engine that uses this cycle will have a piston to change the volume and pressure of the fuel-air mixture (as seen in Figure 1). The piston gains motion from combusting the fuel (where this happens is explained below), and an electric boost at the start up of the engine.

The following describes what occurs during each step on the PV diagram, in which the combustion of the working fluid—gasoline and air (oxygen), and sometimes electricity, changes the motion in the piston:

Real cycle-step 0 to 1 (ideal cycle-green line): Referred to as the intake phase, the piston is drawn down to the bottom to allow the volume in the chamber to increase so it can "intake" a fuel-air mixture. In terms of thermodynamics, this is referred to as an isobaric process.


Process 1 to 2: During this phase the piston will be drawn up, so it can compress the fuel-air mixture that entered the chamber. The compression causes the mixture to increase slightly in pressure and temperature—however, no heat is exchanged. In terms of thermodynamics, this is referred to as an adiabatic process. When the cycle reaches point 2, it is when the fuel is met by the spark plug to be ignited.


Process 2 to 3: This is where combustion occurs due to the ignition of fuel by the spark plug. The combustion of the gas is complete at point 3, which results in a highly pressurized chamber that has lots of heat (thermal energy). In terms of thermodynamics, this is referred to as an isochoric process.

Process 3 to 4: The thermal energy in the chamber as a result of combustion is used to do work on the piston—which pushes the piston down—increasing the volume of the chamber. This is also known as the power stoke because it is when the thermal energy is turned into motion to power the machine or vehicle.


Purple line (Process 4 to 1 and exhaust phase): From process 4 to 1 the exhaust valve opens and all the waste heat is expelled from the engine chamber. As the heat leaves the gas, the molecules lose kinetic energy causing the decrease in pressure.[5] Then the exhaust phase (step 0 to 1) occurs when the remaining mixture in the chamber is compressed by the piston to be "exhausted" out, without changing the pressure.

For Further Reading

  • Internal combustion engine
  • Otto cycle
  • Two stroke engine
  • Thermal efficiency
  • Or explore a random page

References

  1. Wikimedia Commons [Online], Available: https://upload.wikimedia.org/wikipedia/commons/d/dc/4StrokeEngine_Ortho_3D_Small.gif
  2. 2.0 2.1 R. Wolfson, Energy, environment, and climate. New York: W.W. Norton & Company, 2012, p. 106.
  3. Actual and Ideal Otto Cycle - Nuclear Power", Nuclear Power, 2018. [Online]. Available: https://www.nuclear-power.net/nuclear-engineering/thermodynamics/thermodynamic-cycles/otto-cycle-otto-engine/actual-and-ideal-otto-cycle/. [Accessed: 22- Jun- 2018].
  4. Wikimedia Commons [Online], Available: https://en.wikipedia.org/wiki/Otto_cycle#/media/File:P-V_Otto_cycle.svg
  5. I. Dinçer and C. Zamfirescu, Advanced power generation systems. London, UK: Academic Press is an imprint of Elsevier, 2014, p. 266.

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Four stroke engine - Energy Education (2024)

FAQs

How energy is transferred through a 4-stroke engine system? ›

In normal running of the engine, chemical energy (of fuel which is either petrol or diesel or gas) is converted heat energy which causes the compressed air present in the cylinder to expand suddenly. This mechanical energy is created to push the piston down.

How can I increase the efficiency of my 4-stroke engine? ›

The air standard efficiency of Otto cycle can be increased by increasing compression ratio. You can realize it from the efficiency expression. r(Compression ratio) = (Clearance volume + Swept volume)/Clearance volume. gamma= ratio of specific heats.

What are the basics of a 4-stroke engine? ›

Four Stroke Cycle Engines. A four-stroke cycle engine is an internal combustion engine that utilizes four distinct piston strokes (intake, compression, power, and exhaust) to complete one operating cycle.

How often does a 4-stroke engine make power? ›

A 4-stroke engine fires once every second rotation of the crankshaft (every fourth stroke of the piston).

How is energy transferred in an engine? ›

Firstly the chemical energy is converted into thermal energy, and then this thermal energy is converted into mechanical energy. Gasoline burns and generates heat. This heat is converted by the engine into mechanical energy to move the car.

How does an engine convert energy? ›

The chemical energy of a fuel can be converted by combustion into thermal, or heat, energy in a heat engine. The engine in turn converts the thermal energy into mechanical energy, as in engines that drive shafts.

What are 3 disadvantages of 4 stroke engines? ›

DISADVANTAGES OF 4 STROKE ENGINE :-

Also there are many parts to worry about which makes it harder to troubleshoot. Less powerful :- As power gets delivered once every 2 rotations of crankshaft(4 strokes), hence 4 stroke is less powerful. Expensive :- A four stroke engine has much more parts than 2 stroke engine.

What is the most efficient 4 stroke engine? ›

The Wärtsilä 31 engine, which has been recognised by Guinness World Records as being the world's most efficient 4-stroke diesel engine, has been... The best-in-class fuel efficiency of the Wärtsilä 31 engine means also that the exhaust emissions are correspondingly minimised.

Why are 4 strokes more fuel efficient? ›

Four-stroke engines are more efficient due to less demand for fuel. Fuel is consumed once every four strokes versus two. Four-stroke engines are better for the environment due to reduced emissions. A two-stroke engine releases burnt oil into the air in addition to the exhaust produced.

What are the 3 basic components of the 4-stroke engine? ›

Here is a breakdown of the parts and functions of a 4-stroke diesel engine.
  • Intake Stroke. Small engines get fuel and air through the carburetor. ...
  • Compression Stroke. Both the intake and exhaust valves are closed in the compression stroke. ...
  • Power Stroke. ...
  • Exhaust Stroke.

Is a 4-stroke engine better? ›

Being more fuel efficient means; In a 4 stroke outboard engine, fuel is consumed once every 4 stokes and hence it burns less fuel, making the 4 stroke engine more efficient and environmentally friendly compared to a 2 stroke engine, as 2 stroke burns fuel and oil mixture.

Why is a four-stroke engine good? ›

Four-stroke engines yield higher levels of torque at a lower RPM during operation. A four-stroke engine only consumes fuel once every four strokes, making it a more fuel-efficient engine option. Four-stroke engines give off less pollution because they do not require oil or lubricant mixed in the fuel.

What are two disadvantages of a four-stroke engine? ›

Less powerful :- As power gets delivered once every 2 rotations of crankshaft(4 strokes), hence 4 stroke is less powerful. Expensive :- A four stroke engine has much more parts than 2 stroke engine. So they often require repairs which leads to greater expense.

What is the efficiency of a 4-stroke engine? ›

The four-stroke diesel engine has been used in the majority of heavy-duty applications for many decades. It uses a heavy fuel containing more energy and requiring less refinement to produce. The most efficient Otto-cycle engines run near 30% thermal efficiency.

Do 6 stroke engines exist? ›

While reducing the need for a unique cooling system that consumes power, increases weight, reduces overall efficiency, and demands more maintenance, the six-stroke engine presents better performance in comparison to four or two-stroke engines (Naresh and Hari Babu 2015; Selvakumar 2021).

How can you improve the efficiency of an engine? ›

“The best way a driver can increase efficiency is also the safest way to drive,” Ptasznik added. “Leaving a proper following distance reduces engine and foundation brake use where kinetic energy is dissipated as heat. A steady state is always more efficient than throttle-brake-throttle operation.”

How to increase the efficiency of an engine? ›

10 easy ways to increase engine performance | Mobil™
  1. Synthetic lubricants. ...
  2. Ignition. ...
  3. Larger throttle body and injectors. ...
  4. Compression. ...
  5. Found-bonus power. ...
  6. Velocity stack. ...
  7. Fuel line right-sizing. ...
  8. Dual-plane manifold.

What would make the engine more efficient? ›

The greater the expansion ratio, the more efficient the engine, in principle, and higher compression / expansion -ratio conventional engines in principle need gasoline with higher octane value, though this simplistic analysis is complicated by the difference between actual and geometric compression ratios.

How can we improve the fuel efficiency of the engine? ›

Remain steady when accelerating

Avoid revving your accelerator to a high revolutions per minute (RPM). It's better for fuel economy, as your engine uses less fuel when it is revolving slower, at a lower RPM.

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