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Turbofan

technology Maturity 11-13

A fan engine helps planes fly.

Turbofan3 Labelled.gif
Turbofan3 Labelled.gif
It uses big fans to push air. This push moves the plane forward. It helps planes use less fuel. This is very good for us.
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
Have you seen a big plane?

45 words

A fan engine helps big planes fly.

Turbofan3 Labelled.gif
Turbofan3 Labelled.gif
It has a core in the middle. This core burns fuel to make power. That power spins a big fan.
tfan-schematic-kk-20090106.png
tfan-schematic-kk-20090106.png
Some air goes through the hot core. Other air goes around the outside. This extra air is called bypass air. The fan pushes this air back. This push helps the plane move. Using more bypass air saves fuel. Most large planes use this kind of engine.
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
It is a very smart way to fly.

90 words

A turbofan is a type of jet engine. It helps many planes fly.

tfan-schematic-kk-20090106.png
tfan-schematic-kk-20090106.png

This engine has two main parts. One part is a gas turbine engine. This is the core. The core burns fuel to make power. The second part is a ducted fan. This is a fan inside a tube. The core spins the fan.

Turbofan3 Labelled.gif
Turbofan3 Labelled.gif

When air enters the engine, it splits. Some air goes into the hot core. Other air goes around the core. We call this bypass air. The ratio of these two flows is the bypass ratio.

Turbofan operation.svg
Turbofan operation.svg

High-bypass engines move a lot of bypass air. Most big planes use these. They are very good at saving fuel. Low-bypass engines move less bypass air. Most fighter jets use these. They can use an afterburner. An afterburner adds more power for combat.

Turbofans are a middle ground. They sit between turbojets and propellers. Turbojets use only hot exhaust for thrust. Propellers use mostly air from a blade. Turbofans use both the core and the fan to push the plane forward.

177 words

A turbofan is a special kind of jet engine used to move aircraft. It is a mix of two different engine ideas. The name comes from the turbojet and the extra fan stage.

tfan-schematic-kk-20090106.png
tfan-schematic-kk-20090106.png
This engine is very important for modern flight. It helps planes fly more efficiently by using air in two different ways. Most of the large planes you see at airports use this technology today.

Inside the engine, the air follows two different paths. One part of the air enters the core of the engine. In the core, fuel is burned to create energy. This energy spins a turbine, which is a set of spinning blades.

Turbofan3 Labelled.gif
Turbofan3 Labelled.gif
This turbine then powers a large ducted fan at the front. Some air goes through the core, but other air goes around it. This extra air is called bypass air.
Turbofan operation.svg
Turbofan operation.svg
Both the core exhaust and the bypass air push the plane forward.

Engineers use a number called the bypass ratio to describe these engines. This ratio compares the amount of bypass air to the core air. For example, a ratio of 6 means six times more air goes around the core.

Gas turbine efficiency.png
Gas turbine efficiency.png
There are two main types of turbofans. High-bypass engines have much more fan thrust than jet thrust. Most commercial planes use these to save fuel. Low-bypass engines use more jet thrust. These are often used in modern fighter jets.

People have worked on these engines for a long time. In March 1936, Frank Whittle wrote a patent in the UK. He described the ideas that would lead to the turbofan.

Rolls Royce Conway Mk508 (1959) used in Boeing 707-420 at Flugausstellung Hermeskeil, pic1.JPG
Rolls Royce Conway Mk508 (1959) used in Boeing 707-420 at Flugausstellung Hermeskeil, pic1.JPG
He envisioned planes flying at speeds of 500 mph. The turbofan was later invented to help turbojets use less fuel. By moving a larger mass of air more slowly, the engine becomes much more efficient. This helps planes travel much further on the same amount of fuel.

You can think of a turbofan as a middle ground in flight technology. It sits between a turbojet and a propeller engine.

Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
A turbojet gets all its power from hot exhaust gases. A propeller engine uses a spinning blade to move air. A turbofan uses both the hot core and the large fan. This makes it perfect for the speeds that most airplanes fly today. It is a clever way to balance power and fuel use.

409 words

A turbofan is a sophisticated type of airbreathing jet engine used for aircraft propulsion. The name combines the concept of a turbojet with an additional fan stage. This engine design is vital because it improves fuel efficiency for many types of flight. It functions by using a gas turbine engine to add kinetic energy to passing air.

tfan-schematic-kk-20090106.png
tfan-schematic-kk-20090106.png
At the same time, a ducted fan is powered by that gas turbine to push air rearward. This dual method allows the engine to generate thrust much more effectively than older designs.

The mechanism of a turbofan relies on splitting airflow into two distinct paths. First, some air enters the engine core to undergo a thermodynamic cycle. In this core, fuel is burned to create high-energy gas. This gas spins turbines, which extract energy to power the engine's internal components.

Turbofan3 Labelled.gif
Turbofan3 Labelled.gif
A portion of this energy is transferred to a large, ducted fan at the front. This fan accelerates a second mass of air that bypasses the engine core entirely.
Turbofan operation.svg
Turbofan operation.svg
The combined force of the core exhaust and the bypass air creates the total thrust.

Engineers categorize these engines using the bypass ratio, or BPR. The BPR is the ratio between the mass flow of the bypass stream and the mass flow entering the core. For example, a bypass ratio of 6 means six times more air bypasses the core than enters it.

Gas turbine efficiency.png
Gas turbine efficiency.png
Turbofans are divided into two main types based on this ratio. High-bypass turbofans produce considerably more fan thrust than jet thrust. These are the standard for most modern commercial aviation. Conversely, low-bypass turbofans produce more jet thrust relative to fan thrust. These are frequently used in modern fighter aircraft.

The history of this technology traces back to the early ideas of Frank Whittle. In March 1936, Whittle filed a UK patent describing principles that would lead to the turbofan.

Rolls Royce Conway Mk508 (1959) used in Boeing 707-420 at Flugausstellung Hermeskeil, pic1.JPG
Rolls Royce Conway Mk508 (1959) used in Boeing 707-420 at Flugausstellung Hermeskeil, pic1.JPG
Although he did not call it a turbofan at the time, he envisioned aircraft speeds of 500 mph. The turbofan was eventually developed to solve the high fuel consumption of the turbojet. It achieved this by increasing the mass of air moved while lowering the speed of the jet. This change makes the engine much more efficient for subsonic flight.

Efficiency is a major reason why the turbofan is so successful. In a turbojet, all thrust comes from accelerating a small amount of air to very high speeds. This can lead to wasted kinetic energy in the exhaust wake. A turbofan improves propulsive efficiency by accelerating a larger mass of air at lower speeds.

Gas turbine efficiency.png
Gas turbine efficiency.png
This process results in much lower specific fuel consumption. In high-bypass systems, the cool, low-velocity bypass air can provide between 30% and 70% of the total thrust. This allows aircraft to fly long distances using much less fuel.

Different engine configurations serve different mission requirements. High-bypass engines are optimized for the subsonic speeds used by commercial airliners. Low-bypass engines are better suited for the high speeds required by combat aircraft. Some low-bypass engines even use afterburners to increase thrust. An afterburner is a component where bypass and core air mix before combustion.

Afterburner of sectioned Rolls-Royce Turboméca Adour turbofan (3).jpg
Afterburner of sectioned Rolls-Royce Turboméca Adour turbofan (3).jpg
This setup provides the extra power needed for high-performance maneuvers during flight.

Ultimately, the turbofan represents a critical middle ground in aerospace engineering. It sits between the turbojet, which uses only hot exhaust, and the turboprop, which uses a propeller.

Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
While turboprops are most efficient at very low speeds, turbofans excel at the speeds most planes fly. By balancing mass flow and exhaust velocity, the turbofan provides the ideal performance for modern global travel. It remains one of the most important technologies in the history of flight.

639 words
🖼️ Images & Media (14)
File:Turbofan3 Labelled.gif
Turbofan3 Labelled.gif
File:tfan-schematic-kk-20090106.png
tfan-schematic-kk-20090106.png
File:Gas turbine efficiency.png
Gas turbine efficiency.png
File:Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
Boeing 747-8 VQ-BSK at LSZH (17754867239).jpg
File:Air India Boeing 787 Dreamliner N1008S PAS 2013 07 GEnx-1B.jpg
Air India Boeing 787 Dreamliner N1008S...
File:Rolls Royce Conway Mk508 (1959) used in Boeing 707-420 at Flugausstellung Hermeskeil, pic1.JPG
Rolls Royce Conway Mk508 (1959) used in...
File:Outer nozzle of GEnx-2B turbofan engine.jpg
Outer nozzle of GEnx-2B turbofan engine.jpg
File:Turbofan operation lbp.svg
Turbofan operation lbp.svg
File:Pratt & Whitney F119.JPEG
Pratt & Whitney F119.JPEG
File:Afterburner of sectioned Rolls-Royce Turboméca Adour turbofan (3).jpg
Afterburner of sectioned Rolls-Royce...
File:Turbofan operation.svg
Turbofan operation.svg
File:CF6-6 engine cutaway.jpg
CF6-6 engine cutaway.jpg

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