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Encyclopedia > Bypass ratio
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In aeronautical engineering, and jet engine design in particular, bypass ratio is a common measurement that compares the amount of air deliberately "blown past" the engine to that moving through the core. For instance, an engine that blows two kilograms of air around the engine for every kilogram that passes through it is said to have a bypass ratio of 2 (or 2 to 1). Higher bypass ratios generally infer better specific fuel consumption as an increasing amount of thrust is being generated without burning more fuel. Aerospace engineering is the branch of engineering concerning aircraft, spacecraft and related topics. ... A Pratt and Whitney turbofan engine for the F-15 Eagle is tested at Robins Air Force Base, Georgia, USA. The tunnel behind the engine muffles noise and allows exhaust to escape. ... Specific fuel consumption, often shortened to SFC, is an engineering term that is used to describe the fuel efficiency of an engine design. ...



Jet engines are generally able to create considerably more energy than they can use in moving air through the engine core. This is because the limiting factor is the temperature at the turbine face, and that is a function of the total amount of fuel burned. Increasing airflow, and thus thrust, would imply burning more fuel and generating higher temperatures. It is possible to increase the airflow by burning "too much" fuel or adding water in front of the turbine to cool it, but both methods lead to incomplete combustion and very poor fuel efficiency. This was nevertheless common for some time to produce added thrust on takeoff, which is why older aircraft appear so smoky in films. Jump to: navigation, search WWII era steam turbine used for ship propulsion. ...


Rolls-Royce came up with a better use of the extra energy in their Conway turbofan engine, developed in the early 1950s. In the Conway an otherwise "normal" axial-flow turbojet was equipped with an oversized first compressor stage (the one closest to the front of the engine) and centered inside a tubular nacelle. While the inner portions of the compressor worked "as normal" and provided air into the core of the engine, the outer portion blew air around the engine to provide extra thrust. In effect the Conway was a much larger engine which only burned some of the air flowing through it, but did so in an efficient way. The Conway had a very small bypass ratio of only 0.3, but the fuel economy was nevertheless improved enough that it, and its derivatives like the Spey became some of the most popular jet engines in the world. The Rolls-Royce Conway was the first by-pass engine to go into service in the world. ... CFM56-3 turbofan, lower half, side view. ... The Spey is a low-bypass turbofan engine from Rolls-Royce that has been in widespread service for over 30 years. ...


Through the 1960s the bypass ratios grew, making jetliners competitive in fuel terms with piston-powered planes for the first time. Most of the very-large engines in this class were pioneered in the United States by Pratt & Whitney and General Electric, which for the first time was outcompeting England in engine design. Rolls-Royce also started the development of the "high-bypass turbofan", and although it caused considerable trouble at the time, the RB.211 would go on to become one of their most successful products. A jetliner is an airliner powered by jet engines (usually of the turbofan type). ... Jump to: navigation, search Pratt & Whitney is an American owned aircraft engine manufacturer whose products are widely used in both civil and military aircraft. ... The General Electric Company, or GE, NYSE: GE is a multinational technology and services company. ... Rolls-Royce RB211 engine The Rolls Royce RB.211 family is a family of high-bypass turbofan aircraft engines made by Rolls-Royce capable of generating 37,400 to 60,600 pound (166 to 270 kN) thrust. ...


Turbofans are typically broken into one of two categories--low-bypass ratio and high-bypass ratio. The bypass ratio refers to the ratio of incoming air that passes through the fan ducts compared to the incoming air passing through the jet core. In a low-bypass turbofan, only a small amount of air passes through the fan ducts and the fan is of very small diameter. The fan in a high-bypass turbofan is much larger to force a large volume of air through the ducts. The low-bypass turbofan is more compact, but the high-bypass turbofan can produce much greater thrust, is more fuel efficient, and is much quieter.


Today almost all jet engines include some amount of bypass. For "low speed" operations like airliners modern engines use bypass ratios up to 17, while for "high speed" operations like fighter aircraft the ratios are much lower, around 1,5. A fighter aircraft is a military aircraft designed primarily for attacking other aircraft, as opposed to a bomber, which is designed to attack ground targets, primarily by dropping bombs. ...


  Results from FactBites:
 
Bypass ratio - Wikipedia, the free encyclopedia (604 words)
Higher bypass ratios generally infer better specific fuel consumption as an increasing amount of thrust is being generated without burning more fuel.
The Conway had a very small bypass ratio of only 0.3, but the fuel economy was nevertheless improved enough that it, and its derivatives like the Spey became some of the most popular jet engines in the world.
Through the 1960s the bypass ratios grew, making jetliners competitive in fuel terms with piston-powered planes for the first time.
  More results at FactBites »


 

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