ramjet$66675$ - definizione. Che cos'è ramjet$66675$
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Cosa (chi) è ramjet$66675$ - definizione

JET ENGINE THAT USES THE ENGINE'S FORWARD MOTION TO COMPRESS INCOMING AIR
Ram-Jet; Ramjets; Flying stovepipe; Air Turbo Ramjet; RAMJET; Ram jet; Air turbo ramjet; Ramjet engine; Rocket-ramjet; Solid-fueled ramjet; Rocket/ramjet; F-23 Ramjet Research Vehicle; Merkulov ramjet; Athodyd; Ram jet engine; Aero thermodynamic duct
  • An AQM-60 Kingfisher, the first production ramjet to enter service with the US military
  • [[Bristol Thor]] ramjet modified for display purposes. Two Thor engines were used on the [[Bristol Bloodhound]] missile
  • Brayton cycle
  • A typical ramjet
  • Simple ramjet operation, with Mach numbers of flow shown

ramjet         
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AUTOMOTIVE FUEL INJECTION SYSTEM USED 1957-1965
RamJet
¦ noun a type of jet engine in which the air drawn in for combustion is compressed solely by the forward motion of the aircraft.
Ramjet         
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AUTOMOTIVE FUEL INJECTION SYSTEM USED 1957-1965
RamJet
A ramjet, or athodyd (aero thermodynamic duct), is a form of airbreathing jet engine that uses the forward motion of the engine to produce thrust. Since it produces no thrust when stationary (no ram air) ramjet-powered vehicles require an assisted take-off like a rocket assist to accelerate it to a speed where it begins to produce thrust.
Rochester Ramjet         
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AUTOMOTIVE FUEL INJECTION SYSTEM USED 1957-1965
RamJet
The Rochester Ramjet is an automotive fuel injection system developed by the Rochester Products Division of General Motors and first offered as a high-performance option on the Corvette and GM passenger cars in 1957. It was discontinued partway through 1965 in favor of the Chevrolet Big Block as a performance option.

Wikipedia

Ramjet

A ramjet, or athodyd (aero thermodynamic duct), is a form of airbreathing jet engine that uses the forward motion of the engine to produce thrust. Since it produces no thrust when stationary (no ram air) ramjet-powered vehicles require an assisted take-off like a rocket assist to accelerate it to a speed where it begins to produce thrust. Ramjets work most efficiently at supersonic speeds around Mach 3 (2,300 mph; 3,700 km/h) and can operate up to speeds of Mach 6 (4,600 mph; 7,400 km/h).

Ramjets can be particularly useful in applications requiring a small and simple mechanism for high-speed use, such as missiles. The US, Canada, and UK had widespread ramjet powered missile defenses during the 1960s onward, such as the CIM-10 Bomarc and Bloodhound. Weapon designers are looking to use ramjet technology in artillery shells to give added range; a 120 mm mortar shell, if assisted by a ramjet, is thought to be able to attain a range of 35 km (22 mi). They have also been used successfully, though not efficiently, as tip jets on the ends of helicopter rotors.

Ramjets differ from pulsejets, which use an intermittent combustion; ramjets employ a continuous combustion process.

As speed increases, the efficiency of a ramjet starts to drop as the air temperature in the inlet increases due to compression. As the inlet temperature gets closer to the exhaust temperature, less energy can be extracted in the form of thrust. To produce a usable amount of thrust at yet higher speeds, the ramjet must be modified so that the incoming air is not compressed (and therefore heated) nearly as much. This means that the air flowing through the combustion chamber is still moving very fast (relative to the engine), in fact it will be supersonic—hence the name supersonic-combustion ramjet, or scramjet.