detonation$20740$ - translation to ελληνικό
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detonation$20740$ - translation to ελληνικό

TYPE OF ROCKET ENGINE
Pulsed detonation engine; Pulse Detonation Engine; Pulse detonation; Pulse detonation wave engine; Pulsed detonation wave engine
  • In-flight picture of the pulsed detonation powered, and heavily modified, [[Rutan Long-EZ]] on January 31, 2008.

detonation      
n. εκπυρσοκρότηση, πυροκρότηση, έκρηξη
hand grenade         
  • Incendiary grenade
  • An [[infantry]]man throwing an [[Mk 2 grenade]] during training, 1942
  • page=300}}</ref>
  • Grenade on a [[kepi]] of the [[French Army]]
  • One of the earliest modern hand grenades. Fielded in the British Army from 1908, it was unsuccessful in the trenches of [[World War I]], and was replaced by the [[Mills bomb]].
  • Seven ceramic hand grenades of the 17th Century found in [[Ingolstadt]] Germany
  • Inert training grenade made from hard rubber
  • A cross-section of a [[Ketchum Grenade]], used during the [[American Civil War]]
  • National Historical Museum]], [[Athens]], Greece)
  • [[M84 stun grenade]] (1995–present)
  • [[M61 grenade]] (1959-1968) with a safety clip around the lever and the bent tip of the safety pin at top
  • 218x218px
  • An illustration of a fragmentation bomb known as the 'divine bone dissolving fire oil bomb' (''lan gu huo you shen pao'') from the ''[[Huolongjing]]''. The black dots represent iron pellets.
  • Mk3A2]] concussion grenade
  • Mongolian grenade attack on Japanese during [[Yuan dynasty]]
  • trench]]es from 1915.
  • Hand grenade fuze system
  • cotter pin]] with a ring attached
  • Cross section of the Model 24 ''[[Stielhandgranate]]''
  • Demonstration of a German ''[[stielhandgranate]]'' (shaft hand grenade), a high explosive grenade with time fuze, [[Netherlands]], 1946
  • Grenade immediately after being thrown at a practice range. The safety lever has separated in mid-air from the body of the grenade.
  • Hand grenade converted to booby trap with pull trip wire trigger
  • HEAT]] grenade
SMALL BOMB THAT CAN BE THROWN BY HAND
Hand grenades; Fragmentation grenade; Frag grenade; Gas grenade; Grenades; Concussion grenade; Frag Grenade; Light bomb; Concussion Grenade; Handgrenade; Hand-grenade; Grenade, France; HE Grenade; Incendiary grenade; Sting grenade; Stinger grenade; Fragmentation Grenades; Concussion Grenades; Stiel Grenade; Stick grenades; Fragmentation Grenade; Stick grenade; Hand gernade; Hand grenads; F-1 Antipersonnel Grenade; Hand Grenade; Grenado; Flaming grenade; Fragmentation grenades; Flying squirrel grenade; Impact detonation grenade; Bomba a Mano; Stingball grenade; Offensive grenade; Defensive grenade; Hand-grenade throwing; Hand grenade; Stick hand grenade; Firing lever
χειροβομβίδα

Ορισμός

Detonation
·noun An explosion or sudden report made by the instantaneous decomposition or combustion of unstable substances' as, the detonation of gun cotton.

Βικιπαίδεια

Pulse detonation engine

A pulse detonation engine (PDE) is a type of propulsion system that uses detonation waves to combust the fuel and oxidizer mixture. The engine is pulsed because the mixture must be renewed in the combustion chamber between each detonation wave and the next. Theoretically, a PDE can operate from subsonic up to a hypersonic flight speed of roughly Mach 5. An ideal PDE design can have a thermodynamic efficiency higher than other designs like turbojets and turbofans because a detonation wave rapidly compresses the mixture and adds heat at constant volume. Consequently, moving parts like compressor spools are not necessarily required in the engine, which could significantly reduce overall weight and cost. PDEs have been considered for propulsion since 1940. Key issues for further development include fast and efficient mixing of the fuel and oxidizer, the prevention of autoignition, and integration with an inlet and nozzle.

To date, no practical PDE has been put into production, but several testbed engines have been built and one was successfully integrated into a low-speed demonstration aircraft that flew in sustained PDE powered flight in 2008. In June 2008, the Defense Advanced Research Projects Agency (DARPA) unveiled Blackswift, which was intended to use this technology to reach speeds of up to Mach 6. However the project was reported cancelled soon afterward, in October 2008.