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There are so many vital components that comprise a Warp Drive System that it is hard to know where to start. So let's start with the basics:
There are so many vital components that comprise a Warp Drive System that it is hard to know where to start. So let's start with the basics:


There are two distinct fuel storage systems on board any starship; the matter storage is generally a single large fuel tank holding a large amount of slush Deuterium- in the case of the [[Galaxy Class]] there is 62,500 m3 of actual Deuterium within 63,200 m3 of tankage space - the rest being accounted for by internal compartmentalisation of the fuel tank. The ship thus carries 12,500 metric tons of fuel, sufficient for a mission period of three years assuming normal use of warp and impulse drive, orbiting of planets, etc.  
There are two distinct fuel storage systems on board any starship; the matter storage is generally a single large fuel tank holding a large amount of slush [[Deuterium]]- in the case of the [[Galaxy Class]] there is 62,500 m3 of actual Deuterium within 63,200 m3 of tankage space - the rest being accounted for by internal compartmentalisation of the fuel tank. The ship thus carries 12,500 metric tons of fuel, sufficient for a mission period of three years assuming normal use of warp and impulse drive, orbiting of planets, etc.  


The antimatter is contained within much smaller pods; the standard starship antimatter pod is capable of holding 100 m3 of fuel for a total of 3,000 m3 in a Galaxy class Starship. Starfleet is somewhat reticent about revealing exactly how much antimatter is kept on board its starships, as this would allow threat forces to make detailed estimates of the total output of a ships power systems. It is known that the antimatter used in the Galaxy class is antihydrogen, and that it is kept stored within magnetic fields. In the event of a systems failure which threatens antimatter containment, the pods can be thrown clear of the ship by emergency systems of considerable reliability.  
The antimatter is contained within much smaller pods; the standard starship antimatter pod is capable of holding 100 m3 of fuel for a total of 3,000 m3 in a Galaxy class Starship. Starfleet is somewhat reticent about revealing exactly how much antimatter is kept on board its starships, as this would allow threat forces to make detailed estimates of the total output of a ships power systems. It is known that the antimatter used in the Galaxy class is antihydrogen, and that it is kept stored within magnetic fields. In the event of a systems failure which threatens antimatter containment, the pods can be thrown clear of the ship by emergency systems of considerable reliability.  


Fuel from the pods is sent to the reactant injectors; these are designed to condition and feed streams of matter and antimatter into the warp core. The matter reactant injector is located at the top of the warp core; it is a conical structure some 5.2 metres in diameter and 6.3 metres high. The injector is constructed of dispersion strengthened woznium carbmolybdenide. Shock attenuation cylinders connect it to the deuterium fuel tank and the skeletal structure of the ship, allowing it to 'float' free within the structure.  
Fuel from the pods is sent to the [[reactant injectors]]; these are designed to condition and feed streams of matter and antimatter into the warp core. The matter reactant injector is located at the top of the warp core; it is a conical structure some 5.2 metres in diameter and 6.3 metres high. The injector is constructed of dispersion strengthened woznium carbmolybdenide. Shock attenuation cylinders connect it to the deuterium fuel tank and the skeletal structure of the ship, allowing it to 'float' free within the structure.  


Within Starfleet vessels, the MRI contains redundant sets of crossfed injectors. Each injector would consists of a twin deuterium manifold, fuel conditioner, fusion pre-burner, magnetic quench block, transfer duct/gas combiner, nozzle head, and related control hardware. other designs are in use by civilian craft and other species. Although operation varies from class to class, in general slush deuterium enters the inlet manifolds and is passed to the conditioners where heat is removed. This brings the deuterium to just above solid transition point; micropellets are formed and then pre-burned by a magnetic pinch fusion system. The fuel is them sent on to a gas combiner where it reaches a temperature in the region of 106 K. Nozzle heads then focus the gas streams and send them down into the constriction segments.  
Within Starfleet vessels, the MRI contains redundant sets of crossfed injectors. Each injector would consists of a twin deuterium manifold, fuel conditioner, fusion pre-burner, magnetic quench block, transfer duct/gas combiner, nozzle head, and related control hardware. other designs are in use by civilian craft and other species. Although operation varies from class to class, in general slush deuterium enters the inlet manifolds and is passed to the conditioners where heat is removed. This brings the deuterium to just above solid transition point; micropellets are formed and then pre-burned by a magnetic pinch fusion system. The fuel is them sent on to a gas combiner where it reaches a temperature in the region of 106 K. Nozzle heads then focus the gas streams and send them down into the constriction segments.  
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After Wesley Crusher experimented with a static warp bubble in main engineering in early 2367 and a flash of light was registered, Geordi La Forge ran a level-2 diagnostic of the antimatter containment and warp drive to make sure that none of the systems were affected by the experiment. (TNG: "Remember Me")
After Wesley Crusher experimented with a static warp bubble in main engineering in early 2367 and a flash of light was registered, Geordi La Forge ran a level-2 diagnostic of the antimatter containment and warp drive to make sure that none of the systems were affected by the experiment. (TNG: "Remember Me")


==Antimatter Inducer==
==Antimatter inducer==
Antimatter inducers are warp drive components associated with a starships consumption of fuel. The principal behind the component is that the more efficient the inducer is, the less fuel is consumed during warp flight. (ENT: "Twilight")
Antimatter inducers are warp drive components associated with a starships consumption of fuel. The principal behind the component is that the more efficient the inducer is, the less fuel is consumed during warp flight. (ENT: "Twilight")


In an alternate timeline, Jonathan Archer came up with a way to upgrade the antimatter inducers. Upgrades based on his specs were described as "working nicely." (ENT: "Twilight")
In an alternate timeline, Jonathan Archer came up with a way to upgrade the antimatter inducers. Upgrades based on his specs were described as "working nicely." (ENT: "Twilight")


Montgomery Scott initially had difficulty locating the "damned" antimatter inducer on the Klingon Bird-of-Prey they managed to hijack from Commander Kruge. With Pavel Chekov's assistance, Scott pressed the necessary button to activate the inducer which quickly brought the ship up to full power. (Star Trek III: The Search for Spock)
Montgomery Scott initially had difficulty locating the "damned" antimatter inducer on the Klingon Bird-of-Prey they managed to hijack from Commander Kruge. With Pavel Chekov's assistance, Scott pressed the necessary button to activate the inducer which quickly brought the ship up to full power. (Star Trek III: The Search for Spock)  
 
==Antimatter relay==
==Antimatter Relay==
The antimatter relay is a component of the Enterprise's warp drive lined with a platinum-cobalt alloy. Commander Charles Tucker and five of his men had to strip over two hundred relays to obtain a half-liter of platinum to pay a trellium mine overseer with for the privilege of visiting Kessick. (ENT: "The Xindi")  
The antimatter relay is a component of the Enterprise's warp drive lined with a platinum-cobalt alloy. Commander Charles Tucker and five of his men had to strip over two hundred relays to obtain a half-liter of platinum to pay a trellium mine overseer with for the privilege of visiting Kessick. (ENT: "The Xindi")
 
==Deuterium Cartridge==
==Deuterium Cartridge==
The deuterium cartridges are components of a starship's warp drive system, presumably relating to the deuterium fuel source.
The deuterium cartridges are components of a starship's warp drive system, presumably relating to the deuterium fuel source.
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<center>
<center>
<gallery>
<gallery>
Image:NX Main Engineering.jpg|The warp core of an [[NX Class]] starship
Image:NX Main Engineering.jpg|The warp core of an [[NX class]] starship
Image:Constitution original engineering2.jpg|The warp core of a [[Constitution Class]] starship (2266)
Image:Constitution original engineering2.jpg|The warp core of a [[Constitution Class]] starship (2266)
Image:800px-Constitution class refit engineering.jpg|The warp core of a [[Constitution Class]] refit starship (2270s)
Image:800px-Constitution class refit engineering.jpg|The warp core of a [[Constitution Class]] refit starship (2270s)
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Image:796px-USS Equinox warp core.jpg|The enhanced warp core of a [[Nova Class]] starship
Image:796px-USS Equinox warp core.jpg|The enhanced warp core of a [[Nova Class]] starship
Image:VoyagerWarpCore.jpg|The warp core of an [[Intrepid Class]] starship
Image:VoyagerWarpCore.jpg|The warp core of an [[Intrepid Class]] starship
Image:Sovereign Warp Core.jpg|The warp core of a [[Sovereign Class]] starship
Image:Sovereign Warp Core.jpg|The warp core of a [[Sovereign Class starship
Image:Delta Flyer warp core.jpg|The warp core of the ''Delta Flyer II'' shuttle
Image:Delta Flyer warp core.jpg|The warp core of the ''Delta Flyer II'' shuttle
Image:786px-Dderidex-engine core.jpg|The warp core of a D'deridex Class warbird
Image:786px-Dderidex-engine core.jpg|The warp core of a D'deridex Class warbird
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