About: Phraxchambers   Sponge Permalink

An Entity of Type : owl:Thing, within Data Space : 134.155.108.49:8890 associated with source dataset(s)

On the outside of the phraxchamber were cooling gears and cooling plates, to prevent the mechanism from overheating. Hollow, metal buoyancy rods were fixed in a position between the cooling plates and the explosion chamber, to lighten the weight of the phraxchamber. A phraxlamp shined through perforations in the explosion chamber, causing the phraxcrystal inside to become volatile. A piston pumped up and down, perpetually disturbing the phraxcrystal and creating a continuous series of explosions. The steam was released through the funnel, usually on top of the phraxchamber but sometimes on the sides, while the energy of the explosion was redirected through the lightning coil and out the propulsion duct, creating thrust that kept the phraxship airborne and controllable.

AttributesValues
rdfs:label
  • Phraxchambers
rdfs:comment
  • On the outside of the phraxchamber were cooling gears and cooling plates, to prevent the mechanism from overheating. Hollow, metal buoyancy rods were fixed in a position between the cooling plates and the explosion chamber, to lighten the weight of the phraxchamber. A phraxlamp shined through perforations in the explosion chamber, causing the phraxcrystal inside to become volatile. A piston pumped up and down, perpetually disturbing the phraxcrystal and creating a continuous series of explosions. The steam was released through the funnel, usually on top of the phraxchamber but sometimes on the sides, while the energy of the explosion was redirected through the lightning coil and out the propulsion duct, creating thrust that kept the phraxship airborne and controllable.
dcterms:subject
abstract
  • On the outside of the phraxchamber were cooling gears and cooling plates, to prevent the mechanism from overheating. Hollow, metal buoyancy rods were fixed in a position between the cooling plates and the explosion chamber, to lighten the weight of the phraxchamber. A phraxlamp shined through perforations in the explosion chamber, causing the phraxcrystal inside to become volatile. A piston pumped up and down, perpetually disturbing the phraxcrystal and creating a continuous series of explosions. The steam was released through the funnel, usually on top of the phraxchamber but sometimes on the sides, while the energy of the explosion was redirected through the lightning coil and out the propulsion duct, creating thrust that kept the phraxship airborne and controllable.
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