Subsystem GASGUN
Hydrogen Gas Gun
The gas resonant cavity — where the fuel gas is ionised and fired, downstream of the cell and distinct from the gas processor that conditions ambient air.
Documents · 15
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
Uses gas resonant cavity, hydrogen gas gun.
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Stan Meyer Machining Template STLs_5-22-2024
Uses gas resonant cavity, hydrogen gas gun.
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
Uses gas resonant cavity.
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Process and apparatus for the production of fuel gas and the enhanced release of thermal energy from such gas
Uses gas resonant cavity, hydrogen gas gun.
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Hydrogen Gas Gun Technology
Uses gas resonant cavity, hydrogen gas gun.
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Electron Extraction Process
Uses gas resonant cavity, hydrogen gas gun.
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Gas Processor
Uses gas resonant cavity.
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
Uses gas resonant cavity, hydrogen gas gun.
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Mega Watt Gas Yield
Uses hydrogen gas gun.
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WFC 417 — WFC 417
Uses gas resonant cavity, hydrogen gas gun.
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3" Gas Resonant Cavity (aka Hydrogen Gas Gun)
Uses gas resonant cavity, hydrogen gas gun.
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
Uses gas resonant cavity.
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CIRCUIT COMPONENT INTERACTION
Uses gas resonant cavity.
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In Summation
Uses hydrogen gas gun.
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Hydrogen Gas Gun - 3D STLs
Uses hydrogen gas gun.
Findings · 15
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Electron Extractor Grid (51) placed above the Gas Resonant Cavity to capture liberated electrons
Uses gas resonant cavity, hydrogen gas gun.
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Hydrogen Gas Gun is scalable from spark-plug size to rocket-engine size
Uses hydrogen gas gun.
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Laser energy is injected into the Gas Resonant Cavity via an optical lens to further destabilize gas atoms
Uses gas resonant cavity.
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Gas Processor assembly consists of gas resonant cavity, electron extraction circuit, and optical lens
Uses gas resonant cavity.
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Argon gas dielectric constant forms the Gas Resonant Cavity capacitor
Uses gas resonant cavity.
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Electron Extraction Process (BB) is also called the Gas Resonant Cavity
Uses gas resonant cavity.
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Electron extraction prevents spark-ignition in the gas resonant cavity
Uses gas resonant cavity.
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Gas resonant cavity uses lasers or photon source to promote gas ionization
Uses gas resonant cavity.
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Electron extractor grid circuit restricts electron replacement in the gas resonant cavity
Uses gas resonant cavity.
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Electron extraction prevents spark-ignition by avoiding electron build-up in the gas resonant cavity
Uses gas resonant cavity.
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Gas Resonant Cavity applies Electrical Polarization Process to NO2
Uses gas resonant cavity.
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Gas atoms pass through Gas Resonant Cavity to second laser energy source at higher voltage
Uses gas resonant cavity.
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Electron Extraction Process (BB) is called the Hydrogen Gas Gun, mounted on Resonant Cavity Assembly
Uses hydrogen gas gun.
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Ignited gas ions from Gas Resonant Cavity release thermal explosive energy beyond Gas-Flame Stage
Uses gas resonant cavity.
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Add-on Resonant Cavities arranged beneath Hydrogen Gas Gun in parallel vertical Cluster-Array increase energy yield
Uses hydrogen gas gun.
Photographs · 11
From the bench · 56
- established · 0.90 Gas atoms pass through Gas Resonant Cavity to second laser energy source at higher voltage
- established · 0.90 Resonant frequency is independent of voltage amplitude
- established · 0.90 Resonant Pulse Waves increase flame-front energy yield beyond normal combustion
- established · 0.90 Resonant cavity plates made of stainless steel T-304
- established · 0.90 Electron field voltage of several thousand volts triggers ion formation
- established · 0.90 Alternating pulse train (ON/OFF) circuit uses a blocking diode and resistance wire
- established · 0.90 Laser injection into Resonant Pulse Waves elevates plasma temperature
- established · 0.90 Combustible gases return to stable state as de-energized water mist after energy release
- established · 0.90 Injector/electrode plates constructed of stainless steel T-304
- established · 0.90 Hydrogen fracturing thermal zone exceeds 2500°F
- established · 0.90 Ionization triggered at potential of approximately several thousand volts
- established · 0.90 Positive and negative voltage pulses simultaneously separate electron from nucleus
- established · 0.90 Laser pulse rate and intensity are varied to match ion absorption rate
- established · 0.90 Flame-Front shape determined by combined voltage pulse and gas pressure states
- established · 0.90 Taper Resonant Cavity suited for I.C. engines and rocket engines
- established · 0.90 Expanding Resonant Cavity suited for furnace applications
- established · 0.90 Linear Resonant Cavity suited for cutting-torch applications
- established · 0.90 Resonant Pulse Voltage ionizes liberated gases via electron ejection
- established · 0.90 Electrostatic Pressure thermally ignites ionized gas mixture at Energy Apertures
- established · 0.90 Absorbed laser energy deflects electrons during voltage-pulse Off-Time