Gas-Ignition
As the sources put it
The expanding and moving Gas-Flame travels (away from spark-igniter) the linear length of the gas filled tube (C) and is "detected" and "measured" (length between spark-igniter and light-detector) in one second after gas-ignition.
Where it appears · 26
Documents 12
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Spark-Ignition Tube
5× · introduced
…Figure (2-1). Spark-Igniter (A) causes and starts the Burnable Gas-Mixture (B) to undergo Gas-Ignition which, in turns, supports and allows Gas Combustion to take place ... forming and sustaining a Gas-Flame. The…
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Quenching Circuit
1× · introduced
…es and prevents the hydrogen atoms to unite with oxygen atoms to "bring-on" or "initiate" Gas-Ignition. The narrow passageway (at least 1/8 inch long and having a .015 diameter) prevents the moving gas atoms from…
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Catalytic Block Assembly
1× · introduced
…bustion by recycling any "escaped" or "unused" burnable gases back into the gas-flame for Gas-Ignition ... preventing Gas-Oxide formation, as illustrated in Figure (2-8) as to Figure (2-4). Figure (2-8) Figure (2…
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ENERGY of the FUTURE - R&Z - Vol 2 No. 1, 1990
7×
…ter Fuel Cell Spark-Ignitor (a) causes and starts the Burnable Gas Mixture (b) to undergo Gas-Ignition which, in turns, supports and allows Gas Combustion to take place...forming and sustaining a Gas- Flame. The…
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ENERGY of the FUTURE - R&Z - Vol 1 No. 6, 1990
4×
…ons while highly energizing the liberated combustible gas ions prior to an during thermal gas-ignition. Laser or light is linear with respect to the forward current through the LEDs, and, is determined by Where I…
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Rocket Propulsion
2×
…y increases the atomic Energy-Yield of the Hydrogen Fracturing Process undergoing thermal gas-ignition, as illustrated in Figure (1-22) as to Figure (1-18). Figure (1-22) Figure (1-18) This Cluster-Assembly or Cl…
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Electron Bounce Phenomenon
2×
…ermal explosive energy (gtnt) ... therefore, producing a physical force-yield (Fy) during gas-ignition (70) of Figure (4-5) which is directly related to the liquid volume of water (85) per injection cycle and app…
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Water Fuel Injection System
1×
…ontrols the combustion rate of the Hydrogen Fracturing Process (100) of Figure (6) during gas-ignition. In other or alternate applications, laser primed ionized liquid oxygen (68) of Figure (1-10) CF* memo 420) a…
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Water Fuel Injector (Taper Resonant Cavity Chamber)
1×
…the formation of the water molecule (390) of Figure (41) (WFC Memo 422 DA) during thermal gas-ignition (180) of Figure (14). (390) of Figure (41) (180) of Figure (14) Voltage Intensifier Circuit (220) of Figure (…
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Water Fuel Injection System - Page 3
1×
…trols the combustion rate of the Hydrogen Fracturing Process (100) of Figure (4-8) during gas-ignition. In other or alternate applications, laser primed ionized liquid oxygen (68) of Figure (1-21) (see WFC memo 4…
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Laser Interaction
1×
…ns while highly energizing the liberated combustible gas ions prior to and during thermal gas-ignition. Laser or light intensity is linear with respect to the forward current through the LEDs, and, is determined…
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Thermal Explosive Energy
1×
…as ions (exiting from Gas Resonant Cavity) to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy (gmt) beyond the Gas-Flame Stage, as illustrated in Figure (1-19) as to (…
Bench findings 14
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Spark-Igniter starts gas ignition which sustains combustion and a gas flame
1×
Spark-Igniter (A) causes and starts the Burnable Gas-Mixture (B) to undergo Gas-Ignition, which supports and allows Gas Combustion to take place, forming and sustaining a Gas-Flame.…
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Burn-Rate is measured as flame travel distance per one second after ignition
1×
…d and measured as the length between spark-igniter and light-detector in one second after gas-ignition; this establishes the Burn-Rate in centimeters per second (cm/sec.), as illustrated in Figure (2-2).…
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Multiple burnable gas-mixtures were tested and ranked by cm/sec burn length on a bar graph
1×
Different types of Burnable Gas-Mixtures exposed to the Gas-Ignition Process were tested, measured, recorded, and systematically arranged by cm/sec. length, shown in the vertical bar Graph (2-2).…
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Burn-Rate values represent an average from repeated ignition trials
1×
The Gas-Ignition Process was performed several times per gas-mixture to establish the 'average' Burn-Rate of the Fuel-Gases, which in turn determines the length of the vertical bars in Graph (2-2).…
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Non-combustible gas (D) separates hydrogen and oxygen atoms to prevent ignition
1×
…eparate and prevent the hydrogen atoms from uniting with oxygen atoms, thereby preventing gas-ignition from being initiated.…
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Absorbed laser energy ionizes gas and energizes combustible gas ions before/during ignition
1×
…ns while highly energizing the liberated combustible gas ions prior to and during thermal gas-ignition.…
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Ignited gas ions from Gas Resonant Cavity release thermal explosive energy beyond Gas-Flame Stage
1×
…e gas ions exiting the Gas Resonant Cavity to a thermal-spark or heat-zone causes thermal gas-ignition, releasing thermal explosive energy (gmt) beyond the Gas-Flame Stage, as illustrated in Figures 1-19 and 1-18…
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Add-on Resonant Cavities arranged beneath Hydrogen Gas Gun in parallel vertical Cluster-Array increase energy yield
1×
…Array, increase the atomic Energy-Yield of the Hydrogen Fracturing Process during thermal gas-ignition (Figures 1-22 and 1-18).…
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Rocket thrust controlled by flow rate of ionized combustible gases into combustion chamber
1×
Once gas-ignition occurs, rocket thrust is controlled by the flow rate of the combustible ionized gases entering the combustion chamber of the rocket engine.…
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Injected non-combustible gases retard and control combustion rate
1×
…n) retard and control the combustion rate of the Hydrogen Fracturing Process (100) during gas-ignition.…
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Non-combustible gas retards and controls combustion rate of Hydrogen Fracturing Process
1×
…xxx 45) retard and control the combustion rate of the Hydrogen Fracturing Process during gas-ignition.…
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Increasing voltage amplitude ejects more electrons and prevents water molecule re-formation
1×
…ater number of electrons and preventing re-formation of the water molecule during thermal gas-ignition.…
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Ionized gas build-up per cavity stage increases gas yield before ignition
1×
Ionized gas build-up per cavity-stage causes greater gas-yield to occur prior to gas-ignition or utilization.…
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Force-yield during gas-ignition is directly related to water volume per injection cycle and resonant voltage intensity
1×
The physical force-yield (Fy) produced during gas-ignition is directly related to the liquid volume of water (85) per injection cycle and the applied Resonant Voltage Intensity (Vo-Vn), as illustrated relating Fi…