(19)
Chamber
Also written upper gas chamber · gas chamber
Where it is first named
In the preferred embodiment utilizing tap water, the nitrogen gasses 16 a xxx n are intermixed with the hydrogen gases 14 a xxx n and the oxygen gases 18 a xxx n in the chamber 19 of the hydrogen generator 10.
How it is written
- (chamber 19) 5×
- (gas chamber 19) 1×
- (upper gas chamber 19) 1×
Drawings 4
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Page 2 · Controlled Hydrogen Gas Flame
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Page 7 · Controlled Hydrogen Gas Flame
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nozzles having ports 22 4 Xxx n · Controlled Hydrogen Gas Flame
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10 invention to include alternatives and modifications thereto. · Controlled Hydrogen Gas Flame
Where it is named · 7
Controlled Hydrogen Gas Flame 7×
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chamber (chamber 19)
In the preferred embodiment utilizing tap water, the nitrogen gasses 16 a xxx n are intermixed with the hydrogen gases 14 a xxx n and the oxygen gases 18 a xxx n in the chamber 19 of the hydrogen generator 10.
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upper gas chamber (upper gas chamber 19)
controlling the burning velocity and temperature of the hydrogen gases 14 a xxx n, is by adding non-combustible gases directly to the hydrogen and oxygen gases generated. This is accomplished by inlet 30 to the upper gas chamber 19 of the hydrogen generator. Valve means 35 is adjustable to control the amount of noncombustible gases 37, added to the gas chamber 19.
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gas chamber (gas chamber 19)
controlling the burning velocity and temperature of the hydrogen gases 14 a xxx n, is by adding non-combustible gases directly to the hydrogen and oxygen gases generated. This is accomplished by inlet 30 to the upper gas chamber 19 of the hydrogen generator. Valve means 35 is adjustable to control the amount of noncombustible gases 37, added to the gas chamber 19.
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chamber (chamber 19)
The nozzle 20 connected to the chamber 19 of the generator 10 via line 17, is of a given configuration to permit a predetermined quantity of gases to be expelled from the port 22. The port sizw is dependent on the gases generated, and collected in the chamber 19, the pressure of the chamber 19 of the
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chamber (chamber 19)
The nozzle 20 connected to the chamber 19 of the generator 10 via line 17, is of a given configuration to permit a predetermined quantity of gases to be expelled from the port 22. The port sizw is dependent on the gases generated, and collected in the chamber 19, the pressure of the chamber 19 of the
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chamber (chamber 19)
fo effectively reduce or counteract the velocity due to the increased pressure of the hydrogen gas mixture in the chamber 19 a large port 22 would appear to be capable of handling the increased pressure, but as aforesaid, a larger port with a high velocity hydrogen gas mixture will cause a flame blowout. To sustain a larger flame with increased pressure, additional
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chamber (chamber 19)
It can be understood that a port that will not 5 sustain a flame does present a safety factor relative to hydrogen spark back to the chamber 19. Hence, controlling the size of the