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Stan’s Legacy

(40)

Chamber

Where it is first named

… The exhaust gasses of the combustion chamber (30) are returned in a closed loop arrangement to the mixing chamber (40) as non-volatile gasses to control the velocity and temperature of the volatile hydrogen gas.
Hydrogen Aeration Injection System

How it is written

  • (chamber 40)
  • (40)

Drawings 6

Where it is named · 5

Hydrogen Aeration Injection System

  1. … The exhaust gasses of the combustion chamber (30) are returned in a closed loop arrangement to the mixing chamber (40) as non-volatile gasses to control the velocity and temperature of the volatile hydrogen gas.

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  2. chamber (chamber 40)

    || are fed via pipe line 24 to the gas mixing chamber 40 as the

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  3. chamber (chamber 40)

    The pipe line 24 passes through cooling chamber 50 for | cooling of the gasses therein. The cooling chamber 50 also functions as 2 spark arrestor to eliminate the possibility of gas ignition inside the mixing, chamber 40. The excess non-combustible gasses are exhausted via outlet 49, to be expelled into the azmosphere.

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  4. chamber (chamber 40)

    The outlet 5 on the generator 10 receives the volatile anc non-volatile (oxygen and nitrogen) gasses generated thereby and feeds the same to the mixing chamber 40. The flow of the hydro-

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  5. chamber (chamber 40)

    hydrogen gas output.to gas mixing chamber 40 is, for example, 30 ibs. to 15 lbs. Once hydrogen generator 10 reaches an optissum gas pressure level, pressure switch 29 shuts off electrical power to the hydrogen exciters. If the chamber pressure exceeds a predetermined level, thé safety release valve 28 is activated disconnecting the electrical current and thereby shutting down the entire system for safety inspection.

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