(50)
Chamber
Also written spark arrestor
Where it is first named
The pipe line 24 passes through cooling chamber 50 for cccling of the gasses therein. The cooling chamber 50 also finctions as a spark arrestor to eliminate the possibility of gas ignition inside the mixing chamber 40. The excess nonccmbustible gasses are exhausted via outlet 49, to be expelled into the atmosphere. |
How it is written
- (chamber 50) 3×
- (spark arrestor 50) 1×
Drawings 3
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~2cp is completed. · Hydrogen Aeration Injection System
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lieu of the chamber 30 of Figures 1 and 2. · Hydrogen Aeration Injection System
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Page 26 · Hydrogen Aeration Injection System
Where it is named · 4
Hydrogen Aeration Injection System 4×
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chamber (chamber 50)
The pipe line 24 passes through cooling chamber 50 for cccling of the gasses therein. The cooling chamber 50 also finctions as a spark arrestor to eliminate the possibility of gas ignition inside the mixing chamber 40. The excess nonccmbustible gasses are exhausted via outlet 49, to be expelled into the atmosphere. |
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chamber (chamber 50)
The pipe line 24 passes through cooling chamber 50 for cccling of the gasses therein. The cooling chamber 50 also finctions as a spark arrestor to eliminate the possibility of gas ignition inside the mixing chamber 40. The excess nonccmbustible gasses are exhausted via outlet 49, to be expelled into the atmosphere. |
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spark arrestor (spark arrestor 50)
The exhaust gasses entering input 22 are fed via inlet pipe 31 through the cooling chamber also enter the mixing chamber and spark arrestor 50 and into ovtlet pipe 24. These gasses from chamber 50 too, are flow controlled by the flow valve 51 in pipe line 24.
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chamber (chamber 50)
The exhaust gasses entering input 22 are fed via inlet pipe 31 through the cooling chamber also enter the mixing chamber and spark arrestor 50 and into ovtlet pipe 24. These gasses from chamber 50 too, are flow controlled by the flow valve 51 in pipe line 24.