(47)
Trap Area
Also written area · gas trap area · Auffangbereiches · Auffangberreich · Auffangbereich · chamber
Where it is first named
The hydrogen gas 4 is fed via line 5 through nozzle 11 in a spray 17 in to the trap area 47 of the mixing chamber 20. …
How it is written
- (47) 11×
- (trap area 47) 4×
- (area 47) 2×
- (chamber 47) 1×
- (gas trap area 47) 1×
Drawings 3
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Referring now to Figs. 7, 8 there is illustrated · Hydrogen Gas Injection System for Internal Combustion Engine
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5. Verbrennungseinrichtung nach einem der Anspriiche 1—4, dadurch gekennzeichnet, dal der Gasgenerator (10) ferner ein Druckentla- · Hydrogen Gas Injection System for Internal Combustion Engine
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Page 7 · Hydrogen Gas Injection System for Internal Combustion Engine
Where it is named · 19
Hydrogen Gas Injection System for Internal Combustion Engine 19×
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trap area (trap area 47)
The hydrogen gas 4 is fed via line 5 through nozzle 11 in a spray 17 in to the trap area 47 of the mixing chamber 20. …
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trap area (trap area 47)
… The non-combustible gases are injected into the mixing chamber 20 trap area 47 in a jet spray 46 via the nozzle 13. Quenching assembly 39 is operable much in the same manner as quenching assembly 37.
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gas trap area (gas trap area 47)
With continued reference to Fig. 2 the gas trap area 47 is a predetermined size. In that hydrogen is lighter than air, the hydrogen will rise and
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area (area 47)
become entrapped in the area 47. The size of area 47 is sufficient to contain enough hydrogen gas for instant ignition upon start up of the combustion engine.
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area (area 47)
become entrapped in the area 47. The size of area 47 is sufficient to contain enough hydrogen gas for instant ignition upon start up of the combustion engine.
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trap area (trap area 47)
It will be noted that the hydrogen gas is injected in the uppermost region of the trap area 47. …
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trap area (trap area 47)
… Therefore, if the hydrogen gas entered the trap area 47 (mixing area) at its lowermost region the hydrogen gas would rise so rapidly that the air could not mix with the oxygen. …
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chamber (chamber 47)
The stops 67 and 69 maintain spring 49 in its stable position. The position of the pin 73 relative to opening 42 is adjusted via threaded nuts 63, 63', 67 on threaded rod 61. That is, the threaded adjustment controls the idle speed or permits the minimum amount of gas to pass from chamber 43 to chamber 47 to continuous operation of the combustion engine. ;
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… nt air intake means (14,) are connected to the input of said mixing chamber (20) for combining air with said hydrogen gas and said exhaust gases, said mixing chamber (20) is provided with a trap area (47) to which hydrogen gas (4) is supplied through said hydrogen gas connecting means (5) and through a control valve (53), exhaust gas is supplied through said exhaust gas connecting means (9), and intak …
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… s is supplied through said exhaust gas connecting means (9), and intake air (oxygen) (14) is supplied from ambient air through an opening, whereby an exhaust gas nozzle (13) opens into that trap area (47) opposite to a hydrogen gas nozzle (11), and air is introduced from below the hydrogen gas nozzle (11) and is directed sidewardly into the hydrogen gas spray through an air inlet (14) which is separat …
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… w the hydrogen gas nozzle (11) and is directed sidewardly into the hydrogen gas spray through an air inlet (14) which is separated by a wall from the outlet of the mixed gases (4, 9) of the trap area (47) directing the air inlet flow in a direction opposite to the outlet flow (15) of the mixed gases.
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Auffangbereich (47)
… htung (14) fir Umgebungsluft mit dem Eingang der Mischkammer (20) verbunden ist, um Luft mit dem Wasserstoffgas und den Auspuffgasen zu kombinieren, da® die Mischkammer (20) mit einem Auffangbereich (47) versehen ist, dem Wasserstoffgas (4) Uber die Wasserstoffgasverbindungsvorrichtung (5) und Uber ein Steuerventil (53) zugefuihrt wird, da& Auspuffgas uber die Auspuffgasverbindungsvorrichtung (9) zug …
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Auffangbereiches (47)
… fgasdiise (11) eingefiihrt und seitlich in den Wasserstoffgasstrom tiber einen Lufteinla& (14) gerichtet wird, der durch eine Wandung von dem Auslaf§ der gemischeten Gase (4, 9) des Auffangbereiches (47) getrennt ist und den Lufteinla&strom in einer Richtung entgegengesetzt zum Abflu&strom (15) der gemischten Gase richtet.
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… chambre de mélange (20) précitée pour combiner l'air avec \hydrogéne gazeux précité et les gaz d'échappement précités, la chambre de mélange précitée (20) est munie d'une zone réceptrice (47) a laquelle I'hydrogéne gazeux est amené par le moyen précité d'amenée de I'hydrogéne gazeux (5) et par une soupape de commande (53), du gaz d'échappement est amené a4 travers le moyen précit …
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… zeux (11) et est dirigé latéralement dans |e jet d'hydrogéne gazeux a travers une admission d'air (14) qui est séparée par une paroi de la sortie du mélange de gaz (4, 9) de la zone réceptrice (47), dirigeant le courant d'entrée d'air dans une direction opposée a celle du courant de sortie (15) du mélange de gaz.