Hydrogen-oxygen combustion burner
Abstract
A hydrogen-oxygen combustion burner includes a gas line (L) that provides hydrogen-oxygen mixed gas, a sealed body ( 10 ) to block any foreign oxygen from entering, a combusting nozzle ( 20 ) connected to an upper part of the body ( 10 ) and with multiple crater holes ( 23 ) toward the upper body ( 10 ), a distributing center ( 30 ) inside the body ( 10 ) distributing hydrogen-oxygen mixed gas provided by the gas line (L) to the crater holes and a circulation forming center ( 40 ) ( 40′ ) circulating the hydrogen-oxygen mixed gas by the pressure of the mixed gas flowing in from a nozzle distributing hole ( 24 ) inside the distributing center, wherein the sealed body is a flat pipe and the combusting nozzles ( 20 ) are placed on the body making a circle.
Claims
exact text as granted — not AI-modified1 . A hydrogen-oxygen combustion burner comprises:
a gas line (L) that provides hydrogen-oxygen mixed gas; a sealed body ( 10 ) to block any foreign oxygen from entering; a combusting nozzle ( 20 ) connected to an upper part of the body ( 10 ) and with multiple crater holes ( 23 ) toward the upper body ( 10 ); a distributing center ( 30 ) inside the body ( 10 ) distributing hydrogen-oxygen mixed gas provided by the gas line (L) to the crater holes; and a circulation forming center ( 40 ) ( 40 ′) circulating the hydrogen-oxygen mixed gas by the pressure of the mixed gas flowing in from a nozzle distributing hole ( 24 ) inside the distributing center, wherein the sealed body is a flat pipe and the combusting nozzles ( 20 ) are placed on the body making a circle.
2 . A hydrogen-oxygen combustion burner according to claim 1 , wherein the circulation forming center comprises:
a revolving plate ( 41 ) with several holes ( 41 a ) arranged a certain distance from each other; a wing section including wings ( 42 ) formed at an angle to the connecting the holes ( 41 a ) at the bottom of the revolving plate ( 41 ); and a shaft ( 44 ) that is formed at the center of the wing section ( 42 ) piercing through the revolving plate ( 41 ), wherein the shaft is supported by a supporter ( 26 ) formed at a bottom of the nozzle distributing hole ( 24 ) allowing the circulation forming center to revolve.
3 . A hydrogen-oxygen combustion burner according to claim 1 , wherein the circulation forming center ( 40 ′) comprises:
a shaft ( 45 ); and several wing sections ( 46 ) formed at the shaft at a slanting angle, wherein the shaft ( 45 ) is supported by a supporter ( 25 ) at a bottom of the nozzle distributing hole ( 24 ) and the shaft( 44 ) is built to allow the circulation forming center ( 40 ) to rotate.
4 . A hydrogen-oxygen combustion burner comprising:
a gas line (L) that provides hydrogen-oxygen mixed gas; a sealed body ( 110 ) to block any foreign oxygen from entering; a combusting nozzle ( 20 ) connected to an upper part of the body ( 110 ) and having multiple crater holes ( 23 ) toward the upper body ( 110 ); a distributing center ( 130 ) inside the body ( 110 ) distributing hydrogen-oxygen mixed gas provided by the gas line (L) to the crater holes; a circulation forming center ( 40 ) ( 40 ′) circulating the hydrogen-oxygen mixed gas by the pressure of the mixed gas flowing in from a nozzle distributing hole inside the distributing center, wherein the body ( 110 ) is a long pipe and the combusting nozzles ( 20 ) are placed in a line on the body ( 110 ).
5 . A hydrogen-oxygen combustion burner according to claim 4 , wherein the circulation forming center comprises:
a revolving plate ( 41 ) with several holes ( 41 a ) arranged a certain distance from each other; a wing section including wings ( 42 ) formed at an angle to the connecting the holes ( 41 a ) at the bottom of the revolving plate ( 41 ); and a shaft ( 44 ) that is formed at the center of the wing section ( 42 ) piercing through the revolving plate ( 41 ), wherein the shaft is supported by a supporter ( 26 ) formed at a bottom of the nozzle distributing hole ( 24 ) allowing the circulation forming center to revolve.
6 . A hydrogen-oxygen combustion burner according to claim 4 , wherein the circulation forming center ( 40 ′) comprises:
a shaft ( 45 ); and several wing sections ( 46 ) formed at the shaft at a slanting angle, wherein the shaft ( 45 ) is supported by a supporter ( 25 ) at a bottom of the nozzle distributing hole ( 24 ) and the shaft ( 44 ) is built to allow the circulation forming center ( 40 ) to rotate.
7 . A hydrogen-oxygen combustion burner comprising:
a gas line (L) that provides hydrogen-oxygen mixed gas; a sealed body ( 210 ) to block any foreign oxygen from entering, the sealed body including a slope ( 220 ) formed at a top corner of the sealed body ( 210 ); multiple crater holes ( 223 ) formed as a circle on the slope ( 220 ); a distributing center ( 230 ) inside the body ( 210 ) distributing hydrogen-oxygen mixed gas provided by the gas line (L) to the crater holes ( 223 ); and a circulation forming center ( 240 ) circulating the hydrogen-oxygen mixed gas, the circulation forming center ( 240 ) including a revolving plate ( 241 ) in a disk form inside the distributing center ( 230 ), and gyration inductions ( 242 ) formed at an end of the revolving plate ( 241 ), wherein hydrogen-oxygen mixed gas collide against the gyration inductions ( 242 ) making the revolving plate ( 241 ) spin.
8 . A hydrogen-oxygen combustion burner comprising:
a gas line (L) that provides hydrogen-oxygen mixed gas; a sealed body ( 310 ) to block any foreign oxygen from entering, the sealed body having a slope ( 320 ) formed at a top of the body ( 310 ); multiple crater holes ( 323 ) formed along the slope ( 320 ); a distributing center ( 330 ) inside the sealed body ( 310 ) distributing hydrogen-oxygen mixed gas provided by the gas line (L), to the crater holes; and a circulation forming center circulating the hydrogen-oxygen mixed gas, the circulation forming center ( 340 ) including a revolving column ( 341 ) in a disk form inside the distributing center ( 330 ), gyration inductions ( 342 ) formed at an end of the revolving column ( 341 ), wherein hydrogen-oxygen mixed gas runs against the gyration inductions ( 342 ) making the revolving plate ( 341 ) spin.Join the waitlist — get patent alerts
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