Gas stove burner
Abstract
This gas saving stove-head is designed to use in cooking at food shop or general household including for the other purposes. It could be applicable to all kinds of stove based on gaseous fuel by using engineering principle to accelerate speed of gas airflow mostly injected from the mouth of gas rest cylinder before reach to the cover through gas conduit into supply holes that are part of combustion. This could be made by assignment on the gas airflow that come out of the injector and traveled through leading conduit into gas rest cylinder and then raised upwards to the cover and supply holes to lose least buffet and resistant power of it. Simultaneously, speed of the airflow shall be accelerated by squeezing it to be smaller and after that heat arisen from combustion flame shall be wholly dammed up while outer cool air around the area shall be evacuated through little holes or vents to help efficient combustion. Rate between gas and air mixed is proper to help complete combustion and reduce soot and pollution problems. This could save gas and time taken in cooking much more than general stove in market. We could say that this gas saving stove-head helps save limited natural gas power for the benefit of our nation and people in general.
Claims
exact text as granted — not AI-modified1 . Gas stove-head has air-receive socket ( 3 ) before entering into gas conduit ( 13 ) and is pierced eight round holes ( 14 ) of the same size at front of air-receive socket ( 3 ) angling and spacing from the center of the same distance as shown in FIG. 5 . Four round holes on ridge of air-receive socket ( 15 ) is designed for outer airflowing into mix with gas released from the injector ( 11 ) neatly and frequently ( 12 ) to help better combustion while uses gas at most high scale as shown in FIGS. 5, 6 , and 7 or any chamber as the same size and distance as of the area of the socket or any chamber on its ridges that does duty of outer air evacuating in to mix with gas released the same way as above explained.
2 . Gas stove-head has unequal diameter inside its gas conduit-part to reach gas rest cylinder ( 21 ) has shorter diameter and the surface inside there has characteristic of bending upwards a little to help accelerate speed of gas airflow before reach to gas rest cylinders ( 28 )( 29 ) more rapidly and divert part of the airflow raised upwards to mouth of gas rest cylinder ( 79 ).
3 . The gas stove-head has got inner characteristic of its gas rest cylinder ( 22 ) that is cuplike round arc or the surface that has got beside and lower joint scars curving arc each could help reduce resistant and buffet power of gas airflow ( 34 ) within gas rest cylinder after the gas airflow ( 28 )( 29 ) traveled along gas conduit into the cylinder as shown in FIGS. 12 and 13 .
4 . Gas stove-head that has got characteristic of curving arc ( 29 ) within its gas rest cylinder jutted out of cylindrical shape located at central of it or any other shapes inside the cylinder ( 17 ) that turns pointed end to gas conduit ( 13 ) are on duty of veering direction of gas airflow ( 28 )( 29 ) come out of gas conduit to get upwards to mouth of gas rest cylinder ( 19 ) and reducing buffet power affected to cylindrical shape or others within the cylinder ( 17 ) as shown in FIGS. 8, 13 , and 14 or to any jutted curving part at mouth of cylindrical shape or others within the cylinder ( 17 ) that are on duty of reducing buffet power or veering airflow or squeezing air come out of gas conduit to raise upwards to mouth of the cylinder.
5 . Gas stove-head has curving ridges ( 25 )( 26 ) laid horizontally within gas conduit ( 13 ) or arc ridges or other dented grooves within the conduit are all on duty of managing order of gas airflow ( 24 ) within the conduit ( 13 ), increasing more surface area of it, and adding more gas airflow rate before reach to the rest cylinder as shown in FIG. 13 .
6 . Gas rest cylinder of gas stove-head has got characteristic of ridges standing erect in front ( 32 ) but gradually curving sloppily backwards ( 33 ). These ridges located besides cylindrical shape within the cylinder ( 17 ) and looked like curve line if looks at top side ( 32 ) are for enclosure of gas airflow come out of gas conduit ( 30 ) and raise upwards to mouth of the cylinder ( 31 ) and gas left ( 34 ) shall have more speed due to travel along curving surface ( 33 ) and or narrower as illustrated in FIGS. 9, 13 , and 14 .
7 . Gas stove-head has got characteristics within gas rest cylinder ( 17 ) that is enclosing its inner cylindrical shapes of which have different size. The size near gas conduit ( 79 ) is varied in form of gradually smaller ones ( 35 ) and shallower at both side ahead to the other ends ( 36 ). This difference in size are on duty of accelerating more speed of gas airflow ( 30 )( 32 )( 34 )( 39 )( 40 ) ( 41 ) having come out of gas conduits ( 28 )( 29 ) ahead to opposite side of conduit ( 36 ) as illustrated in FIGS. 8, 9 , 13 , and 14 .
8 . Gas stove-head has got characteristics within gas rest cylinder that is enclosing cylindrical shapes or any other shapes within the cylinder ( 17 ) at the opposite end of gas conduit ( 36 ) and raised upwards ( 42 ) are all on duty of reducing or veering buffet or crash together of gas airflow come out of gas conduits ( 39 )( 40 )( 41 ) and bypassed the said shapes or others within the cylinder ( 17 ) to reduce loss of power or speed of gas airflow ( 43 ) before getting upwards to mouth of gas rest cylinder ( 36 ) as illustrated in FIGS. 11, 12 , and 14 .
9 . Gas stove-head has got characteristics within gas rest cylinder ( 17 ) of which are smaller as from the side near gas conduit ( 79 ) to force gas airflow get more speed during bypassing cylindrical shape ( 17 ) of both sides ahead to nearly the opposite end ( 36 ). A wedge to separate gas airflow is located to face with there. The wedge looks at beside like curving ridge but like curving ridge at top side ( 38 ) turning its pointed end in opposite direction of gas airflow. The wedge plays roles of part of the airflow ( 39 ) to be raised upwards to mouth of gas rest cylinder and forced the airflow separating apart ( 40 )( 41 ) while its speed is higher and lifted afloat ( 43 ) or like any other curving ridges located opposite gas conduit ( 36 ) or back of inner cylindrical shape ( 17 ) that are on duty of accelerating speed of gas airflow or veering buffet or crash of the airflow or separating the airflow into directions desired as illustrated in FIGS. 9, 11 , 12 , and 13 .
10 . Gas stove-head has got unequal inner characteristics of the cover—the side near gas conduit ( 47 ) is ordinary but gradually narrower ahead to the side opposite from gas conduit ( 48 )—that plays roles of forcing gas airflow ( 30 )( 32 )( 34 ) come out of gas rest cylinder to have much more speed before reach to outer ( 44 ) and inner ( 45 ) ring supply holes or any other unbalances to make much more gas airflow speed as illustrated in FIGS. 19, 23 , and 24 .
11 . Gas stove-head with the cover's inner surface located curving arc ridges ( 49 )( 50 ) between outer ( 44 ) and inner ( 45 ) ring supply holes that these ridges shall be smaller size ( 49 ) and then gradually bigger ahead to the opposite side ( 50 ). The smaller size side ( 49 ) is near gas conduit ( 47 ) side to have had gas airflow vent ranging from the big one ( 51 ) to the small ( 52 ) for airflow from gas conduit and gas rest cylinders ( 30 )( 32 )( 34 ) to have more speed before reach to outer and inner ring supply holes and also to manage shape and direction of gas airflow neatly or any other ridges or dented grooves between outer and inner ring supply holes or only for outer or inner ring supply holes that are on duty of reducing encounter power of inner surface of the cover ( 46 ) ( 47 ) or managing order or increasing speed of gas airflow before reach to outer or inner supply holes as seen in FIGS. 14, 19 , 20 , 23 , and 24 .
12 . Gas stove-head with heat dam-up cylinder ( 8 ) that inside characteristic is cup-like arc laid on the cover ( 6 ) of outer ring supply holes ( 44 ). As for beside and lower side of the said cylinder has cone-like holes ( 55 ) that end of the holes is near and direct to base area of outer ring flame ( 53 ) and along with number of hole of heat dam-up cylindrical shape ( 8 ) is as the same number as of outer ring supply holes tete-a-tete ( 61 ). These holes play role of evacuating oxygen or outer cool air ( 56 ) to help combustion at base of flame ( 53 ) tete-a-tete hole ( 61 ) or small space or any other holes at the area of the shapes that play role of blowing outer cool air to help combustion at base of outer ring flame as seen in FIGS. 24, 25 and 26 .
13 . Gas stove-head with two parts of heat dam-up cylindrical shapes ( 8 ) ( 9 ) as the inner shape ( 8 ) laid upon the cover ( 6 ) and the outer shape ( 9 ) upon a small part jutted out of the inner shape ( 82 ). A little distance ( 64 ) made small space between the inner shape ( 8 ) and the outer shape ( 9 ) and upper edge of the outer shape ( 9 ) shall be higher than of the inner shape ( 8 ) only a little. The distance made is to dam up heat of outer flame to let outer cool air ( 65 ) pass through little gab ( 64 ) and push outer flame ( 53 ) standing erect to bottom of utensil as seen in FIGS. 20, 24 , 25 and 27 .
14 . Gas stove-head with inside side ( 18 ) of inner cylindrical shape ( 17 ) of gas rest cylinder ( 5 ) is thick and zigzag bends lifted afloat ( 20 ) to dam up heat of inner ring flame ( 57 ) and to make heat steam rotate ( 80 ). This could help increase heat of inner flame or any other curving ridge or groove that helps heat steam ( 57 ) of inner ring flame rotate and increase in heat as seen in FIGS. 8, 14 , and 25 .
15 . Gas stove-head with cloak-like part ( 1 ) on its wings ( 67 ) has heat dam-up cylindrical shape ( 74 ) located around by welding to the end area of inner wings of the part. This is on duty of keep up heat inside or any other curving ridge upon the wings that plays the same role as seen in FIG. 29 .
16 . Gas stove-head with cloak-like part ( 1 ) on its wings ( 67 ) has little chambers or holes that play role of letting outer cool air ( 66 ) to help complete combustion or any space between the parts ( 70 ) ( 72 ) and the wing ( 67 ) that play the same role as seen in FIG. 29 .
17 . Gas stove-head with cloak-like part that on its wing ( 67 ) located heat dam-up cylindrical shape ( 70 ) to dam up heat within the part up protect outer air to affect flame ( 53 ) or any curving ridge on the inner wing ( 67 ) that plays role of dam up heat within the part or protect outer air to affect flame ( 53 ) or other cylinder attached to utensil legs of inner part that is able to be knocked down or jam-welded that upper most of the shape is higher than inner wing as seen in FIG. 20 .
18 . Gas stove-head with legs for utensil ( 76 ) placed upon the wing of the part ( 67 ) has curving ridge raising upwards at a level at upper end of them to lay utensil ( 76 ) . This could help flame spread over utensil in case of the utensil has more longer diameter than the outer wing. The flame shall not touch the shapes attached to end area of outer wing and air ( 74 ).
19 . Gas stove-head that has more than one of gas conduit ( 13 ), gas rest cylinder ( 5 ) cover of gas rest cylinder ( 6 ) by means of the principle to work of curving ridge and any other groove to manage order of gas airflow in gas conduit or to increase in speed of gas airflow by reducing size of air way of the airflow or by the way of travel through curving ridge or any groove or reduce buffet and crash between the airflow or between airflow and surface by adjust slope or vertical of surface that gas airflow veered its way and then raised upwards to mouth of gas rest cylinder.Join the waitlist — get patent alerts
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