EP3682166A1 - Low steam consumption high smokeless capacity waste gas flare - Google Patents
Low steam consumption high smokeless capacity waste gas flareInfo
- Publication number
- EP3682166A1 EP3682166A1 EP18857338.0A EP18857338A EP3682166A1 EP 3682166 A1 EP3682166 A1 EP 3682166A1 EP 18857338 A EP18857338 A EP 18857338A EP 3682166 A1 EP3682166 A1 EP 3682166A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- steam
- flare
- waste gas
- gas
- tube
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23G—CREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
- F23G7/00—Incinerators or other apparatus for consuming industrial waste, e.g. chemicals
- F23G7/06—Incinerators or other apparatus for consuming industrial waste, e.g. chemicals of waste gases or noxious gases, e.g. exhaust gases
- F23G7/08—Incinerators or other apparatus for consuming industrial waste, e.g. chemicals of waste gases or noxious gases, e.g. exhaust gases using flares, e.g. in stacks
- F23G7/085—Incinerators or other apparatus for consuming industrial waste, e.g. chemicals of waste gases or noxious gases, e.g. exhaust gases using flares, e.g. in stacks in stacks
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23D—BURNERS
- F23D14/00—Burners for combustion of a gas, e.g. of a gas stored under pressure as a liquid
- F23D14/46—Details
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23G—CREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
- F23G5/00—Incineration of waste; Incinerator constructions; Details, accessories or control therefor
- F23G5/50—Control or safety arrangements
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23L—SUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
- F23L5/00—Blast-producing apparatus before the fire
- F23L5/04—Blast-producing apparatus before the fire by induction of air for combustion, e.g. using steam jet
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23L—SUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
- F23L7/00—Supplying non-combustible liquids or gases, other than air, to the fire, e.g. oxygen, steam
- F23L7/002—Supplying water
- F23L7/005—Evaporated water; Steam
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23G—CREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
- F23G2209/00—Specific waste
- F23G2209/14—Gaseous waste or fumes
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23L—SUPPLYING AIR OR NON-COMBUSTIBLE LIQUIDS OR GASES TO COMBUSTION APPARATUS IN GENERAL ; VALVES OR DAMPERS SPECIALLY ADAPTED FOR CONTROLLING AIR SUPPLY OR DRAUGHT IN COMBUSTION APPARATUS; INDUCING DRAUGHT IN COMBUSTION APPARATUS; TOPS FOR CHIMNEYS OR VENTILATING SHAFTS; TERMINALS FOR FLUES
- F23L2900/00—Special arrangements for supplying or treating air or oxidant for combustion; Injecting inert gas, water or steam into the combustion chamber
- F23L2900/07009—Injection of steam into the combustion chamber
Definitions
- the present invention relates to an improved flare apparatus and more specifically to an efficient steam-assisted flare apparatus.
- Flare apparatus for burning and disposing of combustible gases are well known. Flare apparatus are commonly mounted on flare stacks and are located at production, refining, processing plants and the like for disposing of flammable waste gases or other flammable gas streams which are diverted for any reason including but not limited to venting, shut-downs, upsets and/or emergencies. Flare apparatus are extremely important in the event of plant emergencies such as fire or power failure and a properly operating flare system is a critical component to prevent plant disruption in any of the above-mentioned or other circumstances.
- the waste gas flow enters at the bottom of the flare tip through a 60 inch diameter waste gas connection (conduit).
- the flare tip is 9 to 10 feet in diameter.
- a steam jet pump which is sometimes referred to as an eductor.
- Combustion air insures the flammable gas is fully oxidized to prevent the production of smoke.
- steam is commonly used as a motive force to move air in a flare apparatus.
- motive force such as blower, a jet pump using steam, compressed air or other gas. Most of the required combustion air is obtained from the ambient atmosphere along the length of the flame.
- One type of known steam-assisted flare apparatus comprises a generally cylindrical gas tube into which flammable gas is communicated. Lower steam is
- a purge rate is typically the minimum gas flow rate continuously flowing to the flare to prevent explosion in the flare stack.
- Another type of steam-assisted flare uses only center and upper steam injectors, and works in a similar fashion.
- the steam-assisted flares described herein may accomplish smokeless flaring.
- such flare apparatus may require more steam per waste gas than other steam-assisted flare types, especially at larger sizes; additionally, they may create an excessive amount of noise.
- the noise from the lower steam can be muffled, while the noise from the upper steam is difficult or impractical to muffle due to its vicinity to the flare flame.
- a muffler for the lower steam not only adds to the costs, but also increases the wind load of the flare stack, resulting in increased flare stack costs.
- the invention provides a steam flare comprising a waste gas cylinder connected at an upper portion of said waste gas cylinder to a plurality of extensions that extend away from a center of said waste gas cylinder, wherein each of the extensions contain a plurality of flare gas conduits, and a steam tube is located in each of the flare gas conduits.
- the steam flare may have a ring at a top portion of said flare gas conduit and above a top portion of said steam tube.
- the steam flare may additionally have a singular or plurality of flow-restricting cones in some section of the flare gas conduit below the conduit exit.
- the flare gas conduit may be a tube having a cylindrical configuration or other configuration such as a square, rectangular, oval or complex configuration.
- the steam tube may be a single tube having branches that extend into each of said flare gas conduits.
- the steam exit may be a singular orifice or plurality of orifices directly vertical or at an angle.
- the ring may contain perforations or other surface features.
- the transition from the waste gas cylinder to the waste gas equipment may be completely horizontal, at a certain slope, curved in some direction, or a combination of two or more of these features.
- the cap of the waste gas cylinder may involve a flat plate, a cone, a smaller concentric cylinder, or a combination of two or more of these features.
- the invention is a process of operating a steam flare comprising sending a waste gas stream through a waste gas cylinder to a plurality of flare gas conduits while sending a stream of steam through a tube wherein said tube extends into said flare gas conduit, mixing said waste gas stream and said steam and then causing a flame to burn as a resulting mixture of said waste gas stream, said steam and oxygen in outside ambient air.
- a ring at an upper portion on a waste gas tip of the flare gas conduit that comprises perforations or other surface features to direct mixture of said steam and said waste gas.
- the steam flare may have a singular or plurality of velocity seals or flow- restricting cones in some section of said flare gas conduit below the conduit exit to reduce atmospheric air backflow into the flare gas extensions, additionally reducing the level of assist gas and/or steam required to maintain smokeless combustion under low-flow operating conditions.
- the steam exit may involve an orifice directly vertical or multiple orifices at an angle to increase mixing of the steam, surrounding atmospheric air, and waste gas and additionally increase the velocity of the waste gas stream while reducing the level of atmospheric air backflow at low flow rates through partial steam-capping of the flare gas conduit, reducing the level of assist gas and/or steam required to maintain smokeless combustion under low-flow operating conditions.
- the flare gas conduit may have a configuration selected from the group consisting of cylindrical, square, rectangular, oval and complex shapes.
- the transition from the waste gas cylinder to the waste gas extension may be completely horizontal, at a certain slope, curved in some direction, or a combination of these features to reduce the pressure drop through the tip so as to not require increased nominal tip size with higher structural requirements; in addition, this improves structural integrity of tip by reducing stress from thermal growth due to combustion within tip.
- the cap of the waste gas cylinder may involve a flat plate, a cone, a smaller concentric cylinder, or a combination of these features, to reduce the stresses from thermal growth, increasing the structural integrity of the apparatus, and result in better flow distribution within the flare apparatus, resulting in acceptable pressure drop.
- the invention also addresses the situation where atmospheric air ingress into the tip mixes with waste gas and assist gas and combusts within the tip, thereby heating the tip and reducing equipment life; therefore, reducing level of air ingress is important to maximizing equipment life at low-flow operating conditions.
- the invention provides advantages in the low amount of steam that is needed with less than 0.20 lbs steam used per pound of propane waste gas. All of the steam that is injected internally to the waste gas before exposure to surrounding atmospheric air. The steam imparts mixing and momentum transfer to said waste gas and said surrounding atmospheric air.
- the invention also provides advantages under low-flow conditions, requiring reduced steam and/or assist gas to maintain smokeless combustion and increase equipment life.
- Fig. 1 is an isometric perspective of a top portion of a steam flare.
- Fig. 2 is a view of the steam flare including a waste gas cylinder and tube for steam.
- Fig. 3 is a cutaway upper portion of the steam flare.
- Fig. 4 shows an isometric view of two flare enclosure conduits.
- the present invention delivers smokeless combustion while utilizing less than 0.20 lbs steam per lb of propane waste gas stream while requiring no steam for cooling and minimal steam for warming (less than 0.0006 lbs steam per maximum vent gas flow).
- the invention relies solely on completely internal steam, steam injected completely internally to the flare vent gas ducting with no exposure to surrounding atmospheric air while imparting a significant mixing and momentum transfer effect on the surrounding ambient air environment.
- Other flares rely on stream that is injected into the air near and immediately surrounding the periphery of the flare tip and aimed so that they drive steam and air near and immediately surrounding the periphery of the flare tip and aimed so that they drive stream and air into the waste gas or effluent stream of the waste gas.
- Such flares are referred to as "External Steam Flares”.
- a waste gas stream passes up through a cylinder 12.
- Steam 2 is injected into the waste gas stream 1 at one or more locations 4 whereupon the resulting accelerated stream and waste gas mixture, upon exposure to the surrounding air induces the surrounding air into the waste gas (fuel) and steam mixture.
- the steam and waste gas 5 are partially mixed prior to mixing with the surrounding ambient air 6 but emit from the confines of the flare enclosure or waste gas conduit with sufficient combined velocity and momentum to induce effective mixing of fuel and steam with the surrounding air to affect improved combustion and effectively complete destroying combustible waste gas.
- Relatively high velocity steam 2 transfers momentum to the relatively low velocity waste gas 1 and induces some mixing of steam and waste gas 5 before exiting into surrounding air 3.
- the resulting partially mixed steam and waste gas stream then imparts momentum, drawing in and mixing with, the surrounding ambient air 6 as the steam and waste gas emit from the flare enclosure conduits 7.
- Figure 1 are shown four sets of four enclosure conduits 7, conduit steam injection nozzles 8, rings 9, velocity seals 10, and hub steam injection nozzles 16.
- Fig. 2 is a view that includes the lower portion of the flare assembly with the cylinder 12 into which waste gas 1 passes and the pipe in which steam 2 is sent to the upper portion that contains the explained above. Hub steam injection nozzles 16 are shown, which result in steam separating the combusting waste gas stream mixture from the center hub metal.
- Fig. 3 illustrates detail of several flare enclosure conduits. Steam 2 passes into flare conduits 7 and then into surrounding air 3 to be burned effectively. Rings 9 and velocity seals or flow-restricting cones 10 are shown in each enclosure conduit 7.
- Fig. 4 is a view that shows more detail of two individual flare enclosure conduits 7 with steam 8 entering through a tube 14 that extends to near the top of the flare enclosure conduit while waste gas passes up to mix with the outside ambient air to then burn efficiently.
- the depicted embodiment shows twenty-four waste gas conduits 7, four on each of six transition sections, for a twenty-four inch riser cylinder 12.
- the number and size of waste gas conduits and number and size of transition sections could vary more or less.
- the steam injection nozzle in located upstream of the plane at the exit of the waste gas conduit. In another embodiment (not pictured) the steam injection tip extends through and beyond the plane of at the exit of the waste gas conduit while remaining completely enveloped in the waste gas stream.
- the waste gas tip has a ring 9 located near, but slightly upstream of the waste gas exit.
- This ring is not necessary, but can serve to 1) enhance the mixing of waste gas, steam and air, 2) stabilize or create as stable bluff body for flame stabilization and 3) serve as a fine tuning location whereby adjusting the size of the passage(s) in the ring the flow capacity of the flare can be adjusted to specifically meet the flow capacity requirements of a particular flaring application or operation.
- the benefits of adjusting the capacity of the flare to correctly match the flow and capacity requirements of a particular flaring application or operation include fuller utilization of the available pressure loss in the waste stream system thereby enhancing the mixing of the waste gas, steam and air.
- This ring or rings can be located as depicted, upstream of the exit, at the exit or suspended on a structure and held downstream of the exit. These rings may also reside singularly or in plurality on the outside of the outside of the waste gas conduit.
- the depicted waste gas conduit 7 is cylindrical but in practice may be of various shapes including square, rectangular, oval or complex. Given the multiplicity of possible shapes, the "ring(s)" may be of various shapes and dimensions and may contain perforations or other surface features the may disrupt, guide or channel the flow of steam, waste gas or air to affect the mixing of the three component streams.
- the waste gas tip 9 has three velocity seals or flow- restricting cones 10 per waste stream conduit 7. These cones are not necessary but serve to 1) restrict air from flowing upstream into the flare transition or entry cylinder 12 under low-flow operating conditions, 2) maintain combustion in waste stream conduits 7, and 3) reduce combustion within the waste stream entry cylinder 12. Additionally, these cones can be increased or decreased in count per waste stream conduit or flow diverted from them as required.
- Curved transition plate 11 is shown in the depicted embodiment, but this plate can be flat, sloped, or curved in a direction opposite to that depicted in the figure.
- the curved shape is utilized to optimize flow distribution while minimizing pressure drop.
- Hub cylinder and flat plate 13 are not required but as depicted are used to maximize equipment life.
- Other embodiments not depicted involve cone with flat plate or simple flat plate.
- a first embodiment of the invention is a steam flare comprising a waste gas cylinder connected at an upper portion of the waste as cylinder to a plurality of extensions that extend away from a center of the waste gas cylinder, wherein each of the extensions contain a plurality of flare gas conduits, and wherein a steam tube is located in each of the flare gas conduits.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare further comprises a ring at a top portion of the flare gas conduit and above a top portion of the steam tube.
- the flare gas conduit is a tube having a cylindrical configuration.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the flare gas conduit is a tube having a square, rectangular, oval or complex configuration.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam tube comprises a single tube having branches that extend into each of the flare gas conduits.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the ring contains perforations or other surface features.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare further comprises a multiplicity of flow-reducing cones in the flare gas conduit and below a top portion of the steam tube.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare further comprises a singular flow-reducing cone in each of the flare gas conduits and below a top portion of the steam tube.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the stream flare comprises a curved transition piece from waste gas cylinder to flare gas conduits.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare comprises a straight transition piece from waste gas cylinder to flare gas conduits.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare has a sloped transition piece from waste gas cylinder to flare gas conduits.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein there is a flat plate capping the waste gas cylinder.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein there is a cone and a flat plate capping the waste gas cylinder.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare has a cylinder and a flat plate capping the larger concentric waste gas cylinder.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare has a steam tube with a singular orifice pointing vertical.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare has a team tube with two to twenty orifices, pointing at an angle between zero and fifty degrees from vertical.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam flare has external steam tubes injecting steam between hub metal and combusting stream.
- a second embodiment of the invention is a process of operating a steam flare comprising sending a waste gas stream through a waste gas cylinder to a plurality of flare gas conduits while sending a stream of steam through a tube wherein the tube extends into the flare gas conduit, mixing the waste gas stream and the steam and then causing a flame to burn as a resulting mixture of the waste gas stream, the steam and oxygen in outside ambient air.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein a ring at an upper portion on a waste gas tip of the flare gas conduit comprises perforations or other surface features to direct mixture of the steam and the waste gas.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the flare gas conduit has a configuration selected from the group consisting of cylindrical, square, rectangular, oval and complex shapes.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein less than 0.09 kg (0.20 lbs) steam is used per pound of propane waste gas.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein a ring at the upper portion of the waste gas tip of the flare gas conduit comprises perforation or other surface features properly sized in proportion to the waste gas stream and thereby values approaching or less than 0.05 kg (0.10 lbs) steam is used per pound of propane waste gas.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein all of the steam is injected internally to the waste gas before exposure to surrounding atmospheric air.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein most of the steam is injected internally to waste gas before exposure to surrounding atmospheric air and some of the steam is injected externally to separate combusting stream from hub metal.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the steam imparts mixing and momentum transfer to the waste gas and the surrounding atmospheric air.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein a singularity or multiplicity of flow- reducing cones in the flare gas conduit reduce the amount of air flowing upstream into the flare gas conduit.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein reduced steam and/or assist gas is required to maintain smokeless operation under low-flow operating conditions.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein curved transition pieces between flare gas cylinder and the waste gas conduits improve flow distribution exiting the waste gas conduits and reduce pressure drop through flare gas system.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein a singular vertical orifice or multiple orifices at an angle are utilized to increase mixing of the steam, surrounding atmospheric air, and waste gas.
- An embodiment of the invention is one, any or all of prior embodiments in this paragraph up through the first embodiment in this paragraph wherein the orifices increase the velocity of the waste gas stream while reducing the level of atmospheric air backflow at low flow rates through partial steam-capping of the flare gas conduit.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Environmental & Geological Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Incineration Of Waste (AREA)
- Chimneys And Flues (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201762559318P | 2017-09-15 | 2017-09-15 | |
| PCT/US2018/050171 WO2019055335A1 (en) | 2017-09-15 | 2018-09-10 | Low steam consumption high smokeless capacity waste gas flare |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP3682166A1 true EP3682166A1 (en) | 2020-07-22 |
| EP3682166A4 EP3682166A4 (en) | 2021-05-19 |
| EP3682166B1 EP3682166B1 (en) | 2023-06-21 |
Family
ID=65719961
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP18857338.0A Active EP3682166B1 (en) | 2017-09-15 | 2018-09-10 | Low steam consumption high smokeless capacity waste gas flare |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US20190086079A1 (en) |
| EP (1) | EP3682166B1 (en) |
| KR (1) | KR102410184B1 (en) |
| CN (1) | CN111094853B (en) |
| CA (1) | CA3075057C (en) |
| RU (1) | RU2745312C1 (en) |
| WO (1) | WO2019055335A1 (en) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20210048194A1 (en) * | 2019-08-14 | 2021-02-18 | Zeeco, Inc. | Low consumption assisted flare apparatus and method |
| CN115539975A (en) * | 2022-09-14 | 2022-12-30 | 上海齐耀热能工程有限公司 | Torch combustion system |
Family Cites Families (15)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3539285A (en) * | 1969-03-20 | 1970-11-10 | Zink Co John | Flare stack burner assembly |
| DE2248465A1 (en) * | 1972-10-03 | 1974-04-11 | Combustion Unltd Inc | DEVICE FOR SEALING A CHIMNEY AGAINST A GAS FLOW |
| GB1593391A (en) * | 1977-01-28 | 1981-07-15 | British Petroleum Co | Flare |
| US4128389A (en) * | 1977-08-22 | 1978-12-05 | Combustion Unlimited Incorporated | Flare stack gas burner |
| US5865613A (en) * | 1996-11-05 | 1999-02-02 | Rajewski; Robert Carl | Steam over air flare tip |
| RU2203450C1 (en) * | 2001-12-06 | 2003-04-27 | ООО "Пермнефтегазпереработка" | Jumbo burner for dump hydrogen sulfide containing hydrocarbon gas |
| US6840760B1 (en) * | 2003-08-13 | 2005-01-11 | Michael R. Keller | Gas-assisted flare burner |
| US7354265B2 (en) * | 2004-12-02 | 2008-04-08 | Saudi Arabian Oil Company | Flare stack combustion method and apparatus |
| US7967600B2 (en) * | 2006-03-27 | 2011-06-28 | John Zink Company, Llc | Flare apparatus |
| CN200996611Y (en) * | 2006-11-23 | 2007-12-26 | 中国船舶重工集团公司第七一一研究所 | Steam combustion-supporting torch burner |
| CN102901098B (en) * | 2012-10-23 | 2015-10-07 | 江苏中圣高科技产业有限公司 | Ground flare multi-head high-efficiency premixed type combustion system |
| US20140329185A1 (en) | 2013-05-03 | 2014-11-06 | Uop Llc | Apparatus and method for minimizing smoke formation in a flaring stack |
| CN204227434U (en) * | 2014-11-04 | 2015-03-25 | 中国石油化工股份有限公司 | ground flare |
| US9816705B2 (en) * | 2014-11-18 | 2017-11-14 | Honeywell International Inc. | Flare burner for a combustible gas |
| CN205261590U (en) * | 2016-01-06 | 2016-05-25 | 山东恒能环保能源设备有限公司 | Ground torch |
-
2018
- 2018-08-30 US US16/117,969 patent/US20190086079A1/en not_active Abandoned
- 2018-09-10 KR KR1020207007558A patent/KR102410184B1/en active Active
- 2018-09-10 RU RU2020110721A patent/RU2745312C1/en active
- 2018-09-10 WO PCT/US2018/050171 patent/WO2019055335A1/en not_active Ceased
- 2018-09-10 CA CA3075057A patent/CA3075057C/en active Active
- 2018-09-10 EP EP18857338.0A patent/EP3682166B1/en active Active
- 2018-09-10 CN CN201880059555.XA patent/CN111094853B/en active Active
Also Published As
| Publication number | Publication date |
|---|---|
| KR20200041940A (en) | 2020-04-22 |
| CN111094853A (en) | 2020-05-01 |
| RU2745312C1 (en) | 2021-03-23 |
| CN111094853B (en) | 2022-04-05 |
| CA3075057C (en) | 2022-07-12 |
| EP3682166A4 (en) | 2021-05-19 |
| CA3075057A1 (en) | 2019-03-21 |
| US20190086079A1 (en) | 2019-03-21 |
| WO2019055335A1 (en) | 2019-03-21 |
| KR102410184B1 (en) | 2022-06-22 |
| EP3682166B1 (en) | 2023-06-21 |
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