US848384A - Oil-burner. - Google Patents

Oil-burner. Download PDF

Info

Publication number
US848384A
US848384A US30710306A US1906307103A US848384A US 848384 A US848384 A US 848384A US 30710306 A US30710306 A US 30710306A US 1906307103 A US1906307103 A US 1906307103A US 848384 A US848384 A US 848384A
Authority
US
United States
Prior art keywords
oil
nozzle
steam
burner
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.)
Expired - Lifetime
Application number
US30710306A
Inventor
Charles N Moore
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US30710306A priority Critical patent/US848384A/en
Application granted granted Critical
Publication of US848384A publication Critical patent/US848384A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23DBURNERS
    • F23D11/00Burners using a direct spraying action of liquid droplets or vaporised liquid into the combustion space
    • F23D11/10Burners using a direct spraying action of liquid droplets or vaporised liquid into the combustion space the spraying being induced by a gaseous medium, e.g. water vapour

Definitions

  • My invention relates to an apparatus whichis especially cesigned for atomizing and vaporizing oil to be burned.
  • A is an exterior cylindrical casing having an enlarged globular mixing-section 2 inter mediate of its length, a second fluted and cylindrical portion A beyond the part 2, and a globular generating-chamber 3 at the outer end having a discharge passage or nozzle, as at 4, and a deflecting-lug projecting above the passa e, as at 5.
  • the operation of these parts will be hereafter more fully described.
  • the part A is screwed into a coupling 6, and by means of a bushing 7, screwed into the rear end of the coupling, connection is made with an oiljet nozzle 8 of smaller diameter and fitting within the tube A.
  • W ithin the tube which terminates in the nozzle 8 is another tube 9, having a nozzle at its front end located a short distance behind the nozzle 8.
  • This tube 9 extends backwardly through a T 10, the front end of which is connected with the pipe which terminates in the nozzle 8.
  • the rear end by means of bushings is connected with the tube 9 and with a steam-inlet passage, through which steam passes into the interior of this tube 9.
  • the other opening 10 of the T serves to admit oil, which passes into the T and thence into the annular space between the tube 9 and the tube 8 which terminates in the nozzle 8.
  • a collar 11 fitting the space and having passages or openings through which the oil passes to the nozzle 8.
  • a small jet of steam is admitted into the tube 9 and discharges through the jet-nozzle 9 at the front of said tube.
  • a small jet of oil is then admitted through the supply-opening 19 and passes through the annular channel between the pipes 8 and 9 and to the jet-nozzle 8, through which it is discharged by the steam into the atomizingchamber 2, where the spray thus delivered is swirled about within the chamber, thus breaking the particles up more finely.
  • the spray passes through the internal fluted passage A, where the m xing and. atomizing are continued to a higher degree.
  • the outer spherical head 3 is subjected to an intense heat, and the now thoroughly mixed and atomized product enters this chamber and is transformed into a gas, which is discharged through the jet opening or nozzle 4-, from which it issues in perfect condition for combustion without further action upon it. From this device this burner maybe made to discharge a flame sufficient for any power from five to three hundred horse power, according to the character of the combustionchamber in which it is used.
  • the automatic feature of the apparatus operates as follows: The pressure upon the oil at the feed-valve being taken at any figure, as, say, eighty pounds boiler pressure, one hundred and fifty pounds at the atomizing-nozzle, when the required boiler-pres sure is attained, set the steam-valve as required to produce the desired action, and as the power to be applied through the engine or other connection using steam is increased the pressure from the boiler through the steam-jet makes an increased pressure on the atomizer 8, and the back pressure acting through the intermediate channel between the pipes 8 and 9 and through the sleeve or collar 1.1 resists the entrance of the oil and correspondingly reduces the supply and also the steampressure.
  • an outer tube having a hollow spherical gas-generating head, with a burner-nozzle, said'nozzle having a deflecting lip or lug projecting above it, a second spherical atomizing-chamber, means forming a connecting-passage between the outer and inner heads, said passage being fluted between its ends anterior to the generatinghead, and oil and steam jet nozzles located within the outer tube and anterior to the spherical mixing-chamber.
  • an exterior tube having a hollow spherical head with burner-nozzle and deflecting-lip at the outer end, a second spherical atomizing and mixing chamber, and a fluted passage connecting the two spheres, a pipe located within the outer pipe having a j et-nozzle at its front end adapted to discharge into the first of the mixingchambers, a steampipe concentric with and anterior to the oil-supply pipe having a jetnozzle in line with the nozzle of the oilpipe,
  • an interior steam pipe an oil pipe concentric therewith and forming an annular passage between the two, a collar or sleeve located in the length of said passage, a jetn0zzle at the front of the steam-pipe, and a second jetnozzle in the front of the oil-pipe through which the steam is discharged, and by which an increase of steam-pressure reacts through the oil-passage to check the flow of oil
  • an exterior pipe concentric with said steam and oil pipes, an enlarged atomizing and mixing chamber located in front of the oil-jet, a fluted passage extending forwardly from said mixing-chamber, a spherical heating-head into which the mixed products are delivered, and a burner-nozzle through which the vaporized products are discharged.

Description

PATENTED'MAR. 26, 190?. 0. N. MOORE.
OIL BURNER.
APPLICATION FILED MABJO, 1906.
WW mm m x QM Wififeases; /i/C i I rm: Nouns PETERS cm, wuxnlmnoa, n. c.
UNTTED STATEtE PATENT OFFTOEO CEL=BURNER.
Specification of Letters Patent.
Patented March 26, 1907.
Ap lication filed March 20,1906. Serial No. 307.103.
To (1,27, whom it may concern.-
Be it known that 1, CHARLES N. Moons, a citizen oi the United States, res' Douglas, in the county of (1.ochise and T erritory of Arizona, have invented new and. useful Improvements in Oil-Burners, oi which the following is a specification.
My invention relates to an apparatus whichis especially cesigned for atomizing and vaporizing oil to be burned.
It consists in a combination of parts and in details of construction, which will be more fully explained by reference to the accompanying drawing, in which the figure is a longitudinal section of the improved burner.
It is the object of my invention to provide an automatically-regulated supply of oil to a burner, said regulation being varied by the steam-pressure in the boiler to which the burner is applied and from which boiler steam is supplied to be mixed with the oil.
A is an exterior cylindrical casing having an enlarged globular mixing-section 2 inter mediate of its length, a second fluted and cylindrical portion A beyond the part 2, and a globular generating-chamber 3 at the outer end having a discharge passage or nozzle, as at 4, and a deflecting-lug projecting above the passa e, as at 5. The operation of these parts will be hereafter more fully described.
' The part A is screwed into a coupling 6, and by means of a bushing 7, screwed into the rear end of the coupling, connection is made with an oiljet nozzle 8 of smaller diameter and fitting within the tube A. W ithin the tube which terminates in the nozzle 8 is another tube 9, having a nozzle at its front end located a short distance behind the nozzle 8. This tube 9 extends backwardly through a T 10, the front end of which is connected with the pipe which terminates in the nozzle 8. The rear end by means of bushings is connected with the tube 9 and with a steam-inlet passage, through which steam passes into the interior of this tube 9. The other opening 10 of the T serves to admit oil, which passes into the T and thence into the annular space between the tube 9 and the tube 8 which terminates in the nozzle 8. At a point within this annular channel and between the oil-supply passage and the jetnozzles is a collar 11, fitting the space and having passages or openings through which the oil passes to the nozzle 8.
The operation of the device will be as follows: First a small jet of steam is admitted into the tube 9 and discharges through the jet-nozzle 9 at the front of said tube. A small jet of oil is then admitted through the supply-opening 19 and passes through the annular channel between the pipes 8 and 9 and to the jet-nozzle 8, through which it is discharged by the steam into the atomizingchamber 2, where the spray thus delivered is swirled about within the chamber, thus breaking the particles up more finely. From this spherical atomizing-chamber the spray passes through the internal fluted passage A, where the m xing and. atomizing are continued to a higher degree. The outer spherical head 3 is subjected to an intense heat, and the now thoroughly mixed and atomized product enters this chamber and is transformed into a gas, which is discharged through the jet opening or nozzle 4-, from which it issues in perfect condition for combustion without further action upon it. From this device this burner maybe made to discharge a flame sufficient for any power from five to three hundred horse power, according to the character of the combustionchamber in which it is used.
The automatic feature of the apparatus operates as follows: The pressure upon the oil at the feed-valve being taken at any figure, as, say, eighty pounds boiler pressure, one hundred and fifty pounds at the atomizing-nozzle, when the required boiler-pres sure is attained, set the steam-valve as required to produce the desired action, and as the power to be applied through the engine or other connection using steam is increased the pressure from the boiler through the steam-jet makes an increased pressure on the atomizer 8, and the back pressure acting through the intermediate channel between the pipes 8 and 9 and through the sleeve or collar 1.1 resists the entrance of the oil and correspondingly reduces the supply and also the steampressure. Whenever the steampressure is decreased by increase of load or I more rapid useof the steam, the pressure in 1 the atomizmg pipe or passage 1s also decreased and the supply of oil is again increased. Thus when the apparatus is properly set the supply of oil will be automatically controlled to regulate the steampressure within small'limits.
Having thus described my invention, what i I claim, and desire to secure by Letters Patj ent, is I 1. The combination in an oil-burner, of an linterior steam-pipe and jet-nozzle, an exterior oil-pipe having a contracted j et-nozzle, an exterior tubular chamber with which said pipes are concentric, an enlarged spherical chamber within said outer tube within which the mixed jets of steam and oil are first expanded and atomized, said oil and steam jet nozzles being anterior to the spherical mixing-chamber, a second spherical head Within which the temperature of the mixed steam and oil is raised, and a gas produced, means within that portion of the tubular chamber between the two chambers for further mixing and atomizing the mixed oil and steam delivered from the mixingchamber, and a burner-nozzle opening from said head, said burner-nozzle having a deflecting-lip which overhang the discharge-opening thereof.
2. In an oil-burner, an outer tube having a hollow spherical gas-generating head, with a burner-nozzle, said'nozzle having a deflecting lip or lug projecting above it, a second spherical atomizing-chamber, means forming a connecting-passage between the outer and inner heads, said passage being fluted between its ends anterior to the generatinghead, and oil and steam jet nozzles located within the outer tube and anterior to the spherical mixing-chamber.
3. In an oil-burner, an exterior tube having a hollow spherical head with burner-nozzle and deflecting-lip at the outer end, a second spherical atomizing and mixing chamber, and a fluted passage connecting the two spheres, a pipe located within the outer pipe having a j et-nozzle at its front end adapted to discharge into the first of the mixingchambers, a steampipe concentric with and anterior to the oil-supply pipe having a jetnozzle in line with the nozzle of the oilpipe,
and means whereby the varying pressure of the steam controls the admission of the oil. 4. In an apparatus for burning oil, an interior steam pipe, an oil pipe concentric therewith and forming an annular passage between the two, a collar or sleeve located in the length of said passage, a jetn0zzle at the front of the steam-pipe, and a second jetnozzle in the front of the oil-pipe through which the steam is discharged, and by which an increase of steam-pressure reacts through the oil-passage to check the flow of oil, an exterior pipe concentric with said steam and oil pipes, an enlarged atomizing and mixing chamber located in front of the oil-jet, a fluted passage extending forwardly from said mixing-chamber, a spherical heating-head into which the mixed products are delivered, and a burner-nozzle through which the vaporized products are discharged.
In testimony whereof I have hereunto set my hand in presence of two subscribing wit- HQSSGS.
CHARLES N. MOORE. YVitnesses:
T. S. DOUGLAS, JOHN I\/IAI-IE.
US30710306A 1906-03-20 1906-03-20 Oil-burner. Expired - Lifetime US848384A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US30710306A US848384A (en) 1906-03-20 1906-03-20 Oil-burner.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US30710306A US848384A (en) 1906-03-20 1906-03-20 Oil-burner.

Publications (1)

Publication Number Publication Date
US848384A true US848384A (en) 1907-03-26

Family

ID=2916846

Family Applications (1)

Application Number Title Priority Date Filing Date
US30710306A Expired - Lifetime US848384A (en) 1906-03-20 1906-03-20 Oil-burner.

Country Status (1)

Country Link
US (1) US848384A (en)

Similar Documents

Publication Publication Date Title
US391865A (en) schutte
US3998581A (en) Gaseous fuel burners
US6132202A (en) Method and device for operating a premix burner
US1462680A (en) Burner for fluid fuel
US1991894A (en) Combination gas and oil burner
US848384A (en) Oil-burner.
US733579A (en) Hydrocarbon-burner.
US218337A (en) Improvement in hydrocarbon-burners
US1026815A (en) Oil-burner.
US1339709A (en) Liquid-hydrocarbon burner of the injection type
US418582A (en) Santo
US895668A (en) Oil-burner.
US1055715A (en) Method of firing boilers or furnaces by hydrocarbon.
US715044A (en) Oil-burner.
US1186193A (en) Oil-burner.
US5234168A (en) Liquid atomizing spray nozzle
US736664A (en) Oil-burner.
US1131718A (en) Burner.
US1075678A (en) Hydrocarbon-burner.
US1592865A (en) Vacuum-feed oil burner
US1450631A (en) Burner
US908249A (en) Oil-burner.
US716049A (en) Oil-burner.
US586201A (en) oncken
US958789A (en) Hydrocarbon-burner.