[go: up one dir, main page]

US132839A - Improvement in apparatus for burning hydrocarbons - Google Patents

Improvement in apparatus for burning hydrocarbons Download PDF

Info

Publication number
US132839A
US132839A US132839DA US132839A US 132839 A US132839 A US 132839A US 132839D A US132839D A US 132839DA US 132839 A US132839 A US 132839A
Authority
US
United States
Prior art keywords
chamber
oil
air
steam
admitted
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
Publication date
Application granted granted Critical
Publication of US132839A publication Critical patent/US132839A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/02Spray pistols; Apparatus for discharge
    • B05B7/04Spray pistols; Apparatus for discharge with arrangements for mixing liquids or other fluent materials before discharge
    • B05B7/0416Spray pistols; Apparatus for discharge with arrangements for mixing liquids or other fluent materials before discharge with arrangements for mixing one gas and one liquid
    • B05B7/0483Spray pistols; Apparatus for discharge with arrangements for mixing liquids or other fluent materials before discharge with arrangements for mixing one gas and one liquid with gas and liquid jets intersecting in the mixing chamber

Definitions

  • the machine itself may be briefly described as consisting of two communicating chambers, one of them large, the other comparatively small, the walls of which are perforated with holes or openings which are made to enter at the junction of the two chambers, through which oil and air or oil and water are admitted into the larger chamber.
  • Figure 1 is a plan of my apparatus.
  • Fig. 2 is a longitudinal section on the A line :0 y.
  • Fig. 3 is a cross-section on line 21 w.
  • Fig. 4 is a section through the nozzle.
  • My apparatus consists of two communicating chambers, the one, B, large, the other one, A, comparatively small.
  • a pipe, 0, is screwed into the end of chamber A, through which steam or compressed air is admitted.
  • the outside of the casting D containing these chambers is hexagonal in section, as shown in Fig. 3, and on the three upper sides has three inlet-pipes, E G H, fitted to it.
  • the casting D is first drilled nearly through at 6 and from the bottom of this hole a smallerhole, e is drilled at an angle of about forty-five degrees. This hole opens into the chamberB just at the junction of the two chambers. One half of the hole is shown in chamber A, the other half in chamber B.
  • the hole 6 is tappedwith a screw for attaching the pipe E by the short elbow 0
  • Two other similar pipes, G H, are fitted to the casting D, with inlets similar to that of pipe E.
  • a piece of wire-gauze, K Over the end of chamber B is placed a piece of wire-gauze, K, held in place by the nozzle M or otherwise.
  • This nozzle shown detached in Fig. 4, varies in size at the orifice m for the purpose of enlarging or reducing the discharge of vapor from the same.
  • the operation of the apparatus is in this manner: First, superheated or dry steam, under pressure, is admitted into the pipe 0. From thence it passes into chamber A and issues with considerable force into chamber B. At the same time oil is admitted through one or more of the pipes G E H. As the oil passes out of the hole 6 either by its gravity or the impelling current of steam, it is, by the force of the steam, atomized, combined, and converted into hydrocarbon Vapor within the chamber B. The oil, being admitted at the junction of the small chamber with the larger one, is free to expand immediately on entering, and thus relieve the pipe E of any back pressure.
  • the steam is made to supply the necessary equivalent of hydrogen and in the third mode the water furnishes the necessary supply during the process of combustion.
  • the chamberB should be rectangular in form. It may be globular or oval, provided the enlargement increases rapidly from the point at which the oil is admitted. Neither do I limit myself to the three tubes G, E, and H, here shown; more may be used when necessary.
  • the nozzle M may also be dispensed with, and the vapor burned as it passes from the chamber B. V

Landscapes

  • Hydrogen, Water And Hydrids (AREA)

Description

I, KENDRICK.
improvement in Apparatus for Burning Hydro-carbons. No. 132,839, Patented Nov.5,18 72 UNITED STATES PATENT Orro.
ISAAC KENDRIOK, OF PHILADELPHIA, PENNSYLVANIA.
[ MPROVEMENT IN APPARATUS FOR BURNING HYDROCARBONS.
Specification forming part of Letters Patent No. 132,539, dated November 5, 1872.
perheated or dry steam and air, or with water and air, as may be preferred; also, in the process of commingling hydrocarbon liquids and water and atomizin g them by the force of compressed .air, which may be accomplished by the apparatus described herein. The machine itself may be briefly described as consisting of two communicating chambers, one of them large, the other comparatively small, the walls of which are perforated with holes or openings which are made to enter at the junction of the two chambers, through which oil and air or oil and water are admitted into the larger chamber.
- Referring to the drawing making part of this specification, Figure 1 is a plan of my apparatus. .Fig. 2 is a longitudinal section on the A line :0 y. Fig. 3 is a cross-section on line 21 w.
Fig. 4 is a section through the nozzle.
My apparatus consists of two communicating chambers, the one, B, large, the other one, A, comparatively small. A pipe, 0, is screwed into the end of chamber A, through which steam or compressed air is admitted. The outside of the casting D containing these chambers is hexagonal in section, as shown in Fig. 3, and on the three upper sides has three inlet-pipes, E G H, fitted to it. The casting D is first drilled nearly through at 6 and from the bottom of this hole a smallerhole, e is drilled at an angle of about forty-five degrees. This hole opens into the chamberB just at the junction of the two chambers. One half of the hole is shown in chamber A, the other half in chamber B. The hole 6 is tappedwith a screw for attaching the pipe E by the short elbow 0 Two other similar pipes, G H, are fitted to the casting D, with inlets similar to that of pipe E. Over the end of chamber B is placed a piece of wire-gauze, K, held in place by the nozzle M or otherwise. This nozzle, shown detached in Fig. 4, varies in size at the orifice m for the purpose of enlarging or reducing the discharge of vapor from the same.
The operation of the apparatus is in this manner: First, superheated or dry steam, under pressure, is admitted into the pipe 0. From thence it passes into chamber A and issues with considerable force into chamber B. At the same time oil is admitted through one or more of the pipes G E H. As the oil passes out of the hole 6 either by its gravity or the impelling current of steam, it is, by the force of the steam, atomized, combined, and converted into hydrocarbon Vapor within the chamber B. The oil, being admitted at the junction of the small chamber with the larger one, is free to expand immediately on entering, and thus relieve the pipe E of any back pressure. Secondly, in combination with the hydrocarbon-oil, which is admitted through one or more of these pipes, I use one of them as an inlet for air, so as more effectually to prepare the gases for immediate ignition as they issue from the nozzle of chamber B. Usually I admit oil through the two pipes G and H and air through the pipe E, the proper supply being regulated by cocks in the said pipes. Thirdly, compressed air from a holder in lieu of the superheated steam is admitted, through chamber A, into chamber B. Oil is admitted through pipes G and H, as formerly, and water through pipe E. In this arrangement the oil and water are disintegrated and commingled together in chamber B, and pass out from thence by pressure, through the outlet, to a fireplace or furnace for purposes of fuel.
Inthe first and second mode of operation the steam is made to supply the necessary equivalent of hydrogen and in the third mode the water furnishes the necessary supply during the process of combustion.
When, from adeficiency of pressure, it is desirable, for the purpose of more effectually breaking up and commingling together the oil, steam, and air, or oil, air, and water, I place at the outlet of chamber B a netting of wire or perforated sheet metal, K, secured in position by the nozzle A when attached, or otherwise. 1 c
It is not essential that the chamberB should be rectangular in form. It may be globular or oval, provided the enlargement increases rapidly from the point at which the oil is admitted. Neither do I limit myself to the three tubes G, E, and H, here shown; more may be used when necessary. The nozzle M may also be dispensed with, and the vapor burned as it passes from the chamber B. V
The advantage claimed by the use of my device is in the simple and economical mode of utilizing the excess of carbon and other inflammable properties of the hydrocarbons and converting them into hydrocarbon vapor for purposes of fuel.
I do not claim, broadly, the process of forcing oil and water into the furnace by means of steam, or of forcing oil and steam into the furnace by means of air.
"What I claim is-- 1. The double communicating chambers A and B, in combination with the inlet-holes g d h, arranged to enter at the junction of the 3. The process of commingling hydrocarbon liquids and water and atomizing them by the force or pressure of compressed air for purposes of fuel, as herein set forth.
I. KENDRIOK.
Witnesses Enwn. BROWN, J OHN 13. GRANT.
US132839D Improvement in apparatus for burning hydrocarbons Expired - Lifetime US132839A (en)

Publications (1)

Publication Number Publication Date
US132839A true US132839A (en) 1872-11-05

Family

ID=2202256

Family Applications (1)

Application Number Title Priority Date Filing Date
US132839D Expired - Lifetime US132839A (en) Improvement in apparatus for burning hydrocarbons

Country Status (1)

Country Link
US (1) US132839A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022240306A1 (en) 2021-05-11 2022-11-17 Harman Becker Automotive Systems Gmbh Fusing contextual sensors for improving biosignal extraction

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022240306A1 (en) 2021-05-11 2022-11-17 Harman Becker Automotive Systems Gmbh Fusing contextual sensors for improving biosignal extraction

Similar Documents

Publication Publication Date Title
US132839A (en) Improvement in apparatus for burning hydrocarbons
US1785802A (en) Atomizing jet nozzle
US1342226A (en) Burner
US943567A (en) Spray-burner.
US1105833A (en) Samuel william
US714722A (en) Hydrocarbon-burner.
US1230725A (en) Oil-burner.
US1226871A (en) Liquid-fuel burner.
US1381144A (en) Burner for gas and oil
US1254507A (en) Liquid-fuel burner.
US372687A (en) Method of and apparatus for mingling gases
US360558A (en) Liquid hydrocarbons
US953978A (en) Vapor-burner.
US716049A (en) Oil-burner.
US1382655A (en) Liquid-fuel burner
US762129A (en) Vapor-burner.
US748177A (en) Oil-burner.
US703706A (en) Crude-oil burner.
US1380507A (en) Oil-burner
US190529A (en) Improvement in vapor-burners
US697093A (en) Vaporizer, mixer, and regulator for oil-burners.
US223051A (en) Improvement in vapor-burners
US379291A (en) Hydrocarbon-burner
US755717A (en) Hydrocarbon-burner.
US1450631A (en) Burner