US568900A - Charles a - Google Patents

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US568900A
US568900A US568900DA US568900A US 568900 A US568900 A US 568900A US 568900D A US568900D A US 568900DA US 568900 A US568900 A US 568900A
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jets
furnace
steam
jet
gases
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23MCASINGS, LININGS, WALLS OR DOORS SPECIALLY ADAPTED FOR COMBUSTION CHAMBERS, e.g. FIREBRIDGES; DEVICES FOR DEFLECTING AIR, FLAMES OR COMBUSTION PRODUCTS IN COMBUSTION CHAMBERS; SAFETY ARRANGEMENTS SPECIALLY ADAPTED FOR COMBUSTION APPARATUS; DETAILS OF COMBUSTION CHAMBERS, NOT OTHERWISE PROVIDED FOR
    • F23M5/00Casings; Linings; Walls
    • F23M5/08Cooling thereof; Tube walls
    • F23M5/085Cooling thereof; Tube walls using air or other gas as the cooling medium

Definitions

  • My invention relates to furnaces, and has for its object to produce an efficient fuel-consuming furnace in which the smoke and gases of combustion are consumed to alarge degree.
  • my invention consists in the construction and arrangement hereinafter set forth and claimed, and also in the mode or method of consuming the smoke and gases.
  • FIG. l is a front elevation of a furnace embodying my invention.
  • Fig. 2 is a longitudinal section thereof, the door and its connecting mechanism being removed.
  • a A are the side walls
  • B is the top wall
  • 0 is the front wall
  • D a back wall or fire-bridge, of my furnace.
  • E is a boiler mounted in the furnace and having a steam-dome F.
  • G is the grate of the furnace, H the firedoor opening, and I an ash-door opening.
  • the grate G preferably extends from the front wall of the furnace to the back wall or fire-bridge, and the face of the back wall is preferably inclined and stepped, as shown at d d (I -that is to say, a horizontal face d joined on either side by an inclined face d (1
  • a steam-inlet pipe J Leading from some suitable part of the boiler, preferably from the dome F, where the driest steam is to be found, is a steam-inlet pipe J, which extends through the wall of the furnace above the grate-bars and back wall.
  • the pipe is provided with a jet-forming means, such as an opening for asteam jet or jets b, which steam jet or jets impinge against the back wall, preferably at about the place shown in the drawings.
  • pipe J is also provided with steam-jet producers, as b at or near the front wall of the furnace, which jet-producers project jets 19 which are shown in the present instance as driving downward and impinging against the face 01 of the wall D.
  • jets b are here shown as divergent and flanked at either side by jets 11
  • These jets b are shown clearly in Fig. 2 as downwardly jets issuing from jet-formers b in communication with the pipe J.
  • the pipe J may be provided with a valve K, whose connectinglever 0 may be suitably manually operated, such as by means of an operating cord or chain passing over a sheave L and extending down the front of the furnace.
  • the steampipe J may also be provided with a valve M, whose operating-lever N is connected with the operating mechanism 0 of the door P, so that the steam from the jets may be out off as the door is opened.
  • the jets b are shut off by suitable independent 'means (not shown) and the jets b are set in operation, which in the present instance throws an inclined curtain of steam above the coals, confining the smoke to a restricted space between the curtain of steam and the fire, and at the same time imparts a circulatory motion to the smoke and heavier gases, so that the smoke and heavier gases aforesaid are brou ghtagain and again into contact with the fire and are thoroughly consumed.
  • the general path of these gases is indicated by the dotted ellipsoid e.
  • the lighter gases can pass freely through the steam-curtain and escape over the back wall D and into the chimney.
  • the jets b are provided, which are preferably located about the middle of the length of the furnace and form additional side curtains to the inclined steam-curtain formed by the jets 12 so that the smoke and heavier gases are en-' tirely confined within the space inclosed by the curtains, the front and back walls, and the coals.
  • the herein-described smokeless furnace comprising front, side and top Walls and a stepped firebridge D, of a grate, an inclined steam jet or jets traversing the space above the grate and impinging against the face of the tire-bridge, a steam jet or jets originating above and impinging upon the stepped por- CHARLES A. GRAS.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Baking, Grill, Roasting (AREA)

Description

(No Model.)
0. A. ems;
FURNACE.
No. 568,900. Patented Oct. 6, 1896.
nramlsrs.
"m: nonms I it UNITED. STATES PATENT OFFICE.
CHARLES A. GRAS, OF NEYV YORK, N. Y., ASSIGNOR TO FRANCIS DEIMEL, OF SAME PLACE.
FU RNAC E.
SPECIFICATION forming part of Letters Patent No. 568,900, dated October 6, 1896..
Application filed February 24, 1896. Serial No. 580,411. (No model.)
To all whom it may concern.-
Be it known that 1, CHARLES A. GRAS, a resident of the city, county, and State of New York, have invented certain new and useful Improvements in Furnaces, of which the V following is a specification.
My invention relates to furnaces, and has for its object to produce an efficient fuel-consuming furnace in which the smoke and gases of combustion are consumed to alarge degree.
To this end my invention consists in the construction and arrangement hereinafter set forth and claimed, and also in the mode or method of consuming the smoke and gases.
My invention will be understood by referring to the accompanying drawings, in which I Figure l is a front elevation of a furnace embodying my invention. Fig. 2 is a longitudinal section thereof, the door and its connecting mechanism being removed.
In the drawings, A A are the side walls, B is the top wall, 0 is the front wall, and D a back wall or fire-bridge, of my furnace.
E is a boiler mounted in the furnace and having a steam-dome F.
G is the grate of the furnace, H the firedoor opening, and I an ash-door opening.
The grate G preferably extends from the front wall of the furnace to the back wall or fire-bridge, and the face of the back wall is preferably inclined and stepped, as shown at d d (I -that is to say, a horizontal face d joined on either side by an inclined face d (1 Leading from some suitable part of the boiler, preferably from the dome F, where the driest steam is to be found, is a steam-inlet pipe J, which extends through the wall of the furnace above the grate-bars and back wall. At or near the end I) the pipe is provided with a jet-forming means, such as an opening for asteam jet or jets b, which steam jet or jets impinge against the back wall, preferably at about the place shown in the drawings. The
pipe J is also provided with steam-jet producers, as b at or near the front wall of the furnace, which jet-producers project jets 19 which are shown in the present instance as driving downward and impinging against the face 01 of the wall D.
By observing Fig. 1 it will be noted that the jets b are here shown as divergent and flanked at either side by jets 11 These jets b are shown clearly in Fig. 2 as downwardly jets issuing from jet-formers b in communication with the pipe J. The pipe J may be provided with a valve K, whose connectinglever 0 may be suitably manually operated, such as by means of an operating cord or chain passing over a sheave L and extending down the front of the furnace. The steampipe J may also be provided with a valve M, whose operating-lever N is connected with the operating mechanism 0 of the door P, so that the steam from the jets may be out off as the door is opened.
I will now proceed to describe the process feature of my invention, having reference to the method or process as well as to the apparatus. To begin with, fire is started upon the grate-bars G, air being admitted thereto preferably through the ash-door openings I, and the end jets b are set in operation. As soon as the fire has burned up and the blue flame has begun to appear on the coal, the jets b are shut off by suitable independent 'means (not shown) and the jets b are set in operation, which in the present instance throws an inclined curtain of steam above the coals, confining the smoke to a restricted space between the curtain of steam and the fire, and at the same time imparts a circulatory motion to the smoke and heavier gases, so that the smoke and heavier gases aforesaid are brou ghtagain and again into contact with the fire and are thoroughly consumed. The general path of these gases is indicated by the dotted ellipsoid e. The lighter gases, however, can pass freely through the steam-curtain and escape over the back wall D and into the chimney. In order to prevent the smoke and gases from escaping at the sides of the curtain, the jets b are provided, which are preferably located about the middle of the length of the furnace and form additional side curtains to the inclined steam-curtain formed by the jets 12 so that the smoke and heavier gases are en-' tirely confined within the space inclosed by the curtains, the front and back walls, and the coals.
Now while I have shown this inventionvas applied to stationary furnaces and boilers, it is obvious that it is equally applicable to locomotive and other movable boilers and furnaces, and consequently I desire to have the claims construed to include both stationary and movable fu'rnaces and boilers.
What I claim, and desire to secure by Letters Patent, is
1. The herein-described smokeless furnace comprising front, side and top Walls and a stepped firebridge D, of a grate, an inclined steam jet or jets traversing the space above the grate and impinging against the face of the tire-bridge, a steam jet or jets originating above and impinging upon the stepped por- CHARLES A. GRAS.
Witnesses:
GEO. E. MORSE, MAURICE BLOCK.
US568900D Charles a Expired - Lifetime US568900A (en)

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