US300150A - Feeding air to furnaces - Google Patents
Feeding air to furnaces Download PDFInfo
- Publication number
- US300150A US300150A US300150DA US300150A US 300150 A US300150 A US 300150A US 300150D A US300150D A US 300150DA US 300150 A US300150 A US 300150A
- Authority
- US
- United States
- Prior art keywords
- air
- space
- furnaces
- wall
- heated
- 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
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23K—FEEDING FUEL TO COMBUSTION APPARATUS
- F23K3/00—Feeding or distributing of lump or pulverulent fuel to combustion apparatus
- F23K3/02—Pneumatic feeding arrangements, i.e. by air blast
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23K—FEEDING FUEL TO COMBUSTION APPARATUS
- F23K2201/00—Pretreatment of solid fuel
- F23K2201/30—Separating
Definitions
- This invention has for its object, first, to provide improved means for supplying the furnaces of steanboilers with heated air to support and promote conbustion; secondly, to provide means for supplying superheated steam to such furnaces either alone or mixed with heated air.
- My invention consists in the provision of double walls surrounding the boiler and containing an air-space, into which cold external air is admitted and warned by the conducted heat from the furnace, the heated air passing to the furnace through mixers in the bridgewall or other suitable part of the furnace, said airspace being provided with perforated distributing-plates between the points where the cold air enters and the heated air is delivered to the furnace, whereby the air is distributed throughout the entire airspace and subj ected most advantageously to the heated surface of the inner wall.
- the invention also consists in the provision of a pipe communicatin g withthe steam-spacc of the boiler and extending to points behind the mixers, where said pipe is finely'perfor( ted so as to deliver stean against the highlyheated surfaces of said mixers, through which the steam passes in a superheated condition to the fire, all of which I will now proceed to describe and claim.
- Figure l represents a longitudinal vertical section of a boiler-casing provided with my improvements.
- Fig. 2 represents a horizontal section of the same.
- Fig. 3 represents a transverse vertical section, and
- Fig. 4 represents an enlarged section of the mixer in the bridge-wall.
- a represents an ordinary tubular boiler.
- I represents a vertical inner wall surrounding the boiler, and c represents a larger wall surrounding the wall I), and separated from the latter by an air-space, d.
- rc presents the bridge-wall in the rear of the grate a'.
- Said wall is provided with a mixer, e, consisting of a' plate of suitable refractory material set in the bridge-wall and provided with numerous snall perforations extending from an air-passage' in said wall to the interiorof the furnace, said passage communicating with the air-space d.
- the side walls of the furnace may also be provided with similar mixers, all communicating with the air-space d.
- the outer inclosing-wall, c is provided with regsters f, (see Fig.
- r represents a pipe communicating with the steam-space of the boiler, and extending through the air-space d into the chamber or passage behind the perforated mixers in the bridge-wall or in the sides of the furnace, or in both.
- the portion of said pipe extending into the passages behind said mixer is provided with numerous fine perforations, preferably about the size of a needle, for the escape of steam into said passage, the stea-m mingling with the heated air and passing through the perforations of the mixer to the fire.
- the pipe a' is provided with a valve, s, located so as to be Conveniently reached. When the mixer has become highly heated, and has also heated the pipe a', the valve s may be opened,
- the thick perforated plates composing the miXers exposed as they are to the full heat of the furnace, and being composed of soapstone, fire-brick, or other refractory material, acquire a high degree of heat and that the stean, coming in contact with the rear surfaces of said plates and passing through the perforations therein,. cannot fail to become intensely superheated When it reaches the fire, 'the result being a great increase in the activity of conbustion, as compared with a fire promoted only by hot air through the miXers.
Description
(No Model.)
2 Sheets-Sheet 1. S. SMITH.
FEEDING AIR TO FURNAGES.
N0.30O,15O.1
Patented June 10, 1884.
Inc/671260 7' Train/66666.
(No Model.) 2 Sheets-Sheet 2.
S. SMITH.
'FBEDING AIR TO FURNACBS.
No. 300.150. Patented June 10, 1884.
00000000 00000000000@ 00 u u CS 6090000! %G in/666 6 S 54% Whl wflm N. PD'ERS. Fhalo-Lilhognphen Wahinglom o. c.
NlTE` 4 ratta ArnNr SIDNEY SMITH, OF OAMBRIDGE, MASSACHUSETTS.
FEEDING AIR TO FURNACES.
SFECIPICATION or'ning part of Letters Patent No. 300,150, dated .Tune 10, 1884-.
Application filed November G, 1883. (No model) To all whom it may conoe'n:
Be it known that I, SIDNEY SMITH, of Cambridge, in the county of Middlesex and State of Massachusetts, have invented certain Improvements in Feeding Air to Furnaces, of which the following is a specification.
This invention has for its object, first, to provide improved means for supplying the furnaces of steanboilers with heated air to support and promote conbustion; secondly, to provide means for supplying superheated steam to such furnaces either alone or mixed with heated air.
My invention consists in the provision of double walls surrounding the boiler and containing an air-space, into which cold external air is admitted and warned by the conducted heat from the furnace, the heated air passing to the furnace through mixers in the bridgewall or other suitable part of the furnace, said airspace being provided with perforated distributing-plates between the points where the cold air enters and the heated air is delivered to the furnace, whereby the air is distributed throughout the entire airspace and subj ected most advantageously to the heated surface of the inner wall. i
The invention also consists in the provision of a pipe communicatin g withthe steam-spacc of the boiler and extending to points behind the mixers, where said pipe is finely'perfor( ted so as to deliver stean against the highlyheated surfaces of said mixers, through which the steam passes in a superheated condition to the fire, all of which I will now proceed to describe and claim.
Of the accompanying drawings', forming a part of this specification, Figure l represents a longitudinal vertical section of a boiler-casing provided with my improvements. Fig. 2 represents a horizontal section of the same. Fig. 3 represents a transverse vertical section, and Fig. 4; represents an enlarged section of the mixer in the bridge-wall. i
The same letters of reference indicate the same parts in all the figures.
a represents an ordinary tubular boiler.
I represents a vertical inner wall surrounding the boiler, and c represents a larger wall surrounding the wall I), and separated from the latter by an air-space, d.
, GTS.
8 rcpresents the bridge-wall in the rear of the grate a'. Said wall is provided with a mixer, e, consisting of a' plate of suitable refractory material set in the bridge-wall and provided with numerous snall perforations extending from an air-passage' in said wall to the interiorof the furnace, said passage communicating with the air-space d. The side walls of the furnace may also be provided with similar mixers, all communicating with the air-space d. The outer inclosing-wall, c, is provided with regsters f, (see Fig. l), through which cold air is admitted to the space d, where it becomes heated by contact with the heated inner wall and passes 'through the mixer to the fire, becoming additionally heated in its passage through said mixer. The fire is thus supplied with hot air. I prefer to place one or more plates or parttions, -P, in the space d, provided with numerous small perforations, said perforations being so located that the air will nccessarily pass through the perforationsthereof on its way to the mix- The current of air entering the registers is thus finely subdivided, so that it is more thoroughly and uniformly heated in its passage'through the space d than would be the case if its Volume were unbroken.
r represents a pipe communicating with the steam-space of the boiler, and extending through the air-space d into the chamber or passage behind the perforated mixers in the bridge-wall or in the sides of the furnace, or in both. The portion of said pipe extending into the passages behind said mixer is provided with numerous fine perforations, preferably about the size of a needle, for the escape of steam into said passage, the stea-m mingling with the heated air and passing through the perforations of the mixer to the fire. The pipe a' is provided with a valve, s, located so as to be Conveniently reached. When the mixer has become highly heated, and has also heated the pipe a', the valve s may be opened,
so as to permit a small quantity of steam to pass from the boiler to the mixer.- Steam at sixty pounds pressure has a temperature of 292%. The mixer, with a good fire in the furnace, will have a temperature at the inner surface of the perforated wall thereofr of 700 or 800, and would heat the pipe 7' to a tempera- IOO ture of 300 to 400, so that the stean will be -superheated as it passes into and over the coal in the furnace.
It will be readily seen that the thick perforated plates composing the miXers, exposed as they are to the full heat of the furnace, and being composed of soapstone, fire-brick, or other refractory material, acquire a high degree of heat and that the stean, coming in contact with the rear surfaces of said plates and passing through the perforations therein,. cannot fail to become intensely superheated When it reaches the fire, 'the result being a great increase in the activity of conbustion, as compared with a fire promoted only by hot air through the miXers. i
I know that it is* not new to supply air and stean in jets to the furnace of a steam-boiler, and that various means for supplying and distributing the same have been patented to James Mahony, No. 240 434. April 19, 1881,
and No. 259,325, June 13,'1382. I do not claim anything he shows and clainis; but
What I do claim, and deire to secure by Letters Patent, is-
1. The combination, with a boiler, ofinner and outer inclosing-walls separated by an airspace, and having registers for the admission of air, perforated distributingplates arranged in the air-space, and the mixer or mixers having connection with said air-space, substantially as shown and set forth.
2. The combination of a boiler having inner and outer inclosing-walls separated by an air-space, and with a mixer or mixers having connection with said air-space, registers for the admission of air, and perforated distribnting-plates arranged within'the air-space, with a steam-pipe extending from the steanspace of the boiler to the space behind the mixers, and having a perforated portion in close proxinity to said mixers adapted to mingle superheated stean with the heated air supplied to said lllXI'Sfl'Ol'l'l the air-space, substantially'as set forth.
In testimony whereof I have signed my name to this specification, in the presence of two subscribing witnesses, this 29th day of October, 1883.
SIDNEY SMITH.
Publications (1)
Publication Number | Publication Date |
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US300150A true US300150A (en) | 1884-06-10 |
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US300150D Expired - Lifetime US300150A (en) | Feeding air to furnaces |
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- US US300150D patent/US300150A/en not_active Expired - Lifetime
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