US842126A - Warm-air furnace. - Google Patents

Warm-air furnace. Download PDF

Info

Publication number
US842126A
US842126A US283588A US1905283588A US842126A US 842126 A US842126 A US 842126A US 283588 A US283588 A US 283588A US 1905283588 A US1905283588 A US 1905283588A US 842126 A US842126 A US 842126A
Authority
US
United States
Prior art keywords
pot
chamber
air
furnace
fire
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
US283588A
Inventor
Oliver L Badger
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.)
United States Furnace & Foundry Co
Us Furnace & Foundry Co
Original Assignee
Us Furnace & Foundry Co
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 Us Furnace & Foundry Co filed Critical Us Furnace & Foundry Co
Priority to US283588A priority Critical patent/US842126A/en
Application granted granted Critical
Publication of US842126A publication Critical patent/US842126A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H3/00Air heaters
    • F24H3/006Air heaters using fluid fuel

Definitions

  • My invention relates to warm-air furnaces
  • FIG. 1 is a vertical central section of my improved warm-air furnace, taken through the fuel and ash-pan doors thereof and showing a surrounding casing.
  • Fig. 2 is an enlarged cross-section of the gas-ring and its connecting parts, taken at right angles to that shown in Fig. 1.
  • Fig. 3 is a top plan view of the same.
  • the fire-pot 1 is of circular form and extends upwardly in a vertical line above the ash-pan 3 and grate 2 and is preferably formed of a series of plates or linings 4 for constituting the inner shell 4 of said pot.
  • the outer shell 5 of the fire-pot 1 excommunicating with the space 6, which openings are preferably narrower in width than the width of the upper part of the space 6 to throttle the outlets from said space and create a pressure within the same.
  • a hollow gas-ring a which is provided with an annular flange b on its lower face or bottom 0 for fitting Within an annular recess 3, formed on said upper wall 3 to hold these parts in place and seal the same.
  • This'ring a is provided with an-annular seat or recess (1 on its upper face or top wall e, within which the lower ends of the shells 4 and 5 of the fire-pot 1 are seated for supporting the same.
  • Gas is supplied to the chambcrf of the hollow ring a from a supply-pipe g, which is connected to a boss h on said ring and preferably at the front portion of said furnace A, while in the top wall 6 of said gas ring a a series of gasemission orifices i are formed for leading from the chamberf of said ring into the space 6 between the shells 4 and 5 of the fire-pot 1, such orifices i being formed at an outward incline inorder to direct the gas against the outer shell 5 of said fire-pot.
  • Air for combustion is supplied to the chamber of the gas-ring a through the usual air-mixer, (not shown,) which is connected to the gas-supply pipe 9 and located eXteriorly of the furnace A, while cold air is also supplied to the space 6 between the shells 4 and 5 througha chute 6", located below the fuel-chute 5.
  • This air is regulated by the damper 5 in the door 6 of said chute 6 and enters the space 6, which opens at 6 into said chute 6 and is deflected into said space by the outer walls of the shell 4.
  • the drop-plate 7 forms the lower part of the dome 8 and forms part of and extends down to form a series of cup-shaped sections 7 for a series of flue-chambers 8, having the double flues 9 9 formed therein by the division-wall 10 in said sections 8, connected with the diaphragm 10, which extends over and is supported above the fire-pot 1.
  • This diaphragm 10 also forms the chamber 1 above the fire-pot 1 and the chamber 11 between the same and dome 8, while an opening 12 is formed in said diaphragm, which is opened and closed by a sliding damper 12, operated through a rod 12, connected thereto.
  • Above the dome 8 is the circular drum 13, which communicates with the chamber 11 and has the flue 14 thereon leading to the chimney or stack.
  • a casing 15 extends around the furnace A to form the hot-air chamber 15 around said furnace, and this casing is supported at its lower end by the front wall 16 of the furnace and by the cleaningout chutes 17 which lead from each of the flue-chambers 8 and connect with the spaces or flues 8 under the division-wall 10 of said section 8.
  • the use and operation of my improved warm-air furnace are as follows:
  • the gas is fed into the gas-ring a through the supply pipe 9 and passes from the chan'iberf of said ring up through the orifices i into the space 6 between the outer and inner shells 4 and 5 of the fire-pot 1.
  • Such gas in passing up said space 6 will meet with the air entering said space through the air-chute 6 in order to obtain a better combustion of said gas, and then said gas or products of combustion will expand in passing up through said space 6 and said space being wider at its top than at its bottom will allow for such expansion, so that such gas passing out from said space through the opening 6 at the top of said inner shell 4 and into the chamber 1 above the fire-pot 1 will form a more perfect and sec ondary combustion at this point.
  • the opening 12 can be opened by opening the damper 12, so that the products of combus tion can pass directly out through the opening 12 in the diaphragm 10 from the fire-pot 1 and thence through the drum 13 to the chimney or stack instead of by way of the tortuous course through the flue-chambers 8 and chamber 11 to said drum and thence to the stack.
  • cold air is taken from the outside of the building or from the building in the usual manner and supplied to the chamber 15 in the casing 15 and through the bottom of said casing around the cleaning-out chutes 17, and such cold air will be drawn up into said chamber through said casing-bottom and will come in contact with and pass around the outside of .the furnace A.
  • Some of this cold air will also be drawn into and pass up through the spaces 9 between the drop flue-chambers 8 and the outer shell 5 of'the fire-pot, as well as between each of said flue-chambers 8, and thence up and around and in contact with the furnace A, so that such cold air and the cold air passing around the chutes 17 will,
  • the fuel or ashes can be removed or the grate cleaned of its ashes by tilting or shaking the grate 2 when desired in any suitable manner to remove or shake the ashes therefrom into under said chamber for supplying the ash-pan 3 of the furnace, and the fines 9 9, and 8 can be cleaned out at any time through the chute 17, so that any clogging materialsuch as ashes, dirt, &c.which might accumulate in said flues can be taken out through said chute by any suitable means,
  • any suitable form of a radiating-drum can be placed above the drum of the furnace,if desired.
  • a warm-air furnace comprising a firepot, an inner casing or shell in said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, and a separate hollow ring fitting under the fire-pot wall and said shell for supporting the same and supplying gaseous fuel to said chamber.
  • a warm-air furnace comprising a firepot, anash-pan having a seat in the top of the same, an inner casing or shell in said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, and a separatehollow ring gaseous fuel to the same, said ring having a flange on the bottom thereof for fitting within said seat to hold said ring in place.
  • a Warm-air furnace comprising a firepot, an inner casing or shell in said pot for forming'a chamber Within and around said pot and having escape-openings at the top.
  • a warm-air furnace comprising a firepot, an inner casing or shell in. said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, a separate hollow ring fitting under the fire-pot wall and said shell for supporting the same and supplying gaseous fuel to said chamber, and means for supplying air to said chamber to produce secondary combustion.
  • a Warm-air furnace comprising a firepot, an ash-pan having a seat in the top of the same, an inner casing or shell in said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, a separate hollow ring under said chamber for supplying gaseous fuel to the same, said ring having a flange on the bottom thereof for fitting within said seat to hold said ring in place, and means for supplying to air said chamber to produce secondary combustion.
  • a warm-air furnace comprising a fire pot, an inner casing or shell in said pot for forming a chamber Within and around said pot and having escape-openings at the top of the same, a separate hollow ring under said chamber for supplying gaseous fuel to the same and having a seat in its upper face for the lower ends of said shell and fire-pot wall to support the same in place, and means for supplying air to said chamber to produce secondary combustion.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Solid-Fuel Combustion (AREA)

Description

No. 842,126. PATBNTED JAN. 22, 1907. 0. L; BADGER. WARM AIR FURNACE.
APPLIOATION FILED 00120, 1905.
INVENTOR WITNijiES I i A I Wan r11: mums PETERS co wasuma'rou, D. c:
rrnrrnn srar ns r a rnnr orrrcn OLIVER L. BADGER, OF BELLEVUE, PENNSYLVANIA, ASSIGNOR TO 3 UNITED STATES FURNACE & FOUNDRY COMPANY, OF DARLING- TON, PENNSYLVANIA, A CORPORATION OF WEST VIRGINIA.
WARM-AIR FURNACE.
Specification of Letters Patent.
Patented Jan. 22, 1907.
Original application filed March 3, 1905, Serial No. 248,236. Divided and this application filed October 20, 1905. 7 Serial No. 283,588.
To aZZ whom it iota/y concern:
Be it known that I, OLIVER L. BADGER, a resident of Bellevue, in the county of Allegheny and State of Pennsylvania, have invented a new and useful Improvement in WVarm-Air Furnaces and I do hereby declare the following to be a full, clear, and exact descrlptlon. thereof.
My invention relates to warm-air furnaces,
and has special reference to what are known.
terfering with the formation of secondary combustion within such furnace in case such other fuel 1s used.
My lnventlon consists, generally stated, in
the novel arrangement, construction, and
combination of parts, as hereinafter more specifically set forth and described, and particularly pointed out in the claims.
To enable others skilled in the art to which my invention appertains to construct and use my improved furnace, I will describe the same more fully, referring to the accompanying drawings, in which- Figure 1 is a vertical central section of my improved warm-air furnace, taken through the fuel and ash-pan doors thereof and showing a surrounding casing. Fig. 2 is an enlarged cross-section of the gas-ring and its connecting parts, taken at right angles to that shown in Fig. 1. Fig. 3 is a top plan view of the same.
Like symbols of reference herein indicate like parts in each of the figures of the drawlngs.
As illustrated in said drawings, A repre sents my improved warm-air furnace of the construction shown in said application Serial N 0. 248,236, which is formed of cast metal and within which is the fuel-pot 1, having the shaking and tilting grate 2 at the lower end of the same and below which is the ash-pan 3. The fire-pot 1 is of circular form and extends upwardly in a vertical line above the ash-pan 3 and grate 2 and is preferably formed of a series of plates or linings 4 for constituting the inner shell 4 of said pot. The outer shell 5 of the fire-pot 1 excommunicating with the space 6, which openings are preferably narrower in width than the width of the upper part of the space 6 to throttle the outlets from said space and create a pressure within the same. 1 Between the lower ends of the shells 5 and 6 and the upper wall 3 of the ash-pan 3 is a hollow gas-ring a, which is provided with an annular flange b on its lower face or bottom 0 for fitting Within an annular recess 3, formed on said upper wall 3 to hold these parts in place and seal the same. This'ring a is provided with an-annular seat or recess (1 on its upper face or top wall e, within which the lower ends of the shells 4 and 5 of the fire-pot 1 are seated for supporting the same. Gas is supplied to the chambcrf of the hollow ring a from a supply-pipe g, which is connected to a boss h on said ring and preferably at the front portion of said furnace A, while in the top wall 6 of said gas ring a a series of gasemission orifices i are formed for leading from the chamberf of said ring into the space 6 between the shells 4 and 5 of the fire-pot 1, such orifices i being formed at an outward incline inorder to direct the gas against the outer shell 5 of said fire-pot. Air for combustion is supplied to the chamber of the gas-ring a through the usual air-mixer, (not shown,) which is connected to the gas-supply pipe 9 and located eXteriorly of the furnace A, while cold air is also supplied to the space 6 between the shells 4 and 5 througha chute 6", located below the fuel-chute 5. This air is regulated by the damper 5 in the door 6 of said chute 6 and enters the space 6, which opens at 6 into said chute 6 and is deflected into said space by the outer walls of the shell 4.
The drop-plate 7 forms the lower part of the dome 8 and forms part of and extends down to form a series of cup-shaped sections 7 for a series of flue-chambers 8, having the double flues 9 9 formed therein by the division-wall 10 in said sections 8, connected with the diaphragm 10, which extends over and is supported above the fire-pot 1. This diaphragm 10 also forms the chamber 1 above the fire-pot 1 and the chamber 11 between the same and dome 8, while an opening 12 is formed in said diaphragm, which is opened and closed by a sliding damper 12, operated through a rod 12, connected thereto. Above the dome 8 is the circular drum 13, which communicates with the chamber 11 and has the flue 14 thereon leading to the chimney or stack.
A casing 15 extends around the furnace A to form the hot-air chamber 15 around said furnace, and this casing is supported at its lower end by the front wall 16 of the furnace and by the cleaningout chutes 17 which lead from each of the flue-chambers 8 and connect with the spaces or flues 8 under the division-wall 10 of said section 8.
The use and operation of my improved warm-air furnace are as follows: The gas is fed into the gas-ring a through the supply pipe 9 and passes from the chan'iberf of said ring up through the orifices i into the space 6 between the outer and inner shells 4 and 5 of the fire-pot 1. As the gas passes through these orifices t it is impinged against said outer shell 5 by reason of said orifices being outwardly inclined and will act to heat up the walls of shells 4 and 5, and particularly the shell 5. Such gas in passing up said space 6 will meet with the air entering said space through the air-chute 6 in order to obtain a better combustion of said gas, and then said gas or products of combustion will expand in passing up through said space 6 and said space being wider at its top than at its bottom will allow for such expansion, so that such gas passing out from said space through the opening 6 at the top of said inner shell 4 and into the chamber 1 above the fire-pot 1 will form a more perfect and sec ondary combustion at this point. After these products of combustion have thus passed into the chamber 1 they pass down through the fines 9 in the flue-chambers 8, through the flues 8 under the ends 10 of the diaphragm 10, thence up through the flues 9 into the chamber 11 above said diaphragm, and thence into the drum 13 and out through the flue 14 to the chimney or stack. When it is desired to use coal or fuel other than gas within the furnace A, as in said application Serial No. 248,236, the gas supplied to the hollow ring a can be shut off and coal or such fuel to be used placed on the grate 2 within the fire-pot 1 through the fuel-chute 5, so that when fire is applied to said fuel the products of combustion therefrom will pass from 14 thereon to the chimney or stack.
the pot 1 through the chamber 1, thence through the fines 9,8, and 9 to the chamber 11, and thence through the drum 13 and flue Cold air for secondary combustion is introduced into the chute 6 and into the space 6 around the fire-pot and will become heated from the pot 1 and in passing up said space will expand therein, so that such heated air will then pass out through the openings 6 at the top of the same into said chamber 1 and meet the products of combustion passing from the fire-pot 1 into said chamber 1,
thence traveling with said products of combustion will pass through the flue-chambers 8 to the stack, as before described. The opening 12 can be opened by opening the damper 12, so that the products of combus tion can pass directly out through the opening 12 in the diaphragm 10 from the fire-pot 1 and thence through the drum 13 to the chimney or stack instead of by way of the tortuous course through the flue-chambers 8 and chamber 11 to said drum and thence to the stack. The waste heat and products of combustion generated by the gas passing up through the space 6 into the chamber 1 and through the fines 9 9, chamber 11, and drum 13 to the stack or from the fuel in the fire'pot 1 and. passing through said pot and the chambers, fines, and drum to the stack, as above set forth, will heat up the metal forming these parts, as well as their connecting parts, so that the heat therefrom will radiate from them and so heat the air, which air will be confined in the chamber 15, formed by the casing 15 around the furnace A, and such hot air can then be carried from said chamber by pipes to the rooms or different apartments in the building to be heated. hen the furnace is thus in use, cold air is taken from the outside of the building or from the building in the usual manner and supplied to the chamber 15 in the casing 15 and through the bottom of said casing around the cleaning-out chutes 17, and such cold air will be drawn up into said chamber through said casing-bottom and will come in contact with and pass around the outside of .the furnace A. Some of this cold air will also be drawn into and pass up through the spaces 9 between the drop flue-chambers 8 and the outer shell 5 of'the fire-pot, as well as between each of said flue-chambers 8, and thence up and around and in contact with the furnace A, so that such cold air and the cold air passing around the chutes 17 will,
come in contact with the parts of the furnace, and the heated air radiated from such furnace will pass through the chamber 15 to the rooms or apartments, as before described. The fuel or ashes can be removed or the grate cleaned of its ashes by tilting or shaking the grate 2 when desired in any suitable manner to remove or shake the ashes therefrom into under said chamber for supplying the ash-pan 3 of the furnace, and the fines 9 9, and 8 can be cleaned out at any time through the chute 17, so that any clogging materialsuch as ashes, dirt, &c.which might accumulate in said flues can be taken out through said chute by any suitable means,
i and thereby allow the said fiues to be free ings can be made to lead into said space for conducting the air thereto, while any suitable form of a radiating-drum can be placed above the drum of the furnace,if desired.
Various other modifications, additions,"
and changes in the design and construction of my improved warm-air furnace can be resorted to without departing from the spirit of my invention or sacrificing any of its advantages.
What I claim as my invention, and desire to secure by Letters Patent, is-
1. A warm-air furnace comprising a firepot, an inner casing or shell in said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, and a separate hollow ring fitting under the fire-pot wall and said shell for supporting the same and supplying gaseous fuel to said chamber.
2. A warm-air furnace comprising a firepot, anash-pan having a seat in the top of the same, an inner casing or shell in said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, and a separatehollow ring gaseous fuel to the same, said ring having a flange on the bottom thereof for fitting within said seat to hold said ring in place.
3. A Warm-air furnace comprising a firepot, an inner casing or shell in said pot for forming'a chamber Within and around said pot and having escape-openings at the top.
of the same, and a separate hollow ring un der said chamber for supplying gaseous fuel to'the same and having a seat in its upper face for the lower ends of said shell and fire pot wall to support the same in place.
4. A warm-air furnace comprising a firepot, an inner casing or shell in. said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, a separate hollow ring fitting under the fire-pot wall and said shell for supporting the same and supplying gaseous fuel to said chamber, and means for supplying air to said chamber to produce secondary combustion.
5. A Warm-air furnace comprising a firepot, an ash-pan having a seat in the top of the same, an inner casing or shell in said pot for forming a chamber within and around said pot and having escape-openings at the top of the same, a separate hollow ring under said chamber for supplying gaseous fuel to the same, said ring having a flange on the bottom thereof for fitting within said seat to hold said ring in place, and means for supplying to air said chamber to produce secondary combustion.
6. A warm-air furnace comprising a fire pot, an inner casing or shell in said pot for forming a chamber Within and around said pot and having escape-openings at the top of the same, a separate hollow ring under said chamber for supplying gaseous fuel to the same and having a seat in its upper face for the lower ends of said shell and fire-pot wall to support the same in place, and means for supplying air to said chamber to produce secondary combustion. I
In testimony whereof I, the said OLIVER L. BADGER, have hereunto set my hand.
OLIVER L. BADGER. Witnesses:
J. N. OooKE, R. H. AXTHELM.
US283588A 1905-03-03 1905-10-20 Warm-air furnace. Expired - Lifetime US842126A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US283588A US842126A (en) 1905-03-03 1905-10-20 Warm-air furnace.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US1905248236A 1905-03-03 1905-03-03
US283588A US842126A (en) 1905-03-03 1905-10-20 Warm-air furnace.

Publications (1)

Publication Number Publication Date
US842126A true US842126A (en) 1907-01-22

Family

ID=2910596

Family Applications (1)

Application Number Title Priority Date Filing Date
US283588A Expired - Lifetime US842126A (en) 1905-03-03 1905-10-20 Warm-air furnace.

Country Status (1)

Country Link
US (1) US842126A (en)

Similar Documents

Publication Publication Date Title
US400886A (en) Hot-air furnace
US842126A (en) Warm-air furnace.
US486990A (en) Furnace
US681245A (en) Heating-stove and attachment.
US38361A (en) Improvement in stoves
US424035A (en) Hot-air furnace
US89141A (en) Stove
US919553A (en) Stove.
US843103A (en) Heating-stove.
US610037A (en) Hot-air furnace
US523990A (en) Hot-air furnace
US348116A (en) eppley
US392899A (en) Stove or furnace
US843104A (en) Hot-air furnace.
US470727A (en) Heating apparatus
US166325A (en) Improvement in air-heating furnaces
US804818A (en) Hot-air furnace, revertible draft.
US646996A (en) Furnace or radiator.
US489994A (en) Emil r
US44719A (en) James gray
US746008A (en) Hot-air furnace.
US708563A (en) Hot-air furnace.
US651278A (en) Furnace.
US497345A (en) Hot-air furnace
US218982A (en) Improvement in double combustion hot-air furnaces