US2444825A - Heat exchange element - Google Patents

Heat exchange element Download PDF

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US2444825A
US2444825A US510862A US51086243A US2444825A US 2444825 A US2444825 A US 2444825A US 510862 A US510862 A US 510862A US 51086243 A US51086243 A US 51086243A US 2444825 A US2444825 A US 2444825A
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heat exchange
elements
tubular
flanges
plane
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US510862A
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Frank R Higley
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Bryant Heater and Manufacturing Co
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Bryant Heater and Manufacturing Co
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F13/00Arrangements for modifying heat-transfer, e.g. increasing, decreasing
    • F28F13/06Arrangements for modifying heat-transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media

Definitions

  • One of the objects of the invention is the provision of sheet metal heat exchange elements for forced air furnaces of the type stated.
  • Another object is the provision of a sheet metal element of a character such that heating units of difierent capacities may be made up of two or more such elements, in order that furnaces of different sizes may be constructed economically from a minimum number of different parts.
  • a further object is the provision of an element of the character stated adapted for assembly into units with a minimum of effort and time.
  • Still another object is the provision of an element of the character stated so designed and proportioned that the sheet metal of which it is constructed is subjected during formation to a minimum of stretch, whereby the tendency toward warpage in use is minimized.
  • Fig. 1 is a side view of a sheet metal heat exchange implantationmbodying the invention.
  • Figs. 2 and 3 are front and rear elevational views of the same.
  • Fig. 4 is an elevational view, partly in vertical section, of a portion of a furnace in which my heat exchange elements are incorporated.
  • Figs. 5 to 8 inclusive are detail sectional views, taken substantially on the lines 5--5, 6-6, 1-1 and 88 of Fig. 4, showing the cross-sectional contours of a four element heating unit, and
  • Fig. 9 is a fragmental elevational-view showing means for interconnecting the upper extremities of the tubular conductors constituting the upper portions of the elements.
  • each element comprises two sheet metal stampings l0 and H which are identical except as to rights and lefts, each stamping constituting one-half of the complete element.
  • each of these elements has spaced walls as shown particularly in Fig, 8. with edge flanges [3, It, IS and I6. Flanges I3 and I5 are welded together, as are also flanges l4 and I6. Thus a tubular conductor 40 is formed,
  • the lower or base portion M of the element is closed along its front edge only, that is to say the flanges i3 and i5 continue beyond the bottom of the tubular portion of the element, curving downwardly and forwardly toward the toe of the element. Behind the .curved portions of these flanges the element has a curvature of anticlastic characteristics.
  • This lower or base portion is open toward the bottom and the rear, and its sides are warped surfaces which extend laterally andare provided with downturned flanges ii and i8 which are disposed in planes parallel to the plane of symmetry of the element, that is to say the plane lying between the flanged edges of the two halves of the tubular part of the element.
  • the warped surfaces on the sides of the flanges l3, l5 extend from a substantially straight transverse line 20', Fig. 5, at the toe of the element rearwardly through the anticlastic portion M, the curvature of the latter portion changing gradually to meet and merge with the flat sides of the tubular portions l0 and H.
  • the curved base thus extends transversely and longitudinally of the element, the term transverse" as herein used referring to the direction from front to rear of the element or parallel to the plane of symmetry, while lateral refers to the .direction at right angles to the plane of symmetry.
  • the back of the element near the juncture of the tubular and base portions is unclosed, and this unclosed back portion is made to conform with a plane at right angles to the plane of symmetry of the element in order that the opening may be closed by a fiat sheet. It is within the purview of the invention however to shape this back opening to receive a cover sheet which, instead of being fiat, is straight in the lateral direction and curved from front to rear, that is, in a direction parallel to the plane of symmetry.
  • Figs. 4 to 9 inclusive illustrate an application of-my novel heat exchange element to a forced air furnace burning fluid fuel, that is gas or oil, such a burner being indicated at B in Fig. 4.
  • fluid fuel that is gas or oil
  • FIG. 1 A unit of four heat exchange elements is shown, the adjacent flanges l1, iii of the elements being welded together and the outermost flanges l'l, I8 being welded to theside walls of a bottom cover or pan 23 which, with the curved bases of the elements, on'stitutes a combustion chamber 24.
  • This burner has lateral I dimensions such as to pro ect flame well across Q the width of the combustion chamber.
  • This chamber, at the point where the flame enters it, is approximately rectangular in vertical section, as indicated in Fig. 5.
  • the upper wall of the chamber gradually changes in cross-section in the direction of flame propagation, the straight edge portions of the individual elements changing to anticlastic portions ll of gradually increasing height, the .unit spacing of the elements being maintained constant.
  • the sides of the unit are closed by plates 21 provided with openings 28 through which air to be heated may enter the ends of a blower rotor, not illustrated, the perimeter of which is indi-: cated at 29.
  • An unheated part of the scroll of this blower is constituted by a metal sheet 30 which is welded at one end to the transversely flat toe edges 20 of the heat exchange elements, and extends upwardly with spiral curvature to the cutofl 3
  • the heated part of the scroll is constituted by the base portions of the heat exchange elements joined together aspreviously described.
  • the effective curvature of this portion of the scroll is somewhere between that of the radially inner and outer portions of the base.
  • the tubular portions of the elements extend upwardly and preferably diagonally through an air conduit, the front wall 33 of which has been referred to above.
  • This conduit may have a rear wall 34 and side walls (not illustrated), flush with the side plates 21. Air delivered by the blower flows over the highly heated base portions of the elements, being guided by the curvature of the latter transversely and longitudinally of the tubular conductors.
  • a heating unit such as described may be assembled and handled as a rigid entity it is desirable to rigidly interconnect the upper extremities of the tubular conductors.
  • I may form each half of a tubular conductor at its upper extremity with a flange 35 disposed to be parallel with the air conduit wall 33.
  • These flanges are welded to a flat sheet metal frame 36 having openings 31 therethrough conforming to the openings at the upper extremities of the conductors.
  • a removable apron 38 may be so positioned as to cover the lower parts of V ments may be cleaned by introducing a brush through the front end of the combustion chamber 24.
  • a sheet metal heat exchange element for the purpose described, symmetrical about a central plane, a portion of said element being formed to constitute a tubular conductor with a cross section elongated in the direction of said plane, and a portion extending laterally thereof and transversely therefrom to form an ofiset base for connection with the bases of similar elements, said base portion comprising a warped surface extending divergently from said tubular conductor and thence transversely beyond the conductor, and comprising also an intermediate portion of substantial area having divergently related walls effecting anticlastic characteristics merged with the tubular conductor and said walls having gradually increasing divergence decreasing in height away from said conductor until attaining disposition in a straight laterally extendir line.
  • a sheet metal heat, exchange element for the purpose described and formed to constitute a tubular conductor symmetrical about a central plane with a cross section elongated in the direction of said plane, with a base for connection with the bases of similar elements, and having divergently related walls of curved outline merged with the tubular conductor, said walls having gradually increasing divergence along said curved outline of said base until attaining disposition in a straight laterally extending line at one extremity.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Description

" F. R. HIGLEY HEAT EXCHANGE ELEMENT July E94 2 Sheets-Sheet 1 Filed Nov. 19, 1943 I N V EN TOR. @QNM E 1 /1 45 y July 6, 1948. F. R. HIGLEY HEAT EXCHANGE ELEMENT 2 Shets-Sheet 2 Filed NOV. 19, 1943 INVENTIOR.
EQA/ /(RH/GLEY 1 I llllllW I5 HTTQENEYJ Patented July 5, i948 HEAT EXCHANGE ELEMENT Frank R. Higley, Cleveland Heights, Ohio, assignor to Bryant Heater @Company, a corporation of Ohio This invention relates to improvements in heat exchange elements of sheet metal, intended primarily for use in heating furnaces of the volute type such as that disclosed in my eo-pending application, Serial Number 479,892, filed March 20, 1943.
One of the objects of the invention is the provision of sheet metal heat exchange elements for forced air furnaces of the type stated.
Another object is the provision of a sheet metal element of a character such that heating units of difierent capacities may be made up of two or more such elements, in order that furnaces of different sizes may be constructed economically from a minimum number of different parts.
A further object is the provision of an element of the character stated adapted for assembly into units with a minimum of effort and time.
Still another object is the provision of an element of the character stated so designed and proportioned that the sheet metal of which it is constructed is subjected during formation to a minimum of stretch, whereby the tendency toward warpage in use is minimized.
Other objects and features of novelty will appear as I proceed with the description of that embodiment of the invention which, for the purposes of the present application, I have illustrated in the accompanying drawings, in which Fig. 1 is a side view of a sheet metal heat exchange elementembodying the invention.
Figs. 2 and 3 are front and rear elevational views of the same.
, Fig. 4 is an elevational view, partly in vertical section, of a portion of a furnace in which my heat exchange elements are incorporated.
Figs. 5 to 8 inclusive are detail sectional views, taken substantially on the lines 5--5, 6-6, 1-1 and 88 of Fig. 4, showing the cross-sectional contours of a four element heating unit, and
Fig. 9 is a fragmental elevational-view showing means for interconnecting the upper extremities of the tubular conductors constituting the upper portions of the elements.
In Figs. 1, 2 and 3 an individual heat exchange element is illustrated. As shown each element comprises two sheet metal stampings l0 and H which are identical except as to rights and lefts, each stamping constituting one-half of the complete element.
' The upper portion of each of these elements has spaced walls as shown particularly in Fig, 8. with edge flanges [3, It, IS and I6. Flanges I3 and I5 are welded together, as are also flanges l4 and I6. Thus a tubular conductor 40 is formed,
2 which in this instance is shown as having parallel side walls and as tapering somewhat toward its upper end.
The lower or base portion M of the element is closed along its front edge only, that is to say the flanges i3 and i5 continue beyond the bottom of the tubular portion of the element, curving downwardly and forwardly toward the toe of the element. Behind the .curved portions of these flanges the element has a curvature of anticlastic characteristics. This lower or base portion is open toward the bottom and the rear, and its sides are warped surfaces which extend laterally andare provided with downturned flanges ii and i8 which are disposed in planes parallel to the plane of symmetry of the element, that is to say the plane lying between the flanged edges of the two halves of the tubular part of the element. The warped surfaces on the sides of the flanges l3, l5 extend from a substantially straight transverse line 20', Fig. 5, at the toe of the element rearwardly through the anticlastic portion M, the curvature of the latter portion changing gradually to meet and merge with the flat sides of the tubular portions l0 and H. The curved base thus extends transversely and longitudinally of the element, the term transverse" as herein used referring to the direction from front to rear of the element or parallel to the plane of symmetry, while lateral refers to the .direction at right angles to the plane of symmetry.
The back of the element near the juncture of the tubular and base portions is unclosed, and this unclosed back portion is made to conform with a plane at right angles to the plane of symmetry of the element in order that the opening may be closed by a fiat sheet. It is within the purview of the invention however to shape this back opening to receive a cover sheet which, instead of being fiat, is straight in the lateral direction and curved from front to rear, that is, in a direction parallel to the plane of symmetry.
Figs. 4 to 9 inclusive illustrate an application of-my novel heat exchange element to a forced air furnace burning fluid fuel, that is gas or oil, such a burner being indicated at B in Fig. 4. The
illustration of the furnace is more or less diagrammatic. A unit of four heat exchange elements is shown, the adjacent flanges l1, iii of the elements being welded together and the outermost flanges l'l, I8 being welded to theside walls of a bottom cover or pan 23 which, with the curved bases of the elements, on'stitutes a combustion chamber 24. This burner has lateral I dimensions such as to pro ect flame well across Q the width of the combustion chamber. This chamber, at the point where the flame enters it, is approximately rectangular in vertical section, as indicated in Fig. 5. The upper wall of the chamber gradually changes in cross-section in the direction of flame propagation, the straight edge portions of the individual elements changing to anticlastic portions ll of gradually increasing height, the .unit spacing of the elements being maintained constant.
Beyond the upper edges of'the flanges l1, l8 the walls of each element become parallel, as illustrated in Fig. 7, and merge with the parallel side walls 10, H of the upper or tubular portions of the element. At this juncture of the base portions with the tubular portions it is necessary to close the openings at the rear of the unit, and this is efiected by carrying the bottom wall of the closure 23 up along the back of the unit as shown at 25, the Joint-between the elements and the flat sheet 25 being completed and sealed by welds, as indicated at 26 in Fig. 7.
The sides of the unit are closed by plates 21 provided with openings 28 through which air to be heated may enter the ends of a blower rotor, not illustrated, the perimeter of which is indi-: cated at 29.
An unheated part of the scroll of this blower is constituted by a metal sheet 30 which is welded at one end to the transversely flat toe edges 20 of the heat exchange elements, and extends upwardly with spiral curvature to the cutofl 3|, from which a bent back portion 32 extends to an air conduit wall 33, thereby forming a braced support for the upper end of the scroll. The heated part of the scroll is constituted by the base portions of the heat exchange elements joined together aspreviously described. The effective curvature of this portion of the scroll is somewhere between that of the radially inner and outer portions of the base. For more detailed description of the action and effect of this type of scroll reference may be had to my copending application Ser. No. 479,892, filed March 20, 1943.
The tubular portions of the elements extend upwardly and preferably diagonally through an air conduit, the front wall 33 of which has been referred to above. This conduit may have a rear wall 34 and side walls (not illustrated), flush with the side plates 21. Air delivered by the blower flows over the highly heated base portions of the elements, being guided by the curvature of the latter transversely and longitudinally of the tubular conductors. I
In order that a heating unit such as described may be assembled and handled as a rigid entity it is desirable to rigidly interconnect the upper extremities of the tubular conductors. For this purpose I may form each half of a tubular conductor at its upper extremity with a flange 35 disposed to be parallel with the air conduit wall 33. These flanges are welded to a flat sheet metal frame 36 having openings 31 therethrough conforming to the openings at the upper extremities of the conductors. A removable apron 38 may be so positioned as to cover the lower parts of V ments may be cleaned by introducing a brush through the front end of the combustion chamber 24. When the heating unit is installed in a furnace the frame 96 is welded to the conduit wall 33, with which may be connected 0. flue Having thus described my invention, I claim:
1. A sheet metal heat exchange element for the purpose described, symmetrical about a central plane, a portion of said element being formed to constitute a tubular conductor with a cross section elongated in the direction of said plane, and a portion extending laterally thereof and transversely therefrom to form an ofiset base for connection with the bases of similar elements, said base portion comprising a warped surface extending divergently from said tubular conductor and thence transversely beyond the conductor, and comprising also an intermediate portion of substantial area having divergently related walls effecting anticlastic characteristics merged with the tubular conductor and said walls having gradually increasing divergence decreasing in height away from said conductor until attaining disposition in a straight laterally extendir line.
purpose described, symmetrical about a central plane, a portion of said element being formed to constitute a tubular conductor with a cross section elongated in the direction of said plane, and a portion extending laterally thereof and transversely therefrom to form an ofiset base having down-turned flanges adapted for connection with the bases of similar elements, said base comprising a warped surface having divergently related walls which increase in divergence as they recede from saidconductor.
3. A sheet metal heat, exchange element for the purpose described, and formed to constitute a tubular conductor symmetrical about a central plane with a cross section elongated in the direction of said plane, with a base for connection with the bases of similar elements, and having divergently related walls of curved outline merged with the tubular conductor, said walls having gradually increasing divergence along said curved outline of said base until attaining disposition in a straight laterally extending line at one extremity.
, FRANK R. HIGLEY.
REFERENCES CITED UNITED STATES PATENTS Number Name Date 924,409 Wood June 8, 1909 1,636,958 Harter July 26, 1927 1,877,905 Le Grand Sept. 20. 1932 2,092,835 Edwards Sept. 14, 1937 2,321,110 Shipman June 8, 1943
US510862A 1943-11-19 1943-11-19 Heat exchange element Expired - Lifetime US2444825A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3140706A (en) * 1960-07-11 1964-07-14 Carrier Corp Air heating apparatus
US3527292A (en) * 1967-12-15 1970-09-08 Washington Eng Ltd Recirculating thermosyphonic heat exchangers

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US924409A (en) * 1908-11-16 1909-06-08 Underfeed Stoker Co Ltd Apparatus for heating air or other gases.
US1636958A (en) * 1922-08-07 1927-07-26 Babcock & Wilcox Co Heat-transfer device
US1877905A (en) * 1932-09-20 Poration
US2092835A (en) * 1936-07-07 1937-09-14 Kenneth P Edwards Heat exchange device
US2321110A (en) * 1936-08-25 1943-06-08 Servel Inc Heat exchanger

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1877905A (en) * 1932-09-20 Poration
US924409A (en) * 1908-11-16 1909-06-08 Underfeed Stoker Co Ltd Apparatus for heating air or other gases.
US1636958A (en) * 1922-08-07 1927-07-26 Babcock & Wilcox Co Heat-transfer device
US2092835A (en) * 1936-07-07 1937-09-14 Kenneth P Edwards Heat exchange device
US2321110A (en) * 1936-08-25 1943-06-08 Servel Inc Heat exchanger

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3140706A (en) * 1960-07-11 1964-07-14 Carrier Corp Air heating apparatus
US3527292A (en) * 1967-12-15 1970-09-08 Washington Eng Ltd Recirculating thermosyphonic heat exchangers

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