US2101782A - Heat exchange apparatus - Google Patents

Heat exchange apparatus Download PDF

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Publication number
US2101782A
US2101782A US107831A US10783136A US2101782A US 2101782 A US2101782 A US 2101782A US 107831 A US107831 A US 107831A US 10783136 A US10783136 A US 10783136A US 2101782 A US2101782 A US 2101782A
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United States
Prior art keywords
tubes
heat exchange
exchange apparatus
section
kuhner
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Expired - Lifetime
Application number
US107831A
Inventor
Max H Kuhner
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Riley Power Inc
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Riley Power Inc
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Publication date
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Priority to US107831A priority Critical patent/US2101782A/en
Application granted granted Critical
Publication of US2101782A publication Critical patent/US2101782A/en
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Expired - Lifetime legal-status Critical Current

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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
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/02Tubular elements of cross-section which is non-circular
    • F28F1/025Tubular elements of cross-section which is non-circular with variable shape, e.g. with modified tube ends, with different geometrical features
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0219Arrangements for sealing end plates into casing or header box; Header box sub-elements
    • F28F9/0221Header boxes or end plates formed by stacked elements
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S165/00Heat exchange
    • Y10S165/454Heat exchange having side-by-side conduits structure or conduit section
    • Y10S165/468Core formed by stack tubular members with abutting edges

Definitions

  • This invention relates to heat exchange apparatus, and more particularly to apparatus of the type having tubes through which a fluid flows in heat exchange relation to a second fluid, the latter flowing through the spaces between the tubes.
  • Fig. l is a vertical section through a heat exchange apparatus, the section being taken on the line 1-1 of Fig. 2;
  • Fig. 2 is a section on the line 2--2 of Fig. 1;
  • Fig. 3 is an enlarged fragmentary section on the line 3-3 of Fig. 2;
  • Fig. 4 is a fragmentary view similar to Fig. 2, showing a modified form of the invention.
  • Fig. 5 is a view similar to Fig. 4,, showing a further modification.
  • Figs. 1 to 3 comprises a series of upright metal tubes l0 arranged in a staggered formation.
  • Each tube is oval in cross-section except for its end portions, these being enlarged or flared into the shape of a hexagon as shown particularly in Fig. 2. This shape may be readily imparted to the tubes by a suitable pressing or forging operation.
  • the hexagonal portions of adjacent tubes are welded together, as
  • a rectangular frame It is provided at each end of the tubes, and the strips M are bolted to these frames.
  • Inlet and outlet ducts I8 and I9 respectively are connected to the frames 66 so that fluid may be caused to flow through the tubes.
  • a second fluid flows in contact with the outer surfaces of the tubes, and for this purpose suitable inlet and outlet ducts 2
  • upright plates (not shown) extend between the frames It to form the side walls of a passage connecting the ducts 2
  • one fluid flows through the tubes and the second fluid flows transversely of the tubes in contact with their outer surfaces.
  • the major axes of the oval tubes are arranged to extend in the general direction of travel of the second fluid. This results in a stream-line efiect whereby substantially the entire surface area of the tubes is utilized for heat transfer. Furthermore, the resistance to flow is decreased, and a large heat transfer surface can be installed in a comparatively small space. No tube sheets are required, and if desired all welding may be completed in the shop prior to shipment of the groups of tubes.
  • Fig. 4 I have shown a slightly modified construction utilizing tubes 25 of circular cross-section, the end portions of the tubes being flared into the shape of a regular hexagon.
  • Fig. 5 I have shown a further modification utilizing tubes 28 of circular cross-section, the end-portions of the tubes being flared into the shape of a square.
  • the tubes 28 are aligned in rows in both directions, as may be desirable in some cases.
  • the constructions in all three of the illustrated embodiments are the same except for the slight changes resulting from differences in the shape of the tubes.
  • Heat exchange apparatus comprising a series of parallel metal tubes arranged in a. plurality of groups and having their end portions enlarged into the shape of a polygon, the polygonal portions of adjacent tubes within each group being welded together, a metal strip extending around each group of tubes and welded to the polygonal portions thereof, and means to fasten together the strips of adjacent groups.

Description

Dec. 7, 1937.
M. H. KUHNER HEAT EXCHANGE APPARATUS 2 Sheets-Sheet 1 Filed Oct. 27, 1936 MAX H. KUHNER Dec. 7, 1937.
M. H. KUHNER HEAT EXCHANGE APPARATUS 2 Sheets-Sheet 2 Filed Oct. 27, 1936 mum-mu lulll nlll nouuum uuuu Swuwfoo MHY H. KUHNER Patented Dec. 7, 1937 NET ST PATENT OFFICE Riley Stoker Corporation, orcester,
a corporation of Massachusetts Application ()ctober 27, 1936, Serial No. 107,831
ll Claim.
This invention relates to heat exchange apparatus, and more particularly to apparatus of the type having tubes through which a fluid flows in heat exchange relation to a second fluid, the latter flowing through the spaces between the tubes.
Heretofore it has been the practice to support the ends of the tubes in metal plates known as tube sheets, the tubes being rolled or expanded into openings in the plates. Since the plates are weakened by a multiplicity of closely spaced openings, they must be of considerable thickness in order to withstand the load imposed upon them by the weight of the tubes. The plates are therefore expensive both by reason of the material required and also because of the many openings which must be machined. Moreover it is often desirable to utilize tubes of oval cross-section in order to reduce the resistance to the flow of fluid transversely of the tubes arid to obtain more efficient heat transfer, but it is diflicult to employ such tubes in apparatus as heretofore constructed.
It is accordingly one object of the invention to provide a heat exchange apparatus of the tubular type in which no tube sheets will be required.
It is a further object of the invention to provide a heat exchange apparatus of the tubular type which will be comparatively simple and inexpensive to manufacture and install.
It is a further object of the invention to provide a comparatively simple and inexpensive heat exchange apparatus having tubes of oval crosssection.
With these and other objects in view, as will be apparent to those skilled in the art, the invention resides in the combination of parts set forth in the specification and covered by the claim appended hereto.
Referring to the drawings illustrating one embodiment of the invention, andin which like ref-,
erence numerals indicate like parts,
Fig. l is a vertical section through a heat exchange apparatus, the section being taken on the line 1-1 of Fig. 2;
Fig. 2 is a section on the line 2--2 of Fig. 1;
Fig. 3 is an enlarged fragmentary section on the line 3-3 of Fig. 2;
Fig. 4 is a fragmentary view similar to Fig. 2, showing a modified form of the invention; and
Fig. 5 is a view similar to Fig. 4,, showing a further modification.
The embodiment illustrated in Figs. 1 to 3 comprises a series of upright metal tubes l0 arranged in a staggered formation. Each tube is oval in cross-section except for its end portions, these being enlarged or flared into the shape of a hexagon as shown particularly in Fig. 2. This shape may be readily imparted to the tubes by a suitable pressing or forging operation. The hexagonal portions of adjacent tubes are welded together, as
indicated by the broken lines H! in Fig. 2. to form A rectangular frame It is provided at each end of the tubes, and the strips M are bolted to these frames. Inlet and outlet ducts I8 and I9 respectively are connected to the frames 66 so that fluid may be caused to flow through the tubes. A second fluid flows in contact with the outer surfaces of the tubes, and for this purpose suitable inlet and outlet ducts 2| and 22 respectively are provided to communicate with the spaces between the tubes, these ducts being connected at the top and bottom to the frames 16. It will be understood that upright plates (not shown) extend between the frames It to form the side walls of a passage connecting the ducts 2| and 22.
It will be noted that one fluid flows through the tubes and the second fluid flows transversely of the tubes in contact with their outer surfaces. Moreover, the major axes of the oval tubes are arranged to extend in the general direction of travel of the second fluid. This results in a stream-line efiect whereby substantially the entire surface area of the tubes is utilized for heat transfer. Furthermore, the resistance to flow is decreased, and a large heat transfer surface can be installed in a comparatively small space. No tube sheets are required, and if desired all welding may be completed in the shop prior to shipment of the groups of tubes.
- In Fig. 4 I have shown a slightly modified construction utilizing tubes 25 of circular cross-section, the end portions of the tubes being flared into the shape of a regular hexagon. In Fig. 5 I have shown a further modification utilizing tubes 28 of circular cross-section, the end-portions of the tubes being flared into the shape of a square. The tubes 28 are aligned in rows in both directions, as may be desirable in some cases. The constructions in all three of the illustrated embodiments are the same except for the slight changes resulting from differences in the shape of the tubes.
Having thus described my invention. what I claim as new and desire to secure by Letters Patent is:
Heat exchange apparatus comprising a series of parallel metal tubes arranged in a. plurality of groups and having their end portions enlarged into the shape of a polygon, the polygonal portions of adjacent tubes within each group being welded together, a metal strip extending around each group of tubes and welded to the polygonal portions thereof, and means to fasten together the strips of adjacent groups.
MAX H. KUHNER.
US107831A 1936-10-27 1936-10-27 Heat exchange apparatus Expired - Lifetime US2101782A (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2415865A (en) * 1943-01-19 1947-02-18 United Aircraft Prod Method of making heat exchangers
US2441279A (en) * 1942-06-12 1948-05-11 Stewart Warner Corp Heat exchange method and apparatus
US2451786A (en) * 1945-01-30 1948-10-19 Tech Studien Ag Multitubular heat exchanger
US2487626A (en) * 1945-04-21 1949-11-08 Richard C Wittman Sectional heater
US2590465A (en) * 1944-11-14 1952-03-25 Griscom Russell Co Heat exchanger
DE2611397A1 (en) * 1975-03-19 1976-09-30 Akira Togashi PROCESS FOR SUMMARIZING AND HOLDING THE ENDS OF HEAT CONDUCTING TUBES OF HEAT EXCHANGERS AND HEAT EXCHANGERS MANUFACTURED BY THE METHOD
FR2495753A1 (en) * 1980-12-09 1982-06-11 Racecourse Co Operative Sugar HEAT EXCHANGER, AND APPARATUS COMPRISING SUCH AN EXCHANGER
EP0189608A1 (en) * 1984-12-24 1986-08-06 General Electric Company Heat exchanger
EP0218104A1 (en) * 1985-09-07 1987-04-15 Manfred Dipl.-Ing. Janosik Turbo heat exchanger
US20030164232A1 (en) * 2002-02-14 2003-09-04 Mitsubishi Heavy Industries Ltd. Structure of pipe plate unit for heat exchangers and method of replacement for the pipe plate unit
US20140234507A1 (en) * 2011-07-28 2014-08-21 Nestec Sa Methods and devices for heating or cooling viscous materials
US20210207753A1 (en) * 2018-05-09 2021-07-08 Hydac Technology Gmbh Damping device

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2441279A (en) * 1942-06-12 1948-05-11 Stewart Warner Corp Heat exchange method and apparatus
US2415865A (en) * 1943-01-19 1947-02-18 United Aircraft Prod Method of making heat exchangers
US2590465A (en) * 1944-11-14 1952-03-25 Griscom Russell Co Heat exchanger
US2451786A (en) * 1945-01-30 1948-10-19 Tech Studien Ag Multitubular heat exchanger
US2487626A (en) * 1945-04-21 1949-11-08 Richard C Wittman Sectional heater
DE2611397A1 (en) * 1975-03-19 1976-09-30 Akira Togashi PROCESS FOR SUMMARIZING AND HOLDING THE ENDS OF HEAT CONDUCTING TUBES OF HEAT EXCHANGERS AND HEAT EXCHANGERS MANUFACTURED BY THE METHOD
FR2495753A1 (en) * 1980-12-09 1982-06-11 Racecourse Co Operative Sugar HEAT EXCHANGER, AND APPARATUS COMPRISING SUCH AN EXCHANGER
EP0189608A1 (en) * 1984-12-24 1986-08-06 General Electric Company Heat exchanger
EP0218104A1 (en) * 1985-09-07 1987-04-15 Manfred Dipl.-Ing. Janosik Turbo heat exchanger
US20030164232A1 (en) * 2002-02-14 2003-09-04 Mitsubishi Heavy Industries Ltd. Structure of pipe plate unit for heat exchangers and method of replacement for the pipe plate unit
US6896042B2 (en) * 2002-02-14 2005-05-24 Mitsubishi Heavy Industries, Ltd. Structure of pipe plate unit for heat exchangers and method of replacement for the pipe plate unit
US20140234507A1 (en) * 2011-07-28 2014-08-21 Nestec Sa Methods and devices for heating or cooling viscous materials
US9803932B2 (en) * 2011-07-28 2017-10-31 Nestec Sa Methods and devices for heating or cooling viscous materials
US11064720B2 (en) 2011-07-28 2021-07-20 Société des Produits Nestlé S.A. Methods and devices for heating or cooling viscous materials
US11684077B2 (en) 2011-07-28 2023-06-27 Société des Produits Nestlé S.A. Methods and devices for heating or cooling viscous materials
US20210207753A1 (en) * 2018-05-09 2021-07-08 Hydac Technology Gmbh Damping device
JP7344216B2 (en) 2018-05-09 2023-09-13 ハイダック テクノロジー ゲゼルシャフト ミット ベシュレンクテル ハフツング shock absorber
US11885453B2 (en) * 2018-05-09 2024-01-30 Hydac Technology Gmbh Damping device

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