US2699322A - Heat exchanger - Google Patents
Heat exchanger Download PDFInfo
- Publication number
- US2699322A US2699322A US180380A US18038050A US2699322A US 2699322 A US2699322 A US 2699322A US 180380 A US180380 A US 180380A US 18038050 A US18038050 A US 18038050A US 2699322 A US2699322 A US 2699322A
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- US
- United States
- Prior art keywords
- elements
- heating
- air
- heat exchanger
- pipes
- 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
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28D—HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
- F28D9/00—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
- F28D9/0012—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the apparatus having an annular form
- F28D9/0018—Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the apparatus having an annular form without any annular circulation of the heat exchange media
-
- Y—GENERAL 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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10S—TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10S165/00—Heat exchange
- Y10S165/051—Heat exchange having expansion and contraction relieving or absorbing means
Definitions
- Another object of the invention is to ring elements which have effective means therein for passage of heating fluid thereto and removalv of incondensahle gases and any liquid condensates from such heating means.
- Fig. 1 is a vertical section through apparatus embodying the principles of the invention, which section is taken on line 1-1 of Fig. 7;
- Fig. 2 is a plan view of one of the of the invention.
- Figs. 3, 4 and 5 are vertical sections taken onlines 33, 44 and 5-5 of Fig. 2;
- Fig. 6 is a partially broken away enlarged vertical section taken on line 6-6 of Fig. 2;
- Fig. 7 is a plan of the apparatus of Fig. 1.
- each of the ring elements 3 through 11 is provided with an whereas an inner wall 15 of each of the heating ring elements is corrugated with the corrugations extending annularly around the element to give same maximum strength against collapse.
- the inner and outer walls 14 and 15 are spaced from each other by means of top and bottom rings or members 16 and 17, respectively, each of which is inclined in :a direction towards the center of the heating element in a direction of from top to bottom thereof.
- Members 17 extend 19-15 provided for each of the heating elem I nts Figs 3' through 6 of the drawings best show the construction of an individual heat transfer ring element and all" elements 3 through 11 are of sirnilar cotistruction.
- the air and gas'return' pipes 18 and con'densate'returh pipes 19 all extend only approximately around the circumference of the different elements.
- the condensate return pipes 19 form a bottom portion in" th'esection of the heating which it is positioned and cornbines with the bottom member 17 to complete that portion of the ring element.
- the air and gas return pipes 18 only replace a portion of the top member 16 in the different heating ring elements, all as bestshown in'Figs. 3 through 6 of the drawings. It also should be noted that the inner and outer walls wardly from the bottom 13.
- FIG. 6 of the drawing best shows that the inlet ends of both the air and gas return pipe 18 and condensate pipe 19 are connected by a pipe 40 which has apertures 29 and 30, respectively, provided in the upper and lower portions thereof for passage of excess steam, air or gas, and condensate into the pipes 18 and 19 respectively for passage from the evaporator of the In order to prevent the non-condensable gases from mixing with the steam entering a separate air and 34, within the elements, aid in holding the return tubes 31 in position.
- Rods 41 may be secured in the upper portions of the ring elements to complete the rings started by the air and steam return pipes 18.
- bracket 26 it might be desirable to position only alternate elements bracket 26, or other supports may be provided for the ring elements to permit movement of same with relation to the fixed supply and exhaust pipes positioning one portion thereof.
- a heat exchanger comprising a container, a hollow sleeve-type heating element positioned in said container, means for supplying heating fluid to the said element, said heating fluid supply means comprising only one inlet pipe that connects to said element, said inlet pipe and the portions of the said element connected thereto being immovably positioned, and a fixedly positioned drain pipe connected to said element circumferentially adjacent the said inlet pipe; said heating element including an air and gas return tube at its upper margin, a condensate return tube at its lower margin, both of such tubes being of approximately 180 in peripheral extent with relation to the said heating element margins and being open only adjacent their ends, the discharge end of each condensate return tube extending to a point adjacent said drain pipe and the inlet end of each such tube connecting to the interior of said element, and a gas and air discharge pipe positioned in said drain pipe and connegted to the discharge end of said'air and gas return tu e.
- a heat exchanger comprising a container, a plurality of concentric radially-spaced hollow-sleeve type separate heating elements positioned in said container, said elements each having a smooth cylindrical outer wall and a corrugated inner wall, fixedly positioned means for supplying heating fluid to the said elements, and drain means immediately circumferentially adjacent said heating fiuid supply means for withdrawing spent heating fluid from said elements; said heating fluid supply means and said drain means comprising steam pipes that connect to said elements, a fixedly positioned drain pipe connected to each of said elements adjacent the one of the said steam pipes connected thereto, and slide means for supporting other circumferential portions of each of said elements is provided to permit expansion and contraction of said elements.
- a heat exchanger comprising a tank, a plurality of concentric hollow sleeve-like heating elements in said tank, fixedly positioned inlet means and fixedly positioned drain means for said heating elements secured to circumferentially adjacent portions of and supporting each of said heating elements, slide means adjustably supporting said heating elements at portions of said elements circumferentially spaced from said inlet means and said drain means, an air and gas return tube at the upper margin of each of said heating elements and operatively connecting at one end to the interior of said heating element substantially diametrically opposite to said inlet means, outlet meansconnecting to said air and gas return tube, and a condensate return tube at the bottom of each of said heating elements and 0peratively connecting at one end to the interior of said heating elements substantially diametrically opposite to said inlet means, the opposite ends of said condensate return tubes connecting to said drain means.
- each of said heating elements has an air and gas return tube at its upper margin and a condensate return tube at its lower margin, both of such tubes in each element being of approximately in peripheral extent with relation to the said heating element margins and being open only adjacent their ends, one end of each condensate return tube connecting to said drain pipe and one end of each said air and gas return tube, the other ends of said condensate return tubes communicating to the interior of said element, and outlet means connecting to the other end of said air and gas return tube.
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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
Jamil, 1955 Filed Aug. 19, 1950 H. H. FELDSTEIN ,699 322 HEAT Excmmcza 4 Sheets-Sheet I,
.l I 4 a" a" 7x910 INVENTOR. N N flS/YIPV MAE-(0.9mm
v wMr fwd Arrapzwgys Jan. 11, 1955 H. H. FELDSTEIN HEAT EXCHANGER 4 Sheets-Sheet 2 Filed Aug. 19, 1950 L N L I 5 IWVENTOR. flew/b M/ aasrsm Jan. 11, 1955 H. H'. FELDSTEIN HEAT EXCHANGER Filed Aug. 19, 1950 4 Sheets-Sheet" 3 JNVENTOR. flE/VIPY 6- Fa oars/w BY 2am BW A Tree/vs ya Jan. 11, 1955 H. H. FELDSTEIN 2,699,322
HEAT EXCHANGER Filed Aug. 19, 1950 4 Sheets-Sheet 4 INVENTOR. Hen/FY A! Faosrsuv BY law? Arr- Nays Another object of the invention is United States Patent OfiFice 2,699,322 Ratented Jan. 11, 1955 HEAT .EXCHANGER Henry H. Feldsteln, Cleveland, Ohio Application August 19,.1950, Serial bio-180,380 4 Claims. (Cl. 25728) The invention relates to ev-aporators and similar structures, particularly to apparatus adapted to receive a liquid substance therein for transmitting quantitiesof heat there to, or for withdrawing heat therefrom, which apparatus may have a vacuum set up therein.
The
ra-tus which is of maximum strength with use of a minimum amount of material.
to provide an evaporator wherein a plurality of concentric heating ring elements elements are supported .upon supports to. permit ready elements with increases or decreases in the diameters thereof due to thermal expansion or contraction.
Another object of the invention is to ring elements which have effective means therein for passage of heating fluid thereto and removalv of incondensahle gases and any liquid condensates from such heating means.
Yet another at minimum cost. The foregoing made more apparent as the specification proceeds.
are provided and wherein portions of such ring provide heating p For a better understanding of the invention, attention is directed to the accompanyingdrawings, wherein:
Fig. 1 is a vertical section through apparatus embodying the principles of the invention, which section is taken on line 1-1 of Fig. 7;
Fig. 2 is a plan view of one of the of the invention;
Figs. 3, 4 and 5 are vertical sections taken onlines 33, 44 and 5-5 of Fig. 2;
Fig. 6 is a partially broken away enlarged vertical section taken on line 6-6 of Fig. 2; and
Fig. 7 is a plan of the apparatus of Fig. 1.
Corresponding numerals will be used to refer to corresponding parts in the drawings and specification whereheating elements Reference now should be had to the details of the struc ture shown in the drawings and an evaporator is indicated 13 that is inverted frusto-conical shape.
As an important feature of the present invention, each of the ring elements 3 through 11 is provided with an whereas an inner wall 15 of each of the heating ring elements is corrugated with the corrugations extending annularly around the element to give same maximum strength against collapse. The inner and outer walls 14 and 15 are spaced from each other by means of top and bottom rings or members 16 and 17, respectively, each of which is inclined in :a direction towards the center of the heating element in a direction of from top to bottom thereof. Members 17 extend 19-15 provided for each of the heating elem I nts Figs 3' through 6 of the drawings best show the construction of an individual heat transfer ring element and all" elements 3 through 11 are of sirnilar cotistruction.
The air and gas'return' pipes 18 and con'densate'returh pipes 19 all extend only approximately around the circumference of the different elements. The condensate return pipes 19 form a bottom portion in" th'esection of the heating which it is positioned and cornbines with the bottom member 17 to complete that portion of the ring element. The air and gas return pipes 18 only replace a portion of the top member 16 in the different heating ring elements, all as bestshown in'Figs. 3 through 6 of the drawings. It also should be noted that the inner and outer walls wardly from the bottom 13.
Drain tubes individually and extend Fig. 6 of the drawing best shows that the inlet ends of both the air and gas return pipe 18 and condensate pipe 19 are connected by a pipe 40 which has apertures 29 and 30, respectively, provided in the upper and lower portions thereof for passage of excess steam, air or gas, and condensate into the pipes 18 and 19 respectively for passage from the evaporator of the In order to prevent the non-condensable gases from mixing with the steam entering a separate air and 34, within the elements, aid in holding the return tubes 31 in position. Rods 41 may be secured in the upper portions of the ring elements to complete the rings started by the air and steam return pipes 18. v
It will be appreciated that the ends or discharge portions of both the air and gas return pipes and condensate pipes 18 and 19 will be lower than the inlet ends thereof to facilitate flow of liquid or fluid through the discharge ends thereof.
it might be desirable to position only alternate elements bracket 26, or other supports may be provided for the ring elements to permit movement of same with relation to the fixed supply and exhaust pipes positioning one portion thereof.
By positioning the individual heating elements in the apparatus in the manner indicated, and by the construction disclosed, it is possible to provide a sturdy evaporator device which can be constructed at a minimum of expense and by the use of a minimum amount of material whereby it is submitted that the objects of the invention have been achieved.
While one complete embodiment of the invention has been disclosed herein, it will be appreciated that modification of this particular embodiment of the invention may be resorted to without departing from the scope of the invention as defined by the appended claims.
Having thus described my invention, what I claim is:
1. A heat exchanger comprising a container, a hollow sleeve-type heating element positioned in said container, means for supplying heating fluid to the said element, said heating fluid supply means comprising only one inlet pipe that connects to said element, said inlet pipe and the portions of the said element connected thereto being immovably positioned, and a fixedly positioned drain pipe connected to said element circumferentially adjacent the said inlet pipe; said heating element including an air and gas return tube at its upper margin, a condensate return tube at its lower margin, both of such tubes being of approximately 180 in peripheral extent with relation to the said heating element margins and being open only adjacent their ends, the discharge end of each condensate return tube extending to a point adjacent said drain pipe and the inlet end of each such tube connecting to the interior of said element, and a gas and air discharge pipe positioned in said drain pipe and connegted to the discharge end of said'air and gas return tu e.
2. A heat exchanger comprising a container, a plurality of concentric radially-spaced hollow-sleeve type separate heating elements positioned in said container, said elements each having a smooth cylindrical outer wall and a corrugated inner wall, fixedly positioned means for supplying heating fluid to the said elements, and drain means immediately circumferentially adjacent said heating fiuid supply means for withdrawing spent heating fluid from said elements; said heating fluid supply means and said drain means comprising steam pipes that connect to said elements, a fixedly positioned drain pipe connected to each of said elements adjacent the one of the said steam pipes connected thereto, and slide means for supporting other circumferential portions of each of said elements is provided to permit expansion and contraction of said elements.
3. A heat exchanger comprising a tank, a plurality of concentric hollow sleeve-like heating elements in said tank, fixedly positioned inlet means and fixedly positioned drain means for said heating elements secured to circumferentially adjacent portions of and supporting each of said heating elements, slide means adjustably supporting said heating elements at portions of said elements circumferentially spaced from said inlet means and said drain means, an air and gas return tube at the upper margin of each of said heating elements and operatively connecting at one end to the interior of said heating element substantially diametrically opposite to said inlet means, outlet meansconnecting to said air and gas return tube, and a condensate return tube at the bottom of each of said heating elements and 0peratively connecting at one end to the interior of said heating elements substantially diametrically opposite to said inlet means, the opposite ends of said condensate return tubes connecting to said drain means.
4. A heat exchanger as in claim 2 wherein each of said heating elements has an air and gas return tube at its upper margin and a condensate return tube at its lower margin, both of such tubes in each element being of approximately in peripheral extent with relation to the said heating element margins and being open only adjacent their ends, one end of each condensate return tube connecting to said drain pipe and one end of each said air and gas return tube, the other ends of said condensate return tubes communicating to the interior of said element, and outlet means connecting to the other end of said air and gas return tube.
References Cited in the file of this patent UNITED STATES PATENTS
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US180380A US2699322A (en) | 1950-08-19 | 1950-08-19 | Heat exchanger |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US180380A US2699322A (en) | 1950-08-19 | 1950-08-19 | Heat exchanger |
Publications (1)
Publication Number | Publication Date |
---|---|
US2699322A true US2699322A (en) | 1955-01-11 |
Family
ID=22660246
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US180380A Expired - Lifetime US2699322A (en) | 1950-08-19 | 1950-08-19 | Heat exchanger |
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US (1) | US2699322A (en) |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2861781A (en) * | 1955-05-31 | 1958-11-25 | Joseph F Woerner | Heat exchange apparatus |
US2960449A (en) * | 1956-02-06 | 1960-11-15 | American Mach & Foundry | Apparatus for distilling sea water |
US2990162A (en) * | 1957-01-28 | 1961-06-27 | Griscom Russell Co | Heat exchanger construction |
US3251397A (en) * | 1962-12-17 | 1966-05-17 | Lens Leonard Joseph | Multiple effect evaporator of the single horizontal body, nested shell type |
US4852640A (en) * | 1986-03-28 | 1989-08-01 | Exothermics-Eclipse Inc. | Recuperative heat exchanger |
US5524706A (en) * | 1991-05-30 | 1996-06-11 | Takeda Chemical Industries, Ltd. | Freeze-thawing tank assembly |
US20120125574A1 (en) * | 2004-02-03 | 2012-05-24 | Stijn Jozef Rita Johanna Janssens | Heat exchanger |
Citations (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19649C (en) * | A. KUX in Berlin W., Kielganstr. 2 | Innovations in vacuum evaporation devices | ||
US314003A (en) * | 1885-03-17 | Process of purifying water | ||
FR338603A (en) * | 1903-12-31 | 1904-05-30 | Des Forges Et Chantiers De La Mediterranee | Improvements to devices for evaporating or concentrating liquids |
US953607A (en) * | 1909-05-24 | 1910-03-29 | August Graentzdoerffer | Radiator for vacuum-pans. |
US1028792A (en) * | 1910-12-28 | 1912-06-04 | Sanborn Evaporator Company | Evaporating apparatus. |
GB140635A (en) * | 1919-05-03 | 1920-04-01 | Herbert Willmott Taylor | Improvements in tubular heating appliances of vacuum pans and other liquid heating apparatus |
US1650122A (en) * | 1925-09-18 | 1927-11-22 | Grantzdorffer August | Vacuum pan |
DE642052C (en) * | 1937-02-20 | Arthur Schoke | Heating chamber with ring-shaped interrupted hollow bodies | |
US2117337A (en) * | 1934-11-03 | 1938-05-17 | Lobl Karel | Evaporator |
US2136086A (en) * | 1936-02-01 | 1938-11-08 | Rosenblads Patenter Ab | Heat exchangers |
US2473641A (en) * | 1945-03-26 | 1949-06-21 | Henry H Feldstein | Evaporator |
-
1950
- 1950-08-19 US US180380A patent/US2699322A/en not_active Expired - Lifetime
Patent Citations (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19649C (en) * | A. KUX in Berlin W., Kielganstr. 2 | Innovations in vacuum evaporation devices | ||
US314003A (en) * | 1885-03-17 | Process of purifying water | ||
DE642052C (en) * | 1937-02-20 | Arthur Schoke | Heating chamber with ring-shaped interrupted hollow bodies | |
FR338603A (en) * | 1903-12-31 | 1904-05-30 | Des Forges Et Chantiers De La Mediterranee | Improvements to devices for evaporating or concentrating liquids |
US953607A (en) * | 1909-05-24 | 1910-03-29 | August Graentzdoerffer | Radiator for vacuum-pans. |
US1028792A (en) * | 1910-12-28 | 1912-06-04 | Sanborn Evaporator Company | Evaporating apparatus. |
GB140635A (en) * | 1919-05-03 | 1920-04-01 | Herbert Willmott Taylor | Improvements in tubular heating appliances of vacuum pans and other liquid heating apparatus |
US1650122A (en) * | 1925-09-18 | 1927-11-22 | Grantzdorffer August | Vacuum pan |
US2117337A (en) * | 1934-11-03 | 1938-05-17 | Lobl Karel | Evaporator |
US2136086A (en) * | 1936-02-01 | 1938-11-08 | Rosenblads Patenter Ab | Heat exchangers |
US2473641A (en) * | 1945-03-26 | 1949-06-21 | Henry H Feldstein | Evaporator |
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2861781A (en) * | 1955-05-31 | 1958-11-25 | Joseph F Woerner | Heat exchange apparatus |
US2960449A (en) * | 1956-02-06 | 1960-11-15 | American Mach & Foundry | Apparatus for distilling sea water |
US2990162A (en) * | 1957-01-28 | 1961-06-27 | Griscom Russell Co | Heat exchanger construction |
US3251397A (en) * | 1962-12-17 | 1966-05-17 | Lens Leonard Joseph | Multiple effect evaporator of the single horizontal body, nested shell type |
US4852640A (en) * | 1986-03-28 | 1989-08-01 | Exothermics-Eclipse Inc. | Recuperative heat exchanger |
US5524706A (en) * | 1991-05-30 | 1996-06-11 | Takeda Chemical Industries, Ltd. | Freeze-thawing tank assembly |
US20120125574A1 (en) * | 2004-02-03 | 2012-05-24 | Stijn Jozef Rita Johanna Janssens | Heat exchanger |
US8851155B2 (en) * | 2004-02-03 | 2014-10-07 | Atlas Copco Airpower, Naamloze Vennootschap | Heat exchanger |
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