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EP0902869B1 - Echangeur de chaleur combine, incorpore - Google Patents

Echangeur de chaleur combine, incorpore Download PDF

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Publication number
EP0902869B1
EP0902869B1 EP97923327A EP97923327A EP0902869B1 EP 0902869 B1 EP0902869 B1 EP 0902869B1 EP 97923327 A EP97923327 A EP 97923327A EP 97923327 A EP97923327 A EP 97923327A EP 0902869 B1 EP0902869 B1 EP 0902869B1
Authority
EP
European Patent Office
Prior art keywords
heat exchanger
ducts
tap water
central heating
water ducts
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
EP97923327A
Other languages
German (de)
English (en)
Other versions
EP0902869A1 (fr
Inventor
Marinus Antonius Megens
Giovanni Jahier
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.)
Unical AG SpA
APPARATENFABRIEK WARMTEBOUW BV
Original Assignee
Unical AG SpA
APPARATENFABRIEK WARMTEBOUW BV
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 Unical AG SpA, APPARATENFABRIEK WARMTEBOUW BV filed Critical Unical AG SpA
Publication of EP0902869A1 publication Critical patent/EP0902869A1/fr
Application granted granted Critical
Publication of EP0902869B1 publication Critical patent/EP0902869B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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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
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • F24H1/48Water heaters for central heating incorporating heaters for domestic water
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D7/00Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
    • F28D7/0066Multi-circuit heat-exchangers, e.g. integrating different heat exchange sections in the same unit or heat-exchangers for more than two fluids
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D7/00Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
    • F28D7/0066Multi-circuit heat-exchangers, e.g. integrating different heat exchange sections in the same unit or heat-exchangers for more than two fluids
    • F28D7/0083Multi-circuit heat-exchangers, e.g. integrating different heat exchange sections in the same unit or heat-exchangers for more than two fluids with units having particular arrangement relative to a supplementary heat exchange medium, e.g. with interleaved units or with adjacent units arranged in common flow of supplementary heat exchange medium

Definitions

  • the present invention relates to a combined heat exchanger for heating tap water and central heating water by means of hot gases, comprising tap water ducts and central heating water ducts.
  • Such combined heat exchangers are generally known, this in the form of heat exchangers manufactured from copper pipes. There are herein always two separate pipes, wherein one of the pipes forms a duct for tap water and the other pipe forms the duct for central heating water.
  • a combined heat exchanger for heating tap water and central heating water by means of hot gases comprising tap water ducts and central heating water ducts, by which the tap water ducts and the central heating water ducts are incorporated in a single heat exchanger body is known.
  • the central heating water ducts are arranged in a first plane and the tap water ducts are arranged in a second plane, located further from the ducts for the flue gases.
  • the transfer of heat to the tap water ducts is thus not optimal, the more as the tap water ducts comprise a separate pipe embedded in the body of the heat exchanger.
  • the aim of the invention is the avoiding of those problems.
  • the heat exchanger body is manufactured from aluminium or an alloy containing aluminium and the tap water ducts are provided with an internal layer.
  • aluminium enables a further decrease in the flue gas temperatures; possible condensation moisture formed when the dew point is reached does not adversely affect the aluminium.
  • Ducts for tap water may not come into contact with aluminium, this being prevented by applying the internal layer, which is manufactured for instance from Teflon.
  • FIG. 1 Shown in figure 1 is a heat exchanger which is designated as a whole with 1. Such a heat exchanger is for instance used in a so-called combination boiler for combined heating of central heating water and tap water.
  • the heat exchanger 1 comprises a heat exchanger body 2 for instance cast from aluminium and a burner which is designated with 3.
  • the burner 3 is of course provided with various auxiliary provisions, such as pre-mix taps and the like, although since they do not form the subject of the present invention they are not shown in the drawing.
  • the burner 3 is provided with burner openings 4 and the flames and flue gases exiting therefrom are guided along the heat exchanger body 2 by means of a guide plate 5.
  • the flue gases herein move in downward direction.
  • On arrival at the underside the relevant flue gases are guided under the heat exchanger body 2, wherein they are released on the other side of the heat exchanger body 2.
  • a basic body 6 to which the heat exchanger body 2 is fixed, as is guide plate 5.
  • the construction described thus far corresponds with usual heat exchangers.
  • the heat exchanger body is provided on its side facing the burner 3 with protrusions 7 whereby the heat-transferring surface is enlarged.
  • Protrusions 7 herein take a shortened form at the position of the burner in respect of the temperatures prevailing there.
  • the guide plate is also provided there with an internal covering 8 of heat-resistant material.
  • ducts 9 for central heating water and ducts 10 for tap water are arranged alternating in the heat exchanger body 2.
  • a possibility is thus hereby provided of simultaneously being able to heat tap water by means of tap water ducts 10 as well as central heating water by means of central heating ducts 9, wherein the prior art drawbacks of applying two heat exchangers connected in cascade and the required high temperature of the flue gases associated therewith are avoided.
  • the tap water ducts are provided with an internal layer, for instance of Teflon, not shown in the drawings.
  • the heat exchanger body 2 is connected to a supply duct 11 for central heating water, in addition to an outlet duct 12 for central heating water and a supply duct 13 for tap water and an outlet duct 14 for tap water.
  • ducts 9,10 extend transversely of the flow direction of heating gases from the burner 3.
  • U-shaped guide pieces 15 are placed on the heat exchanger body 2; when applying the relevant casting techniques it is possible to cause the relevant changes in direction of the ducts to take place inside the actual casting, wherein the U-shaped pieces 15 are unnecessary.
  • the tap water ducts 10 and the central heating ducts 9 have the same diameter. It is not otherwise essential that this is the case; this depends of course on the relevant dimensioning of the boiler; the configuration will usually be such that the tap water ducts have a slightly smaller diameter than the central heating ducts.
  • FIG. 2 An example thereof is shown in figure 2.
  • the ducts 10 have a smaller dimension than the ducts 9 for heating the central heating water. It is also pointed out here that the surface of the ducts 10 which is directed toward the protrusions 7 from which the heat transfer takes place is smaller than the corresponding surface of central heating ducts 9. This results in a larger part of the heat transferred from the flue gases being supplied to the liquid flowing inside the central heating ducts 9.
  • FIG. 3 Another embodiment is shown in figure 3, wherein central heating ducts 9 and tap water ducts 10 both have a trapezium-shaped cross-section. However, adjacent trapezium shapes are herein turned relative to each other. This means that the heat-transferring surfaces of both types of duct differ only slightly from each other; the heat-transferring surface to the tap water ducts 10 is only a little smaller than that to the central heating water ducts 9.
  • the dimensioning of the ducts depends on the expected liquid pressure and flow rate.
  • the cross section of the tap water ducts 10 in figure 3 is much smaller however than that of the central heating water ducts 9, so that it is easier to reach a higher temperature in tap water ducts 10.
  • this geometry it can however be anticipated that on reaching a certain equilibrium temperature in tap water ducts 10 more heat transfer will take place to the liquid in the ducts 9.
  • figure 4 shows a diagram of a heat exchanger according to the invention.
  • the zigzag-shaped ducts are here incorporated in the body of the heat exchanger 2.
  • the tap water ducts 10 are designated with dashed lines and the central heating ducts 10 are designated with a full line.
  • the heating ducts for heating tap water 10 extend only over a part of the full height of the heat exchanger; this is also a question of dimensioning.
  • ducts 9 for heating central heating water do extend over the full height of the heat exchanger.
  • This embodiment further differs in that a short-circuit conduit 17 is arranged in the central heating circuit.
  • This short-circuit line 17 extends from the outlet side 12 for central heating water to the supply 11 for central heating water.
  • a pump 18 is arranged in this short-circuit line 17, while a three-way valve 19 is arranged for controlling the water stream flowing through the short-circuit line 17. It is however very well possible that by applying an accurate pump control of pump 18 and the use of a blocking pump 18 the three-way valve becomes unnecessary.
  • This configuration serves for the situation in which the central heating is not in use, for instance in the summer period, and wherein a large quantity of heated tap water is required. In such a situation it is conceivable that boiling of the water present in the central heating pipes 9 occurs, which must be prevented. Use is made for this purpose of the short-circuit line 17 and the pump included therein, with which the water in the central heating circuit can be circulated without heating the room areas.
  • the heat thus absorbed in ducts 9 is herein transferred to the tap water in an extra heat exchanger 20, thus obtaining a sufficient effectiveness of the supplied heat.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Details Of Fluid Heaters (AREA)
  • Fuel Cell (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Claims (13)

  1. Échangeur de chaleur mixte (1) pour chauffer de l'eau du robinet et de l'eau de chauffage central au moyen de gaz chauds, comprenant des conduits (10) d'eau du robinet et des conduits (9) d'eau de chauffage central, dans lequel les conduits (10) d'eau du robinet et les conduits (9) d'eau de chauffage central sont intégrés à un unique corps (2) d'échangeur de chaleur, caractérisé en ce que les conduits (10) d'eau du robinet et les conduits (9) d'eau de chauffage central sont agencés en alternance au moins dans une première partie du corps (2) de l'échangeur de chaleur.
  2. Échangeur de chaleur (1) selon la revendication 1, caractérisé en ce que le corps (2) de l'échangeur de chaleur comprend une deuxième partie munie seulement de conduits de chauffage central (9), dans lequel la deuxième partie, en regardant dans la direction d'écoulement des gaz de chauffe, est située en amont de la première partie.
  3. Échangeur de chaleur (1) selon la revendication 1 ou 2, caractérisé en ce que les conduits (9, 10) s'étendent substantiellement transversalement à la direction d'écoulement des gaz de chauffe.
  4. Échangeur de chaleur (1) selon la revendication 1, 2 ou 3, caractérisé en ce que le corps (2) de l'échangeur de chaleur est fabriqué en aluminium ou dans un alliage contenant de l'aluminium et les conduits d'eau du robinet (10) sont munis d'une couche intérieure (16).
  5. Échangeur de chaleur (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que les conduits d'eau du robinet (10) ont un diamètre inférieur à celui des conduits (9) d'eau de chauffage central.
  6. Échangeur de chaleur (1) selon l'une quelconque des revendications précédentes, caractérisé en ce que les conduits d'eau du robinet (10) ont chacun une surface de chauffage plus petite que celle des conduits (9) d'eau de chauffage central.
  7. Échangeur de chaleur (1) selon la revendication 6, caractérisé en ce que les conduits (9, 10) ont une section trapézoïdale et en ce que les conduits d'eau chaude (10) et les conduits d'eau de chauffage central (9) sont placés en alternance tournés les uns par rapport aux autres.
  8. Échangeur de chaleur (1) selon la revendication 7, caractérisé en ce que les conduits (10) d'eau du robinet sont placés avec leur petit côté de section en direction de la paroi chauffante.
  9. Échangeur de chaleur (1) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'un conduit de court-circuit (17) pour les conduits d'eau de chauffage central (9) est prévu, qui est reliée à l'échangeur de chaleur (1) par au moins une vanne trois voies (19), et en ce qu'une pompe (18) y est placée.
  10. Échangeur de chaleur (1) selon la revendication 9, caractérisé en ce que la pompe (18) est activée par le fait qu'une température de seuil de l'eau de chauffage central est dépassée.
  11. Échangeur de chaleur (1) selon la revendication 9, caractérisé en ce que la pompe (18) est activée en mettant en fonctionnement la source de chaleur (3) pour les gaz de chauffe.
  12. Échangeur de chaleur (1) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'un échangeur de chaleur supplémentaire (20) chauffé par le circuit de chauffage central (12) est intégré au circuit d'eau du robinet.
  13. Chaudière pour le chauffage combiné d'eau de chauffage central et d'eau du robinet, caractérisée par un échangeur de chaleur selon l'une quelconque des revendications précédentes.
EP97923327A 1996-05-28 1997-05-22 Echangeur de chaleur combine, incorpore Expired - Lifetime EP0902869B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
NL1003215 1996-05-28
NL1003215A NL1003215C2 (nl) 1996-05-28 1996-05-28 Uit een geheel bestaande, gecombineerde warmtewisselaar.
PCT/NL1997/000288 WO1997045681A1 (fr) 1996-05-28 1997-05-22 Echangeur de chaleur combine, incorpore

Publications (2)

Publication Number Publication Date
EP0902869A1 EP0902869A1 (fr) 1999-03-24
EP0902869B1 true EP0902869B1 (fr) 2000-09-13

Family

ID=19762930

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97923327A Expired - Lifetime EP0902869B1 (fr) 1996-05-28 1997-05-22 Echangeur de chaleur combine, incorpore

Country Status (5)

Country Link
EP (1) EP0902869B1 (fr)
AT (1) ATE196355T1 (fr)
DE (1) DE69703106T2 (fr)
NL (1) NL1003215C2 (fr)
WO (1) WO1997045681A1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101029801B (zh) * 2007-04-02 2010-04-21 张伟 防垢型逆流式排管换热器
EP2072931A3 (fr) 2007-12-21 2012-04-04 A.M. S.R.L. Échangeur de chaleur particulièrement adapté pour la construction de chaudières de chauffage de type à condensation haute efficacité
NL2011960C2 (nl) * 2013-12-13 2015-06-16 Intergas Heating Assets B V Warmtewisselaar, verwarmingsinrichting, verwarmingssysteem en werkwijze voor de toepassing daarvan.
EP2896920A1 (fr) * 2014-01-17 2015-07-22 Daikin Europe N.V. Échangeur de chaleur et chauffage comprenant l'échangeur de chaleur
CN104776734A (zh) 2015-04-01 2015-07-15 威能(无锡)供热设备有限公司 热交换器及采用该热交换器的燃气锅炉

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE8530184U1 (de) * 1985-10-22 1986-05-07 Joh. Vaillant Gmbh U. Co, 5630 Remscheid Wasserheizgerät
IT1253145B (it) * 1991-12-09 1995-07-10 Dispositivo scambiatore di calore rapido per fluidi
NL9202045A (nl) * 1992-11-24 1994-06-16 Intergas B V Verwarmingstoestel.

Also Published As

Publication number Publication date
ATE196355T1 (de) 2000-09-15
WO1997045681A1 (fr) 1997-12-04
DE69703106D1 (de) 2000-10-19
NL1003215C2 (nl) 1997-12-03
DE69703106T2 (de) 2001-05-03
EP0902869A1 (fr) 1999-03-24

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