EP1271063B1 - Echangeur de chaleur, notamment plinthe chauffante - Google Patents

Echangeur de chaleur, notamment plinthe chauffante Download PDF

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Publication number
EP1271063B1
EP1271063B1 EP01114569A EP01114569A EP1271063B1 EP 1271063 B1 EP1271063 B1 EP 1271063B1 EP 01114569 A EP01114569 A EP 01114569A EP 01114569 A EP01114569 A EP 01114569A EP 1271063 B1 EP1271063 B1 EP 1271063B1
Authority
EP
European Patent Office
Prior art keywords
heat
lamella
pipes
exchange apparatus
exchange
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
EP01114569A
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German (de)
English (en)
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EP1271063A1 (fr
Inventor
Bruno Della Gaspera
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.)
Frog Srl/gmbh
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Individual
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 Individual filed Critical Individual
Priority to DE50101657T priority Critical patent/DE50101657D1/de
Priority to EP01114569A priority patent/EP1271063B1/fr
Priority to AT01114569T priority patent/ATE261568T1/de
Priority to PCT/EP2002/006726 priority patent/WO2002103246A2/fr
Priority to PCT/EP2002/006728 priority patent/WO2002103247A2/fr
Publication of EP1271063A1 publication Critical patent/EP1271063A1/fr
Application granted granted Critical
Publication of EP1271063B1 publication Critical patent/EP1271063B1/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
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/02Arrangement of mountings or supports for radiators
    • F24D19/04Arrangement of mountings or supports for radiators in skirtings

Definitions

  • the invention relates to a heat exchange device according to the preamble of Claim 1 and a method for producing a heat exchange register.
  • the heat exchange device according to the invention is preferably a heating device provided, and even more preferably as so-called baseboard heating.
  • the room can be, for example Living space or an office, but also a moving space such as the passenger compartment a bus or an airplane.
  • the heat exchange device is provided as a cooling device and is then preferred on or near a ceiling of the room to be cooled should be arranged.
  • a generic heat exchange device is known from EP 0 176 478 A1 known.
  • each Slat element has a slat section that is normal to the Extends tubes and through which both tubes run.
  • On the long sides of the Slat section is a cross section of the slat element in the right Angle bent.
  • the cross sections thus extend normal to the Slat sections and approximately parallel to the pipes.
  • One of the two Pipe serves as a flow pipe for the heating medium, the other as a return pipe.
  • the feed pipe initially heats up while the return pipe is still warming up stays relatively cool.
  • the pipes therefore expand to different extents, which means considerable mechanical tension is created in the lamella elements.
  • the cross sections of the lamella elements that are parallel to the tube axes can run in the direction of the relative movement of the pipes hardly deform.
  • the tension that occurs causes disturbing noises and reduce the life of the heat exchange device because of the Press fit connections between the lamella elements and the tubes strong Forces work. These forces lead to a loosening of the Press fit between the tubes and the lamellar elements and thus to one increased thermal resistance and reduced heating power.
  • this object is achieved in that in a heat exchange device the type mentioned at least one transverse section interrupted by an opening at a height between the tubes is to reduce tension in the lamella elements.
  • the invention Manufacturing process is used to manufacture a heat exchange register corresponding slat elements.
  • the invention is based on the knowledge that an important cause for the above mentioned problems of the prior art, the continuous cross sections are on the slat elements. These cross sections extend approximately parallel to the pipes and thus run in the same direction as the relative movement of the tubes through the thermal expansion or contraction. The cross sections therefore set this relative movement of the pipes a considerable amount Resistance, and considerable forces act on the cross sections, the lamella sections and the connection points to the pipes.
  • the cross sections at a height between the tubes interrupted the forces occurring are significantly reduced, though the extent of the relative movement of the pipes does not change.
  • the slat sections too are still deformed according to the relative movement; however, this is not a problem, because they are made of thin sheet metal Lamella sections extend transversely to the pipes and thus they deform Oppose only slight resistance in the direction of the pipe axes. In the areas of the lamella sections adjacent to the cross sections the deformation extends to an area near the openings of the cross sections.
  • the cross sections themselves are not or only slightly deformed.
  • the lamella elements according to the invention undergo a deformation such as that encountered when entering and leaving Switching off the heating or cooling occurs, oppose only slight resistance, the forces occurring are reduced considerably.
  • the connection the lamellar elements with the tubes are correspondingly significantly less loaded, which results in a good thermal conductivity of this connection over a long period Can be achieved throughout life. This applies regardless of whether the connection by a mere press fit or by soldering or welding or gluing is designed.
  • the invention avoids because the lamella elements according to the invention have a constant deformation with little Allow forces and thus generate no clicking or clicking noises.
  • the opening of each cross section is at a height between the pipes.
  • the term “height” here is the vertical projection the center of the opening on the connecting line of the centers of the pipe cross sections meant.
  • the base is located this projection between the two facing outer walls of the Tube; however, such configurations are also intended to be encompassed by the claims where the base of the projection is only between the centers of the Pipe cross sections.
  • the lamella sections extend transversely to the tubes, and the cross sections in turn run transversely to the lamella sections.
  • the term "cross" in both cases to understand an approximately normal or vertical arrangement, so that the The direction of the cross sections is approximately parallel to the direction of the pipes.
  • the term "transverse” should not be limited to a 90 ° angle, but also include arrangements in which the lamella sections are inclined to the tubes and / or the cross sections obliquely to the lamella sections are aligned.
  • each lamella element has two lamella sections and a transverse section which connects the two slat sections laterally.
  • Such a slat element has a U-shaped cross section. This arrangement is in the making particularly advantageous and maximizes the effective with little material Radiation area of the slat elements.
  • the tubes and the plurality of lamella elements preferably form one with the other Heat exchange register that can be attached to a wall profile using a support.
  • the carriers are preferably made of a flexible material (e.g. a Plastic). This configuration provides a further possibility for compensation for created the thermal expansion or contraction of the heat exchange register. Compared to a rigid mechanical attachment of the heat exchange register the material load on the wall profile becomes clear once again reduced.
  • the wall profile or an air guide profile attached to it at the top preferably one upper air duct section, which the flow rate of ascending warmed air reduced.
  • This measure firstly makes it electrostatic Charging (and thus contamination) of the wall on which the Heat exchanger is attached, prevented, and secondly, better Swirling of the heated air with the room air and thus an improved Heating effect achieved.
  • the wall profile preferably has a lower lip that prevents when cleaning, wash water in inaccessible areas under the heat exchange device runs and possibly leads to mold formation.
  • this has a Room facing cover profile on one of the previously mentioned components the heat exchange device is attached.
  • the cross sections are preferred the lamella elements are arranged towards the cover profile and stand with this in extensive contact. This measure ensures good heat transfer achieved from the lamella elements to the heat-conducting cover profile and thus the total radiation surface used by the heat exchange device significantly enlarged.
  • the cover profile is preferably relatively flat, so that it is transverse to its direction is bendable by at least 90 °. Then there are no special corner pieces for the cover profile required; but several heat exchange registers, e.g. on both sides of a corner of the room can be arranged with a continuous be closed according to the curved cover profile to the room.
  • the heat exchange device as a cooling device also the already mentioned lower lip can be provided to move from the heat exchange register Conducting dripping condensate into a gutter.
  • the cover profile is preferably made of heat-insulating Material formed in order to avoid being directed towards the interior of the room Side of the cover profile forms condensation.
  • the idea of a heat exchange device as a cooling device for mounting on a wall near the ceiling or to train directly on the ceiling, using means to catch of condensed water and / or a. insulating cover profile and / or a curtain track are considered as an independent invention.
  • Such cooling devices represent the transverse sections interrupted by openings the slat elements are a feature of preferred embodiments, but not an essential feature. Rather, the slat elements need such cooling devices have no cross sections, or the cross sections can be continuous (uninterrupted).
  • the heat exchange registers produced with it have the characteristics described above and / or the features defined in the device claims correspond. Furthermore, in a preferred continuation of the invention Process the heat exchange register thus produced on carriers and these in turn attached to a wall profile to be together with a cover profile a heat exchange device according to the device claims receive.
  • the heat exchange device shown in cross section in FIGS. 1 and 2 is as Heater, more specifically designed as a baseboard heater. She instructs Wall profile 10 on that in the fully assembled state of the heat exchange device is attached to a wall of a room to be heated with screws.
  • the Wall profile 10 consists of a heat-insulating plastic material. It stretches over the entire length (and, as shown in FIGS. 1 and 2, also over almost the entire height) of the heat exchange device and thus isolates the heat exchange device against undesirable heat loss to the wall out. Since the wall profile 10 is flat over the length of the heat exchange device extends, need when screwing the wall profile 10 to the wall no strictly specified attachment points are observed, but structural conditions can be taken into account.
  • the wall profile 10 has a sloping downward Lip 12, which is designed as an elastic sealing lip and in the fully assembled Heat exchange device on the floor of the room to be heated There is pressure. Because of the elasticity of the plastic material from which the wall profile 10, the lip 12 reliably prevents e.g. when wiping or when damp cleaning the heat exchanger, wash water in the hard accessible area under the heat exchange device. Also covers the lip 12 a possibly existing space between the Wall and a floor covering not quite reaching this.
  • the air guide profile 14 protrudes slightly further than the other Heat exchange device into the room and thus offers a uniform optical termination of the heat exchange device.
  • the one at normal eye level The viewer located only sees the high-quality air guide profile 14 and not the possibly dusty or dirty components of the Heat exchange device.
  • it is inside the room protruding arm of the air guide profile 14 as a downwardly bent air guide section 16 educated.
  • the air portion 16 reduces the flow rate of the Air heated during operation of the heat exchange device. This will avoid that the wall becomes electrostatically charged and thus dust or dirt particles, which are carried away by the air flow, settle on the wall. The pollution of the walls above the heat exchange device as in Systems of the prior art are partially observed is thus reduced.
  • the wall profile 10 has two on its side facing the interior of the room Grooves 18, 20 into which two corresponding lugs 22, 24 of a carrier 26 engage.
  • the carrier 26 is a molded part made of a flexible plastic material. He has two receptacles 28, 30 and two further lugs arranged on the room side 32, 34 on.
  • a heat exchange register 36 is made of two parallel tubes 38, 40 and a plurality of lamella elements 42 are formed.
  • the tubes 38, 40 are here described embodiment formed as heating tubes. They consist of Copper, and the lamella elements 42 are formed from thin aluminum sheet.
  • the heat exchange device is as Hot water heating designed. Instead of water you can use alternative designs however, a different heating medium can also be used, or the pipes 38, 40 can be designed as electric heating elements.
  • the tubes 38, 40 are approximately in the present embodiment evenly spaced from the wall. This configuration has the advantage that the heat exchange device has only a small thickness.
  • an opening 44 is at a height between the two tubes 38, 40 shown, which will be discussed in more detail below.
  • the opening 44 provides one essential aspect of the present invention, because it is the mechanical load of the heat exchange register 36 is reduced.
  • a cover profile 46 is a flat, symmetrical extruded profile made of aluminum educated.
  • the cover profile 46 provides the lateral termination of the heat exchange device towards the room. It has two grooves 48, 50, in which the assembled Heat exchange device (Fig. 2) the lugs 32, 34 of the carrier 26th intervention.
  • the side of the cover profile 46 facing the wall stands with the Heat exchange register 36 in surface contact, and that to the heating room directed side forms another radiating surface for the heating. As a result of that the cover profile 46 has only a small thickness, it can be bent easily.
  • the webs facing the wall must be attached to the Grooves 48, 50 cut through (when bending around a recessed edge of the room) or removed in places (when bending around a projecting edge of the room) become.
  • the cover profile 46 can thus be a continuous band in long Sections over several heat exchange register 36 are laid. Specific Corner pieces are not required.
  • each plate element 42 is a pair of plates with two configured parallel lamella sections 52, 54 which are vertical in FIG. 3 run to the drawing level.
  • An arranged in the drawing plane in Fig. 3 Cross section 56 connects the two lamella sections 52, 54 on their long sides.
  • the cross section 56 is interrupted by the centrally arranged opening 44 and thus divided into two subsections 56 ', 56 ". In the present description In the exemplary embodiment, the opening 44 completely interrupts the transverse section 56 (and even protrudes somewhat into the lamella sections 52, 54).
  • the heat exchange register 36 is supported by several of the carriers 26 already mentioned (only one of them is shown in FIG. 1) held on the wall profile 10.
  • the bearers 26 have a relatively small thickness, as in the exemplary embodiment described here smaller than the width of the transverse section 56 of a lamella element 42 is.
  • the carriers 26 protrude between the two lamella sections 52, 54 Slat element 42 up to the tubes 38, 40 in the heat exchange register 36 into it.
  • the tubes 38, 40 rest in the receptacles 28, 30 of the supports 26 and become of these shots 28, 30 closely fitting in a range of approximately Enclosed 230 °. Because the supports 26 are made of elastic plastic material, can each heat exchange register 36 easily placed on the carrier 26 and can be removed from these and is still held securely.
  • the embodiment is e.g. every ten to twenty lamella elements 42 along the longitudinal extent of the heat exchange device, a carrier 26 is arranged.
  • FIG. 4 The view of a lamella element 42 shown in FIG. 4 shows from the side again the U-shaped arrangement of the two lamella sections 52, 54 with the these sections laterally connecting transverse section 56.
  • the tubes 38, 40 FIG. 3
  • ridges 58, 60 formed, the thermal contact between the lamella element 42nd and improve the tubes 38, 40.
  • the outer diameter is of tubes 38, 40 approximately 17 mm and their spacing approximately 42 mm.
  • the lamella sections 52, 54 have a length of approximately 70 mm and a Width of approximately 22 mm.
  • the cross section 56 is approximately 11 mm wide.
  • the overall dimensions of the heat exchange device are approximately 140 mm in height and approximately 30 mm in width. With such a System can with a temperature difference of about 60 ° a heating power of Achieve 230 watts per linear meter. In execution alternatives, depending on the required heating output and the spatial conditions, other dimensions of the system.
  • the heat exchange device described here If the heat exchange device described here is put into operation, then heated the feed pipe (e.g. pipe 40), while the return pipe (e.g. tube 38) remains relatively cool.
  • the heating of the feed pipe can have an expansion in the longitudinal direction of, for example, just under 2 mm per running Cause meters of the heat exchange device.
  • the through this change in length caused relative movement of the two tubes 38, 40 to each other compensated in that the lamella sections 52, 54 at the level of their openings 44 bend elastically. Only relatively small forces arise because the thin aluminum sheet of the lamella sections 52, 54 slightly in this direction is deformable.
  • the areas of the lamella elements 42 at the level of the subsections 56 'and 56 "shift relative to each other; a deformation within however, these areas hardly take place.
  • the heat exchange device is a cooling device designed and intended, on a room wall near the ceiling or to be attached to the ceiling near the wall of the room.
  • the Differences from the embodiment described above as a heating device are essentially that the lip 12 serves as a drain lip to from the heat exchange register 36 condensate dripping into a (not in the figures shown) to guide the gutter.
  • no air guide profile 14 is provided.
  • the Heat exchange register 36 is preferably designed as described above; there are however, alternative designs are also provided in which the lamella elements 42 have no cross sections 56 or uninterrupted cross sections 56.
  • the cover profile 46 is made of a heat-insulating plastic manufactured to prevent condensation on the inside of the room Side to avoid. The mode of operation of the cooling device is therefore largely based on convection, while in the embodiment described above the heating device, the heat radiation through the cover profile 46 an essential Share (e.g. at least 20% or at least 40%) of the total heating output accounts.
  • Fig. 5 shows a lamella sheet 62, which is used to produce the heat exchange register 36 and the entire heat exchange device is used.
  • the slat plate 62 is made of thin aluminum sheet by punching. It has two Openings 64, 66 for the first tube 38 and two further openings 68, 70 for the second pipe 40 on.
  • the openings 64 to 70 correspond in size and shape the outer dimensions of the tubes 38, 40 4 burrs 58, 60 have been produced at the pipe openings 64 to 70.
  • the openings 64 and 68 are in the first lamella section 52 while the openings 66 and 70 are arranged in the second lamella section 54.
  • the the two slat sections 52, 54 are interconnected by the transverse section 56 connected.
  • the rectangular opening 44 is arranged centrally in the lamella sheet 62. It cuts through the transverse section 56 and protrudes somewhat on both sides into the Slat sections 52, 54 into it.
  • the lamella sheets 62 are bent to to obtain the U-shaped arrangement of the lamella element 42 according to FIG. 4.
  • Several such slat elements 42 are then placed on prepared sections of the Tubes 38, 40 (Fig. 3) pushed and fixed there in the press fit. You can do this, for example the tubes 38, 40 are strongly cooled while the lamellar elements 42 are heated.
  • Other methods are also in alternative designs provided for creating a secure interference fit, and furthermore the lamella elements 42 on their ridges 58, 60 (FIG. 4) with the tubes 38, 40 (FIG. 3) be soldered or welded or glued.
  • the cover profile 46 is placed on the lugs 32, 40 of the carrier 26.
  • the cover profile 46 follows without interruption (or with barely visible butt joints) the course of the heat exchange device along the room wall.

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  • 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)
  • Domestic Hot-Water Supply Systems And Details Of Heating Systems (AREA)
  • Steam Or Hot-Water Central Heating Systems (AREA)
  • Housings, Intake/Discharge, And Installation Of Fluid Heaters (AREA)
  • Central Heating Systems (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Claims (10)

  1. Dispositif d'échange thermique, en particulier chauffage par les plinthes, avec deux tuyaux (38, 40) s'étendant à peu près parallèlement et plusieurs éléments de lamelles (42) pour agrandir la surface active, lesquels sont disposés sur les tuyaux (38, 40), le long de ceux-ci, chaque élément de lamelle (42) présentant au moins un segment de lamelle (52, 54) s'étendant transversalement aux tuyaux (38, 40) et à travers lequel s'étendent les tuyaux (38, 40), et chaque élément de lamelle (42) présentant par ailleurs au moins un segment transversal (56) s'étendant transversalement à l'un audit segment de lamelle (52, 54), caractérisé en ce que le ou les segments transversaux (56) est interrompu par une ouverture (44) située à une certaine hauteur entre les tuyaux (38, 40), afin de réduire les déformations des éléments de lamelles (42) dues à une expansion/contraction des tuyaux (38, 40).
  2. Dispositif d'échange thermique selon la revendication 1, caractérisé en ce que chaque élément de lamelle (42) présente un profil en forme de U avec deux segments de lamelles (52, 54) parallèles et un segment transversal (56) reliant latéralement ces segments de lamelles (52, 54).
  3. Dispositif d'échange thermique selon la revendication 1 ou 2, caractérisé en ce que les tuyaux (38, 40) et les éléments de lamelles (42) forment ensemble un registre d'échange thermique (36), et en ce que le dispositif d'échange thermique présente un profilé mural (10) sur lequel il est possible de fixer des supports (26) pour le registre d'échange thermique (36).
  4. Dispositif d'échange thermique selon la revendication 3, caractérisé en ce que les supports (26) se composent d'une matière souple et présentent des logements (28, 30) pour les tuyaux (38, 40).
  5. Dispositif d'échange thermique selon la revendication 3 ou 4, caractérisé en ce que le dispositif d'échange thermique est réalisé sous la forme d'un dispositif de chauffage, et en ce que le profilé mural (10) ou un profilé formant conduite d'air (14) fixé à celui-ci présente un segment de conduite supérieur (16) afin de freiner l'air échauffé et affluant vers le haut lors du fonctionnement du dispositif d'échange thermique et/ou de l'éloigner d'un mur sur lequel le dispositif d'échange thermique est fixé.
  6. Dispositif d'échange thermique selon l'une quelconque des revendications 3 à 5, caractérisé en ce que le dispositif d'échange thermique est réalisé sous la forme d'un dispositif de chauffage, et en ce que le profilé mural (10) présente une lèvre inférieure (12) afin de former un raccordement étanche à l'eau de lessivage pour le dispositif d'échange thermique sur le plancher d'une pièce dans laquelle est placé le dispositif d'échange thermique.
  7. Dispositif d'échange thermique selon l'une quelconque des revendications 3 à 6, caractérisé en ce que le dispositif d'échange thermique présente un profilé de recouvrement (46) pouvant être fixé sur le profilé mural (10) et/ou les supports (26) et/ou le registre d'échange thermique (36).
  8. Dispositif d'échange thermique selon l'une quelconque des revendications 2, 3 et 7, caractérisé en ce que le registre d'échange thermique (36) peut être emboíté sur les supports (26) aménagés sur le profilé mural (10), moyennant quoi les logements (28, 30) des supports (26) sont en prise entre les segments de lamelles (52, 54) des éléments de lamelles (42) du registre d'échange thermique (36), et moyennant quoi les segments transversaux (56) des éléments de lamelles (42) du registre d'échange thermique (36) sont tournés vers le profilé de recouvrement (46) et sont au moins partiellement en contact en plan avec lui.
  9. Dispositif d'échange thermique selon l'une quelconque des revendications 7 ou 8, caractérisé en ce que le profilé de recouvrement (46) peut être plié transversalement à son sens, de sorte qu'il peut être utilisé pour le recouvrement de plusieurs registres d'échange thermique (36) aménagés des deux côtés d'une arête de mur.
  10. Procédé pour la fabrication d'un registre d'échange thermique (36), en particulier pour un dispositif d'échange thermique selon l'une quelconque des revendications 1 à 9, avec les étapes suivantes :
    mise à disposition de deux tuyaux (38, 40),
    façonnage de plusieurs tôles de lamelles (62) essentiellement rectangulaires de manière à ce que chaque tôle de lamelle (62) présente quatre ouvertures de tuyaux (64, 66, 68, 70) pour les tuyaux (38, 40) et une ouverture centrale (44),
    pliage de chaque tôle de lamelle (62) pour obtenir une section transversale en U afin de former à partir de chaque tôle de lamelle (62) un élément de lamelle (42) qui présente deux segments de lamelles parallèles (52, 54) avec respectivement deux ouvertures de tuyaux (64, 68 ; 66, 70), et un segment transversal (56) reliant latéralement les segments de lamelles (52, 54) et interrompu par l'ouverture centrale (44) et,
    enfilage des éléments de lamelles (42) sur les deux tuyaux (38, 40) et fixation des éléments de lamelles (42) à l'aide d'un ajustage serré sur les tuyaux (38, 40) et/ou d'une liaison par brasage ou soudage ou collage avec les tuyaux (38, 40).
EP01114569A 2001-06-18 2001-06-18 Echangeur de chaleur, notamment plinthe chauffante Expired - Lifetime EP1271063B1 (fr)

Priority Applications (5)

Application Number Priority Date Filing Date Title
DE50101657T DE50101657D1 (de) 2001-06-18 2001-06-18 Wärmetauschvorrichtung, insbesondere Fussleistenheizung
EP01114569A EP1271063B1 (fr) 2001-06-18 2001-06-18 Echangeur de chaleur, notamment plinthe chauffante
AT01114569T ATE261568T1 (de) 2001-06-18 2001-06-18 Wärmetauschvorrichtung, insbesondere fussleistenheizung
PCT/EP2002/006726 WO2002103246A2 (fr) 2001-06-18 2002-06-18 Dispositif d'echange thermique, notamment plinthes chauffantes
PCT/EP2002/006728 WO2002103247A2 (fr) 2001-06-18 2002-06-18 Dispositif d'echange thermique, notamment plinthes chauffantes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP01114569A EP1271063B1 (fr) 2001-06-18 2001-06-18 Echangeur de chaleur, notamment plinthe chauffante

Publications (2)

Publication Number Publication Date
EP1271063A1 EP1271063A1 (fr) 2003-01-02
EP1271063B1 true EP1271063B1 (fr) 2004-03-10

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EP01114569A Expired - Lifetime EP1271063B1 (fr) 2001-06-18 2001-06-18 Echangeur de chaleur, notamment plinthe chauffante

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Country Link
EP (1) EP1271063B1 (fr)
AT (1) ATE261568T1 (fr)
DE (1) DE50101657D1 (fr)
WO (2) WO2002103247A2 (fr)

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US20080029613A1 (en) * 2002-09-26 2008-02-07 William Friedlich Adjustable baseboard and molding system
EP1739365A1 (fr) * 2005-06-27 2007-01-03 Frog S.r.l./GmbH Chauffage et/ou refroidissement d'une pièce
CN102278787B (zh) * 2010-06-10 2013-09-11 杨中竣 板材固定加热单元装置
EP2796798B1 (fr) 2013-04-26 2017-10-04 ECO-MATIC (Société à responsabilité limitée) Plinthe chauffante hydraulique et/ou électrique
PL125384U1 (pl) * 2014-01-29 2017-05-22 Tomton S.R.O. Jednostka klimatyzacyjna, przeznaczona przede wszystkim do wodnego centralnego ogrzewania

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DE19626321A1 (de) * 1996-07-01 1998-01-08 Bosch Gmbh Robert Gasbeheizter Umlauf-Wasserheizer
JPH10160283A (ja) * 1996-11-29 1998-06-19 Sanyo Electric Co Ltd 吸収式ヒートポンプ装置
SE9702293L (sv) 1997-06-16 1998-12-17 Uwe Verken Ab Anordning vid ett värmeelement

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EP1271063A1 (fr) 2003-01-02
WO2002103247A3 (fr) 2003-03-20
WO2002103246A2 (fr) 2002-12-27
WO2002103246A3 (fr) 2003-03-20
WO2002103247A2 (fr) 2002-12-27
ATE261568T1 (de) 2004-03-15
DE50101657D1 (de) 2004-04-15

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