EP2638337A2 - Verdampfer - Google Patents
VerdampferInfo
- Publication number
- EP2638337A2 EP2638337A2 EP11775804.5A EP11775804A EP2638337A2 EP 2638337 A2 EP2638337 A2 EP 2638337A2 EP 11775804 A EP11775804 A EP 11775804A EP 2638337 A2 EP2638337 A2 EP 2638337A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- evaporator
- tube
- defrost heater
- pipe sections
- deflections
- 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.)
- Granted
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B39/00—Evaporators; Condensers
- F25B39/02—Evaporators
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25D—REFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
- F25D21/00—Defrosting; Preventing frosting; Removing condensed or defrost water
- F25D21/06—Removing frost
- F25D21/08—Removing frost by electric heating
-
- 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
- F28D1/00—Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators
- F28D1/02—Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid
- F28D1/04—Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid with tubular conduits
- F28D1/047—Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid with tubular conduits the conduits being bent, e.g. in a serpentine or zig-zag
- F28D1/0477—Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid with tubular conduits the conduits being bent, e.g. in a serpentine or zig-zag the conduits being bent in a serpentine or zig-zag
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28F—DETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
- F28F1/00—Tubular elements; Assemblies of tubular elements
- F28F1/10—Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses
- F28F1/12—Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element
- F28F1/24—Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending transversely
- F28F1/32—Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending transversely the means having portions engaging further tubular elements
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28F—DETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
- F28F17/00—Removing ice or water from heat-exchange apparatus
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B2400/00—Component parts or details not otherwise provided for in this subclass
- F25B2400/01—Heaters
-
- 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
- F28D21/00—Heat-exchange apparatus not covered by any of the groups F28D1/00 - F28D20/00
- F28D2021/0019—Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for
- F28D2021/0068—Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for for refrigerant cycles
- F28D2021/0071—Evaporators
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28F—DETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
- F28F9/00—Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
- F28F9/007—Auxiliary supports for elements
- F28F9/013—Auxiliary supports for elements for tubes or tube-assemblies
- F28F9/0131—Auxiliary supports for elements for tubes or tube-assemblies formed by plates
Definitions
- the invention relates to an evaporator for a refrigeration appliance, in particular a household refrigeration appliance, with a pipe through which a refrigerant can flow with an inlet and an outlet opening, wherein the tube has U-shaped deflections with legs of pipe sections running parallel to each other and straight and the pipe is in through-openings is supported by lamellas.
- refrigerators and freezers often include an evaporator for expanding the cooling medium and for cooling a cold room. This evaporator tends to icing. In no-frost devices causes a local evaporator for expanding the cooling medium and for cooling a cold room. This evaporator tends to icing. In no-frost devices causes a local evaporator for expanding the cooling medium and for cooling a cold room. This evaporator tends to icing. In no-frost devices causes a local
- a corresponding defrosting device is known from DE 11 2004 002 258 T5, in which a defrosting heater is inserted into a through-hole of the fins of the evaporator.
- DE 31 45 445 shows a further defrost heater, which is in contact with the heat exchange fins.
- a disadvantage of the known solutions is first the attachment of the heater to the evaporator, since there is a certain distance in known solutions. Also, the evaporator in the manufacturing process should be easy and inexpensive to produce and the heater should be easily removed in case of service.
- an evaporator for a refrigeration device is provided with a pipe through which a refrigerant can flow, with an inlet and an outlet opening.
- the tube has U-shaped deflections with legs of parallel to each other and rectilinear pipe sections.
- the tube is mounted in passage openings of aligned perpendicular to the straight tube sections slats and a Defrost heater is along at least part of the straight pipe sections
- Evaporator removable and / or mountable. It can be easily assembled in the production process and is easy to remove even for service purposes.
- the defrost heating has at least one U-shaped deflection, which is associated with a U-shaped deflection of the tube and the defrost heater extends along a leg of the tube in a first radial direction of the tube and along the other leg of the tube in a second radial Direction of the
- the second radial direction differs by at least 90 ° from the first radial direction.
- the second radial direction differs from the first radial direction by 180 °. Since so the sections of the pipe heater on respectively
- Defrost heater above and below the tube is better run, as if it would lie next to (in the horizontal direction) the pipe.
- the defrost heater has meandering a plurality of U-shaped baffles associated with U-shaped baffles of the tube, and the defrost heater extends along the straight legs in different radial directions of the tube and the radial directions are at each
- the defrost heater is an electrical resistance heater, as this can be produced and installed at low cost and space-saving.
- the defrost heater meandering a plurality of U-shaped
- the defrost heater is a flat assembly that can be stacked well in the manufacturing process. Since the defrost heater does not have a very high flexural rigidity, it is advantageous that it does not have an excessively complex shape.
- Outlet opening are adjacent, are not provided with a defrost heater. Since it was recognized that especially the input-side pipe sections are particularly affected by icing, it is sufficient to attach a corresponding heater to these.
- An appropriate refrigerator and / or freezer includes an evaporator and a controller or controller for activating the defrost heater and thus for defrosting the evaporator. So a no-frost cooling unit is provided and for de-icing, the entire unit does not have to be heated to temperatures above zero degrees.
- a method for producing a no-frost evaporator has a workflow for the production of an evaporator body, the tube has deflections and mutually parallel pipe sections, and the tube is held and guided by fins in shape and in a subsequent assembly step is a defrost heater with Deflections and mutually parallel sections via an insertion movement along the direction of the straight pipe sections in the
- Fig. 4 shows a blade in plan view
- FIGS. 5 to 7 show alternative embodiments of the position of the defrost heater relative to the FIG.
- Fig. 1 shows an evaporator, as it is used, for example, in a compressor refrigerator.
- a refrigerant is compressed by a compressor, whereby it is heated. This heat is released via a capacitor to the environment. Subsequently, the (liquid) coolant is passed to reduce the pressure via a throttle and relaxed in this way. This evaporates
- Ambient medium is discharged.
- This ambient medium is usually the air in the space to be cooled, either by the convection principle or
- the evaporator is in the present case designed as a tube evaporator.
- a tube with an inlet opening 5 and an outlet opening 7 is used.
- This tube 2 has a plurality of Wnditch or U-shaped deflections.
- each U-shaped deflection comprises two legs 10 and 10 ', which are designed as straight and parallel pipe sections and at the base is a
- This deflecting element can be formed in the simplest case by bending the tube. Alternatively, a separate semicircular curved element with the legs 10 and 10 'connected and in particular soldered be. Since both ends of the legs are deflected in a U-shape, the result is a kind of position of adjacent parallel legs. In this case, the legs are not in a plane, but each second leg is an amount of almost twice the pipe diameter corresponds to the top - ie according to FIG. 2 in the z direction - offset. Two of these layers are superimposed so that the outlet opening 7 of the inlet opening 5 is adjacent.
- lamellae 20 are provided with passage openings 25 and 30.
- the already correspondingly bent tube 2 is moved by a movement in the y-direction against the slats.
- the lamellae have the task in use of the evaporator to keep the bent tube 2 in its desired position and thus to give the evaporator mechanical stability against shock or vibration.
- the lamellae are directly in contact with the tube, so that a good heat exchange is possible and so serve the cooled surfaces of the lamellae cooling the air to be cooled. In principle, for reasons of strength, one blade at a time is sufficient for both areas of the deflections.
- upper passage opening 25 are used, the size of which is dimensioned so that a U-shaped deflection of the pipe can be inserted through it.
- the lower passage openings 30 also include areas for the passage of U-shaped deflections, but are extended in different directions, so that through these passage openings 30 in addition, the defrost heater can be introduced.
- Passage openings 25 and 30 are each circumferentially closed.
- the defrost heater 50 By introducing the defrost heater 50 through the same passage openings 30 of the fins 20 as the corresponding pipe sections 10 and 10 ', it follows that the defrost heating is applied directly to the corresponding pipe sections, which causes the best defrosting effect.
- Figures 5 to 7 show different variants in which the defrost heater can abut a corresponding U-shaped deflection of the tube. The figures are shown from a viewing angle in the y-direction in the evaporator body, wherein the two larger circles represent sections through the tube and the smaller interconnected circles is a section through the defrost heater.
- Fig. 6 stands for
- Fig. 6 is advantageous in a production process in which first the tube is plugged together with the fins and then, e.g. in a dip, soldered together. It can be seen from the geometry of the passage opening 30 of the lamella 20 that, due to its shape, the U-shaped deflection of the tube into the x and z directions is well guided.
- FIG. 5 is the
- the defrost heater can only be installed after soldering. That is, the tube in the embodiment of Fig. 5 at the time of soldering in the z 'direction a certain play, so that in
- Vibrations in the x- or z-direction of the tube are collected by the slats and not by the defrost heater, which may have a vulnerable plastic jacket.
- the lamella would have an elongated passage opening, which corresponds to the outer dimensions of
- Tube deflection is adjusted, with a magnification on the right side for a part the pipe heating. Even so, the bent pipe is well guided in its position in the x and z directions during the manufacturing process and before the pipe heater is inserted.
Landscapes
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Geometry (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Defrosting Systems (AREA)
- Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE201010043542 DE102010043542A1 (de) | 2010-11-08 | 2010-11-08 | Verdampfer |
| PCT/EP2011/068787 WO2012062581A2 (de) | 2010-11-08 | 2011-10-26 | Verdampfer |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2638337A2 true EP2638337A2 (de) | 2013-09-18 |
| EP2638337B1 EP2638337B1 (de) | 2015-01-28 |
Family
ID=44863054
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP11775804.5A Not-in-force EP2638337B1 (de) | 2010-11-08 | 2011-10-26 | Verdampfer |
Country Status (5)
| Country | Link |
|---|---|
| EP (1) | EP2638337B1 (de) |
| CN (1) | CN103201570B (de) |
| DE (1) | DE102010043542A1 (de) |
| ES (1) | ES2529667T3 (de) |
| WO (1) | WO2012062581A2 (de) |
Families Citing this family (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102840723A (zh) * | 2012-10-12 | 2012-12-26 | 苏州金科信汇光电科技有限公司 | 冷却排管防结冰装置 |
| CN105352227A (zh) * | 2015-11-20 | 2016-02-24 | 苏州汉克山姆照明科技有限公司 | 一种防结冰型冷却排管 |
| CN105485970A (zh) * | 2015-11-20 | 2016-04-13 | 苏州汉克山姆照明科技有限公司 | 一种高效除霜冷却排管 |
| CN105241129A (zh) * | 2015-11-20 | 2016-01-13 | 苏州汉克山姆照明科技有限公司 | 一种可除冰霜的冷却排管 |
| CN107514842A (zh) * | 2016-06-17 | 2017-12-26 | 杭州三花家电热管理系统有限公司 | 一种换热器 |
| CN109869973B (zh) * | 2017-12-05 | 2022-03-29 | 松下电器产业株式会社 | 冷冻冷藏库 |
| EP3705811B1 (de) * | 2019-03-08 | 2025-07-30 | Daikin Industries, Ltd. | Ausseneinheit für eine wärmepumpe |
| CN114061240B (zh) * | 2020-07-30 | 2023-08-04 | 海信冰箱有限公司 | 一种加热管及冰箱 |
| DE102024205300A1 (de) | 2024-06-07 | 2025-12-11 | BSH Hausgeräte GmbH | Kältegerät und Wärmeübertrager für ein Kältegerät |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE1000836B (de) * | 1954-07-31 | 1957-01-17 | Andrew George Heron | Vorrichtung zum Enteisen von Kuehleinrichtungen |
| US3285334A (en) * | 1961-12-11 | 1966-11-15 | Peerless Of America | Integral dual-passage heat exchange tubing with reverse bends |
| JPS52112550U (de) * | 1976-02-25 | 1977-08-26 | ||
| US4432211A (en) | 1980-11-17 | 1984-02-21 | Hitachi, Ltd. | Defrosting apparatus |
| JPS58110976A (ja) * | 1981-12-24 | 1983-07-01 | 昭和アルミニウム株式会社 | 蒸発器およびその製造方法 |
| WO2003099487A1 (en) * | 2002-05-29 | 2003-12-04 | Arçelik A.S. | A method for manufacturing an evaporator |
| WO2005052474A2 (en) | 2003-11-28 | 2005-06-09 | Lg Electronics Inc. | Defroster for evaporator in refrigerator |
| ITVE20050033U1 (it) * | 2005-10-20 | 2007-04-21 | I R C A S P A Ind Resistenze | Evaporatore a lamelle per impianti refrigeranti provvisto di dispositivo per effettuare lo sbrinamento. |
| JP2008008519A (ja) * | 2006-06-27 | 2008-01-17 | Yanmar Co Ltd | 冷凍コンテナ |
-
2010
- 2010-11-08 DE DE201010043542 patent/DE102010043542A1/de not_active Withdrawn
-
2011
- 2011-10-26 EP EP11775804.5A patent/EP2638337B1/de not_active Not-in-force
- 2011-10-26 ES ES11775804.5T patent/ES2529667T3/es active Active
- 2011-10-26 WO PCT/EP2011/068787 patent/WO2012062581A2/de not_active Ceased
- 2011-10-26 CN CN201180053778.3A patent/CN103201570B/zh not_active Expired - Fee Related
Non-Patent Citations (1)
| Title |
|---|
| See references of WO2012062581A2 * |
Also Published As
| Publication number | Publication date |
|---|---|
| CN103201570B (zh) | 2015-03-18 |
| WO2012062581A2 (de) | 2012-05-18 |
| CN103201570A (zh) | 2013-07-10 |
| WO2012062581A3 (de) | 2012-10-04 |
| ES2529667T3 (es) | 2015-02-24 |
| DE102010043542A1 (de) | 2012-05-10 |
| EP2638337B1 (de) | 2015-01-28 |
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