A HEATER AND A HEAT EXCHANGER INSTALLATION
20170122620 · 2017-05-04
Assignee
Inventors
Cpc classification
F28D1/0333
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H9/0015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B2203/02
ELECTRICITY
F24H9/1818
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24H9/146
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A heater comprises an inlet for a medium to be heated, an outlet for the medium, and at least two cassettes. Each cassette comprising a first plate comprising a first main surface and a second plate comprising a second main surface. The first and second plates are attached to each other and enclose a respective flow channel for the medium. The cassettes are arranged beside each other with a space between the cassettes for an electric heating element. The electric heating element abuts the first main surface of one of the cassettes and the second main surface of the adjacent cassette. The heater comprises two distance members extending between the one cassette and the adjacent cassette. The distance members define the space.
Claims
1. A heater comprising an inlet for a medium to be heated, an outlet for the medium, at least two cassettes, each cassette comprising a first plate comprising a first main surface and a second plate comprising a second main surface, wherein the first plate and the second plate are permanently joined to each other and enclose a respective flow channel for the medium between the first and second plates, and wherein the cassettes are arranged beside each other with a space between the cassettes, an electric heating element provided in the space between the cassettes, wherein the electric heating element abuts the first main surface of one of the cassettes and the second main surface of the adjacent cassette, and the heater comprising two distance members extending between said one cassette and said adjacent cassette, wherein the distance members define said space.
2. A heater according to claim 1, wherein each cassette comprises at least two openings permitting a flow of the medium from the flow channel of said one cassette to the flow channel of said adjacent cassette.
3. A heater according to claim 2, wherein at least one of the openings of said one cassette is provided opposite to one of the openings of said adjacent cassette and wherein the distance members surround said openings and permit said flow through said openings.
4. A heater according to claim 1, wherein each distance member comprises a ring defining two planar joining areas abutting the second main surface of said one cassette and the first main surface of said adjacent cassette.
5. A heater according to claim 1, wherein each distance member comprises at least one projection extending from the second main surface of said one cassette and/or from the first main surface of said adjacent cassette.
6. A heater according to claim 5, wherein each distance member comprises one projection extending from the second main surface or from the first main surface, and wherein each projection comprises a planar joining area abutting the first main surface or the second main surface of an adjacent cassette.
7. A heater according to claim 5, wherein each distance member comprises a first projection and a second projection, wherein the second plate of said one cassette comprises two second projections, which extend outwardly from the second main surface, and the first plate of said another adjacent cassette comprises two first projections, which extend outwardly from the first main surface, and wherein the first projections of said one cassette are abutting the second projections of said adjacent cassette to define said space.
8. A heater according to claim 7, wherein each of the first and second projections comprises a planar joining area, and the planar joining areas of the second projections of said one cassette are abutting the planar joining areas of the first projections of said adjacent cassette of the heater.
9. A heater according to claim 1, wherein the inlet is in flow communication with the flow channels of the cassettes, and the outlet is in flow communication with the flow channels of the cassettes, so that the heater permits the medium to flow into the inlet, through the flow channels and out through the outlet.
10. A heater according to claim 1, wherein the first main surface and the second main surface are substantially planar.
11. A heater according to claim 1, wherein each first plate comprises a first flange extending around the first plate and away from the first main surface, each second plate comprises a second flange extending around the second plate and away from the second main surface, and the first plate and the second plate are joined to each other by means of a joint extending along an outer edge of the first flange and an outer edge of the second flange.
12. A heater according to claim 1, wherein a connecting member is provided in the flow channel of each cassette and connects the first main surface to the second main surface.
13. A heater according to claim 12, wherein the connecting member comprises a number of depressions extending inwardly from at least one of the first main surface and the second main surface.
14. A heater according to claim 13, wherein at least one depression extending from the first main surface abuts a depression extending from the second main surface.
15. A heater according to claim 12, wherein the connecting member comprises a corrugated sheet arranged in the flow channel between the first plate and the second plate.
16. A heater according to claim 1, wherein the electric heating element comprises an electrical resistance wire.
17. A heat exchanger installation comprising a heat exchanger and a heater according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0042] The present invention is now to be explained more closely through a description of preferred embodiments and with reference to the drawings attached hereto.
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DETAILED DESCRIPTION OF VARIOUS EMBODIMENTS OF THE INVENTION
[0055] A first embodiment of the heater is disclosed in
[0056] The heater may be a part of an installation comprising a heat exchanger HE, schematically indicated in
[0057] The inlet pipe 3 and/or the outlet pipe 4 may be parts of the heater or parts of the installation together with which the heater is to be used. The heater is then attached to the inlet pipe 3 and/or the outlet pipe 4 in any suitable manner, for instance by brazing, bonding, welding or gluing to form a permanent joint.
[0058] The heater according to the first embodiment comprises two cassettes 5. Each cassette 5 comprises a first plate 6 and a second plate 7, see
[0059] Each cassette 5 has a first end 5a and an opposite second end 5b. In
[0060] In the first embodiment, the inlet 1 is provided at the first end 5a and the outlet 2 is provided at the first end 5a but on an opposite side of the heater.
[0061] Both the first main surface 8 and the second main surface 9 are planar, or substantially planar, and extend in parallel with a common extension plane x, see
[0062] The first plate 6 and the second plate 7 are permanently joined to each other and enclose a flow channel 10 for the medium between the first plate 6 and the second plate 7, see
[0063] The first plate 6 comprises a first flange 11 extending around the first plate 6. The first flange 11 extends around and encloses the first main surface 8. The first flange 11 extends away from the first main surface 8, and is thus inclined in relation to the first main surface 8. In the embodiments disclosed the first flange 11 adjoins the first main surface 8.
[0064] The second plate 7 comprises a second flange 12 extending around the second plate 7. The second flange 12 extends around and encloses the second main surface 9. The second flange 12 extends away from the second main surface 9, and is thus inclined in relation to the second main surface 9. In the embodiments disclosed, the second flange 12 adjoins the second main surface 9.
[0065] The first plate 6 and the second plate 7 are permanently joined to each other by means of a joint extending along an outer edge area 13 of the first flange 11 and an outer edge area 14 of the second flange 12. As can be seen in
[0066] In order to improve the strength of the cassette 5, a connecting member is provided in the flow channel 10. The connecting member connects the first main surface 8 to the second main surface 9.
[0067] In the first embodiment, the connecting member comprises a plurality of depressions 15 extending inwardly from the first main surface 8 and one or more depressions 15 extending inwardly from the second main surface 9. The depressions 15 extending from the first main surface 8 abut a respective depression 15 extending from the second main surface 9, see
[0068] The depressions 15 are thus formed on and extend inwardly from the planar first and second main surfaces 8 and 9.
[0069] The depressions 15 from the first main surface 8 are permanently joined to the depressions 15 from the second main surface 9 by means of brazing, bonding, welding or gluing. Preferably, the permanent joints between the edge areas 13 and 14 are made in the same joining step as the permanent joint of the connecting member, i.e. in the first embodiment as the joint the between the depressions 15.
[0070] It is to be noted that depressions 15 may be provided on only one of the main surfaces 8 or 9, and then extend to the inner side of the opposing main surface 8 or 9.
[0071] The heater also comprises two distance members 19 extending between one of the cassettes 5 and an adjacent cassette 5. The distance members 19 define a space 23 between the cassettes 5.
[0072] In the first embodiment, each distance member 19 comprises a first projection 21 and a second projection 22. More precisely, the first plate 6 of each cassette 5 comprises two first projections 21, which extend outwardly from the first main surface 8, i.e. from the planar, or substantially planar, first main surface 8. One of the first projections 21 is provided at the first end 5a and the other first projection 21 at the second end 5b.
[0073] The second plate 7 of each cassette 6 comprises two second projections 22, which extend outwardly from the second main surface 9, i.e. the planar, or substantially planar, second main surface 9. One of the second projections 22 is provided at the first end 5a and the other second projection 22 at the second end 5b.
[0074] The first projections 21 of one of the two cassettes 5, to the right in
[0075] Each of the first projections 21 and the second projections 22 comprises a planar joining area 24, see
[0076] In the first embodiment, the first projection 21 at the first end 5a the cassette 5, to the left in
[0077] Each of the openings 26 extends through a respective planar joining area 24 as can be seen in
[0078] The remaining projections 21 and 22 of the heater according to the first embodiment are closed.
[0079] Consequently, as indicated in
[0080] The cassettes 5 of the first embodiment are thus arranged to permit serial flow of the medium through the flow channels 10 of the cassettes 5.
[0081] The heater also comprises an electric heating element 31 provided in the space 23 between the cassettes 5. The electric heating element 31 abuts the first main surface 8 of one of the cassettes 5 and the second main surface 9 of the adjacent cassette 5.
[0082] The electric heating element 31 may be permanently joined to the first main surface 8 of one of the cassettes 5 and to the second main surface 9 of the adjacent cassette 5, for instance by means of brazing, bonding, welding or gluing.
[0083] Preferably, the electric heating element 31 may be permanently joined to the first and second main surfaces 8, 9 in the same joining step as the joining of the connecting member, the joining of the edge surfaces 13 and 14, and the joining of the planar joining areas 24 to each other. In such a way, the heater may be joined as a complete unit in one single joining step. The joining enables the achievement an integrated heater.
[0084] The electric heating element 31 comprises an electrical resistance wire 32, see
[0085] The electric heating element 31 comprises a metal tube 34, which surrounds the ceramic sleeve 33 and the electric resistance wire 32. The metal tube 34 forms the outer casing of the electric heating element 31.
[0086] The electric heating element 31 may be suitable for being permanently joined to the adjoining first and second main surfaces 8 and 9 by brazing, bonding, welding or gluing as mentioned above.
[0087] The metal tube 34 of the electric heating element 31 is, for instance, made of stainless steel. A metal tube 34 is suitable for such permanent joining. However, the electric heating element 31 may alternatively comprise an outer casing of other materials than metal, for instance a ceramic material, which also may be permanently joined to the first and second main surfaces 8 and 9.
[0088] As can be seen in
[0089] Advantageously, the electric heating element 31 is provided in a central area of the first main surface 8 and the second main surface 9. For instance, the electric heating element 31 may extension between the two distance members 19 as in the embodiments disclosed, see especially
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[0098] The present invention is not limited to the embodiments disclosed but may be varied and modified within the scope of the following claims.
[0099] It is to be noted that further configurations of the heater are possible, for instance 4, 5, 6 or even more cassettes 5 arranged to permit the medium to flow in parallel flow or serial flow.
[0100] Furthermore, at least the first and second plates 6 and 7 that face each other in the heater may have projecting members extending outwardly into the space 23 from the planar first main surface 8 and the planar second main surface 9, respectively. Such projecting members may facilitate the positioning of the electric heating element 31 during the joining of the heater.
[0101] It is also to be noted that the cassettes 5 and the electric heating element 31 may be joined together by means of tie bolts, as an alternative to the permanent joining discussed above. The first and second plates 6 and 7 and the connecting member between the plates are still permanently joined as described above.