CN204100860U - A kind of novel titanium tube heat exchanger - Google Patents

A kind of novel titanium tube heat exchanger Download PDF

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Publication number
CN204100860U
CN204100860U CN201420513686.XU CN201420513686U CN204100860U CN 204100860 U CN204100860 U CN 204100860U CN 201420513686 U CN201420513686 U CN 201420513686U CN 204100860 U CN204100860 U CN 204100860U
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CN
China
Prior art keywords
baffle plate
pipe
intake tunnel
shell
heat exchanger
Prior art date
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Active
Application number
CN201420513686.XU
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Chinese (zh)
Inventor
王星
高翔
刘远辉
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Guangdong PHNIX Eco Energy Solution Ltd
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Guangdong PHNIX Eco Energy Solution Ltd
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Priority to CN201420513686.XU priority Critical patent/CN204100860U/en
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Abstract

The utility model discloses a kind of novel titanium tube heat exchanger, comprise shell, the upper end of shell is provided with top cover, top cover is provided with outlet pipe, refrigerant inlet pipe and refrigerant go out pipe, shell lower end is provided with base, base is provided with water inlet pipe, the top being positioned at water inlet pipe in shell is provided with intake tunnel, annulus baffle plate is provided with between water inlet pipe and intake tunnel, the center of annulus baffle plate is provided with the circular hole being looped around intake tunnel water inlet, ensure that the vertical centering of intake tunnel, titanium coil pipe is not only made more easily to install, also make the upper and lower space uniform in inner passage, thus ensure that the uniformity of heat exchange, the utility model is applicable to field of heat exchange.

Description

A kind of novel titanium tube heat exchanger
Technical field
The utility model relates to field of heat exchange, particularly relates to a kind of titanium tube heat exchanger.
Background technology
At present, the water inlet pipe of common titanium tube heat exchanger is connected by bridge piece usually with intake tunnel, but due to the restriction of technique, generally bridge piece is easy to do tiltedly, thus make upper and lower space, inner passage uneven, thus have impact on the uniformity of heat exchange.
The temperature sensor of common titanium tube heat exchanger is arranged on top usually, inflow temperature is judged from the temperature of intake tunnel water out mainly through detecting, but because water is by being certain to the heat absorbing intake tunnel tube wall during intake tunnel, the inflow temperature detected like this is inaccurate, thus have impact on the comfortableness of swimming-pool water.
Also have, the water flow switch of common titanium tube heat exchanger is arranged on the position between external channel and outlet pipe usually, but the position water between external channel and outlet pipe is easy to form eddy current, thus causes water flow switch erroneous judgement discharge excessive and close, affecting the high-efficiency operation of heat exchanger.
Utility model content
For solving the problem, the utility model provides heat exchange even, the temperature control titanium tube heat exchanger that high efficiency is novel accurately.
The utility model solves the technical scheme that its technical problem adopts: a kind of novel titanium tube heat exchanger, comprise shell, the upper end of shell is provided with top cover, top cover is provided with outlet pipe, refrigerant inlet pipe and refrigerant go out pipe, the inside center of shell is provided with intake tunnel, top cover connects a baffle plate, baffle plate is connected with the cross section housing consistent with baffle-panels, cavity between shell and intake tunnel is divided into external channel and inner passage by housing and baffle plate, shell lower end is provided with base, base is provided with water inlet pipe, intake tunnel is located in shell the top being positioned at water inlet pipe, annulus baffle plate is provided with between water inlet pipe and intake tunnel, the center of annulus baffle plate is provided with the circular hole being looped around intake tunnel water inlet.
Be further used as the improvement of technical solutions of the utility model, be equipped with titanium coil pipe in external channel and inner passage, the two ends of titanium coil pipe connect refrigerant inlet pipe respectively and refrigerant goes out pipe, and titanium coil pipe is single channel or multichannel.
Be further used as the improvement of technical solutions of the utility model, in base, be provided with temperature sensor below annulus baffle plate.
Be further used as the improvement of technical solutions of the utility model, outlet pipe is provided with water flow switch.
Be further used as the improvement of technical solutions of the utility model, baffle plate is circular.
The beneficial effects of the utility model: this novel titanium tube heat exchanger adopts annulus baffle plate to connect the mode of intake tunnel, effectively can ensure the vertical centering of intake tunnel, titanium coil pipe is not only made more easily to install, also make the upper and lower space uniform in inner passage, thus ensure that the uniformity of heat exchange.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the utility model is described in further detail:
Fig. 1 is the novel titanium tube heat exchanger external structure schematic diagram of the utility model embodiment;
Fig. 2 is the novel titanium tube heat exchanger internal structure schematic diagram of the utility model embodiment.
Detailed description of the invention
With reference to Fig. 1, Fig. 2, the utility model is a kind of novel titanium tube heat exchanger, comprise shell 1, the upper end of shell 1 is provided with top cover 20, top cover 20 is provided with outlet pipe 5, refrigerant inlet pipe 2 and refrigerant go out pipe 3, the inside center of shell 1 is provided with intake tunnel 16, top cover 20 connects a baffle plate 11, baffle plate 11 is connected with the cross section housing consistent with baffle-panels 13, cavity between shell 1 and intake tunnel 16 is divided into external channel 9 and inner passage 10 by housing 13 and baffle plate 11, shell 1 lower end is provided with base 7, base 7 is provided with water inlet pipe 6, intake tunnel 16 is located at the top being positioned at water inlet pipe 6 in shell 1, annulus baffle plate 12 is provided with between water inlet pipe 6 and intake tunnel 16, the center of annulus baffle plate 12 is provided with the circular hole being looped around intake tunnel 16 water inlet.
After water enters water inlet pipe 6, by entering in intake tunnel 16 after base 7 to annulus baffle plate 12, annulus baffle plate 12 manufacture difficulty is little, and such design, effectively ensure the vertical centering of intake tunnel, not only make titanium coil pipe more easily install, also make the upper and lower space uniform in inner passage, thus ensure that the uniformity of heat exchange.。
As the utility model preferred embodiment, be equipped with titanium coil pipe 8 in external channel 9 and inner passage 10, the two ends of titanium coil pipe 8 connect refrigerant inlet pipe 2 respectively and refrigerant goes out pipe 3, and titanium coil pipe 8 is single channel or multichannel.
Water enters heat exchanger base 7 from water inlet pipe 6, then after entering intake tunnel 16 by annulus baffle plate 12, dispersion enters in inner passage 10, meanwhile, carry out a heat exchange with the high temperature refrigerant being entered titanium coil pipe 8 by refrigerant inlet pipe 2, then dispersion enters in external channel 9 again, carries out secondary heat exchange with the high temperature refrigerant entering titanium coil pipe 8, now, gone out pipe 3 by the low temperature refrigerant after heat exchange by refrigerant to flow out, after coolant-temperature gage is greatly improved, flowed out by outlet pipe 5.
As the utility model preferred embodiment, in base 7, temperature sensor 17 is provided with below annulus baffle plate 12.
Temperature sensor 17 is arranged on base 7, the position relative with water inlet pipe 6, and because chassis does not contact with titanium pipe dish 8 pipe, the heat making temperature sensor 17 can not touch titanium pipe dish 8 distributes, and ensure that the accuracy detecting inflow temperature.
As the utility model preferred embodiment, outlet pipe 5 is provided with water flow switch 4.
Water flow switch 4 is arranged on the tube wall of outlet pipe 5, the current entering outlet pipe 5 are relatively steady, avoid the water flow fluctuation and eddy current that cause due to water movement between inner passage 10 and outlet pipe 5, the erroneous judgement of water flow switch can not be caused, improve the accuracy in detection of water flow switch 4, ensure that heat exchange efficiency.
As the utility model preferred embodiment, baffle plate 11 is circular.
Certainly, the invention is not limited to above-mentioned embodiment, those of ordinary skill in the art also can make equivalent variations or replacement under the prerequisite without prejudice to the utility model spirit, and these equivalent modification or replacement are all included in the application's claim limited range.

Claims (5)

1. a novel titanium tube heat exchanger, it is characterized in that: comprise shell (1), the upper end of described shell (1) is provided with top cover (20), described top cover (20) is provided with outlet pipe (5), refrigerant inlet pipe (2) and refrigerant go out pipe (3), the inside center of described shell (1) is provided with intake tunnel (16), described top cover (20) connects a baffle plate (11), described baffle plate (11) is connected with the cross section housing consistent with baffle-panels (13), cavity between shell (1) and intake tunnel (16) is divided into external channel (9) and inner passage (10) by described housing (13) and baffle plate (11), described shell (1) lower end is provided with base (7), described base (7) is provided with water inlet pipe (6), described intake tunnel (16) is located at the top being positioned at water inlet pipe (6) in shell (1), annulus baffle plate (12) is provided with between described water inlet pipe (6) and intake tunnel (16), the center of described annulus baffle plate (12) is provided with the circular hole being looped around intake tunnel (16) water inlet.
2. titanium tube heat exchanger novel according to claim 1, it is characterized in that: in described external channel (9) and inner passage (10), be equipped with titanium coil pipe (8), the two ends of described titanium coil pipe (8) connect refrigerant inlet pipe (2) respectively and refrigerant goes out pipe (3), and described titanium coil pipe (8) is single channel or multichannel.
3. titanium tube heat exchanger novel according to claim 2, is characterized in that: in described base (7), annulus baffle plate (12) below is provided with temperature sensor (17).
4. according to titanium tube heat exchanger novel described in any one in claims 1 to 3, it is characterized in that: described outlet pipe (5) is provided with water flow switch (4).
5. titanium tube heat exchanger novel according to claim 1, is characterized in that: described baffle plate (11) is for circular.
CN201420513686.XU 2014-09-05 2014-09-05 A kind of novel titanium tube heat exchanger Active CN204100860U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420513686.XU CN204100860U (en) 2014-09-05 2014-09-05 A kind of novel titanium tube heat exchanger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420513686.XU CN204100860U (en) 2014-09-05 2014-09-05 A kind of novel titanium tube heat exchanger

Publications (1)

Publication Number Publication Date
CN204100860U true CN204100860U (en) 2015-01-14

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CN201420513686.XU Active CN204100860U (en) 2014-09-05 2014-09-05 A kind of novel titanium tube heat exchanger

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107388853A (en) * 2017-09-04 2017-11-24 海龙(张家港)实业有限公司 Heat exchanger based on titanium dish pipe

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107388853A (en) * 2017-09-04 2017-11-24 海龙(张家港)实业有限公司 Heat exchanger based on titanium dish pipe

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