CN109595954A - A kind of pipeline that can collect underground water heat - Google Patents

A kind of pipeline that can collect underground water heat Download PDF

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Publication number
CN109595954A
CN109595954A CN201811460662.1A CN201811460662A CN109595954A CN 109595954 A CN109595954 A CN 109595954A CN 201811460662 A CN201811460662 A CN 201811460662A CN 109595954 A CN109595954 A CN 109595954A
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CN
China
Prior art keywords
pipe
pipeline
fixed
absorbing
underground water
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Granted
Application number
CN201811460662.1A
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Chinese (zh)
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CN109595954B (en
Inventor
李进
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Hunan Dadao New Energy Development Co Ltd
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Hunan Dadao New Energy Development Co Ltd
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Priority to CN201811460662.1A priority Critical patent/CN109595954B/en
Publication of CN109595954A publication Critical patent/CN109595954A/en
Application granted granted Critical
Publication of CN109595954B publication Critical patent/CN109595954B/en
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Classifications

    • 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
    • F28D7/08Heat-exchange apparatus having stationary tubular conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits being otherwise bent, e.g. in a serpentine or zig-zag
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F13/00Arrangements for modifying heat-transfer, e.g. increasing, decreasing
    • F28F13/06Arrangements for modifying heat-transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media
    • F28F13/12Arrangements for modifying heat-transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media by creating turbulence, e.g. by stirring, by increasing the force of circulation
    • F28F13/125Arrangements for modifying heat-transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media by creating turbulence, e.g. by stirring, by increasing the force of circulation by stirring

Abstract

The present invention provides a kind of pipeline that can collect underground water heat.The pipeline that underground water heat can be collected includes pipeline, stocking mechanism, heat-absorbing body, exhaust gear and bindiny mechanism, the heat-absorbing body includes connecting tube, fixing pipe, absorbing pipe, flabellum and memotron, the fixing pipe is symmetrically mounted equidistant in the bottom end of the stocking mechanism, the bottom inner portion of the fixing pipe is rotatablely connected the absorbing pipe, and the flabellum is mounted equidistant in the side wall of the absorbing pipe;The memotron is installed in the inside of the pipeline, and the side wall of the memotron equidistantly tilts the installation connecting tube, and the inner rotation of the connecting tube connects the bottom end of the absorbing pipe;The exhaust gear is fixed on the top of the memotron;Multiple bindiny mechanisms are installed on the junction of the absorbing pipe Yu the connecting tube and the fixing pipe.The pipeline provided by the invention that underground water heat can be collected is convenient for heat in quickly collection water.

Description

A kind of pipeline that can collect underground water heat
Technical field
The present invention relates to underground water pipeline technical fields, more particularly to a kind of pipeline that can collect underground water heat.
Background technique
Underground water refers to water of the preservation in below ground rock gap, refers to that groundwater level or less saturation contains in the narrow sense Water in water layer.In national standard " hydrogeological term ", underground water, which refers to, is imbedded in the various forms of gravity of earth's surface or less Water.
In underground water in pipeline internal flow, certain heat is contained inside underground water, during Groundwater Flow Heat is dispersed into the inside of soil, wastes the heat inside underground water.
Therefore, it is necessary to provide a kind of new pipeline solution above-mentioned technical problem that can collect underground water heat.
Summary of the invention
Underground hydro-thermal can be collected the technical problem to be solved by the present invention is to provide a kind of convenient for quickly collect heat in water The pipeline of amount.
In order to solve the above technical problems, the pipeline provided by the invention that can collect underground water heat includes: pipeline, storage Mechanism, heat-absorbing body, exhaust gear and bindiny mechanism, the stocking mechanism are fixed on the top side wall of the pipeline;The suction Heat engine structure is installed on the inside of the pipeline, and the heat-absorbing body includes connecting tube, fixing pipe, absorbing pipe, flabellum and memotron, The fixing pipe is symmetrically mounted equidistant in the bottom end of the stocking mechanism, and the bottom inner portion of the fixing pipe is rotatablely connected the heat absorption Pipe, and the flabellum is mounted equidistant in the side wall of the absorbing pipe;The inside of the pipeline is installed by the memotron, the memotron Side wall equidistantly tilt the installation connecting tube, the inner rotation of the connecting tube connects the bottom end of the absorbing pipe;The row Mechanism of qi structure is fixed on the top of the memotron, and the inside of the stocking mechanism is protruded on the top of the exhaust gear;It is multiple The bindiny mechanism is installed on the junction of the absorbing pipe Yu the connecting tube and the fixing pipe.
Preferably, the stocking mechanism includes fixed plate and water inlet pipe, and side wall is installed on institute for the fixed plate of arc The top of pipeline is stated, the water inlet pipe is mounted equidistant in the top of the fixed plate.
Preferably, the fixing pipe is mounted equidistant in the bottom end sidewall symmetry of the fixed plate, and the fixing pipe inclination is fixed In the side wall of the pipeline.
Preferably, the exhaust gear includes exhaust pipe, strainer and fixed block, and the exhaust pipe is mounted on the memotron Top, the inside of the fixed plate is protruded on the top of the exhaust pipe through the pipeline;It installs on the top of the exhaust pipe The top of the hemispheric strainer, the strainer is installed by the hemispheric fixed block.
Preferably, the inside of the water inlet pipe is protruded into one end of the fixed block, and the diameter of the fixed block is greater than institute State the diameter of strainer.
Preferably, the bindiny mechanism includes convex block, connection ring, connecting plate and connector sleeve, the absorbing pipe and the company The connector sleeve, the bottom end on the top of the connecting tube and the fixing pipe are installed in the junction of adapter tube and the fixing pipe respectively The connecting plate is installed respectively, the connecting plate is fixedly connected with the inside of the connector sleeve;Pacify respectively at the both ends of the absorbing pipe The connection ring is filled, the convex block, and the convex block, the connection ring and the heat absorption is mounted equidistant in the side wall of the connection ring Pipe is connect with the inner rotation of the connector sleeve, and the inner sidewall of one end of the connecting plate and the connection ring is rotatablely connected.
Preferably, the inside mechanism for installing of the connector sleeve, the fixed mechanism include card slot, protrusion and fixation One end inside of ring, the connecting plate is equipped with the card slot, and the inner sidewall of the card slot is equidistantly equipped with the hemispheric protrusion; One end of the connection ring is fixedly connected with the fixed ring, and the fixed ring is slidably connected with the card slot and the protrusion.
Compared with the relevant technologies, the pipeline provided by the invention that can collect underground water heat has following beneficial to effect Fruit:
The present invention provides a kind of pipeline that can collect underground water heat, when underground water is in the internal flow of the pipeline When, the liquid inside the stocking mechanism enters the inside of the absorbing pipe and the memotron, underground by the fixing pipe The inside that water enters the pipeline is contacted with the side wall of the absorbing pipe and the memotron, and the heat inside underground water enters institute The inside for stating absorbing pipe and the memotron rises the absorbing pipe and the memotron internal liquid temperature, and underground water It is contacted in flowing with the flabellum of the absorbing pipe side wall, to push the flabellum and the absorbing pipe in the pipeline Inner inclination rotation, contacts the liquid inside the absorbing pipe uniformly with underground water, rapidly enters the temperature of underground water The inside of liquid, fluid temperature increase evaporation and are discharged from the inside of exhaust gear, be convenient for people to use, and efficiently use underground water Internal heat.
Detailed description of the invention
Fig. 1 is a kind of structural representation of preferred embodiment of the pipeline provided by the invention that can collect underground water heat Figure;
Fig. 2 is pipeline shown in FIG. 1 and stocking mechanism schematic diagram of internal structure;
Fig. 3 is bindiny mechanism's schematic diagram of internal structure shown in Fig. 2.
Figure label: 1, pipeline, 2, stocking mechanism, 21, fixed plate, 22, water inlet pipe, 3, exhaust gear, 31, exhaust pipe, 32, strainer, 33, fixed block, 4, heat-absorbing body, 41, connecting tube, 42, fixing pipe, 43, absorbing pipe, 44, flabellum, 45, memotron, 5, bindiny mechanism, 51, convex block, 52, connection ring, 53, connecting plate, 54, connector sleeve, 6, fixed mechanism, 61, card slot, 62, protrusion, 63, fixed ring.
Specific embodiment
The invention will be further described with embodiment with reference to the accompanying drawing.
Please refer to Fig. 1, Fig. 2 and Fig. 3, wherein Fig. 1 is the pipeline provided by the invention that can collect underground water heat A kind of preferred embodiment structural schematic diagram;Fig. 2 is pipeline shown in FIG. 1 and stocking mechanism schematic diagram of internal structure;Fig. 3 is Bindiny mechanism's schematic diagram of internal structure shown in Fig. 2.Can collect underground water heat pipeline include: pipeline 1, stocking mechanism 2, Heat-absorbing body 4, exhaust gear 3 and bindiny mechanism 5;
In the specific implementation process, as shown in Figure 1, the stocking mechanism 2 is fixed on the top side wall of the pipeline 1;It inhales Heat engine structure 4, the heat-absorbing body 4 are installed on the inside of the pipeline 1, and the heat-absorbing body 4 includes connecting tube 41, fixing pipe 42, absorbing pipe 43, flabellum 44 and memotron 45, the fixing pipe 42 is symmetrically mounted equidistant in the bottom end of the stocking mechanism 2, described The bottom inner portion of fixing pipe 42 is rotatablely connected the absorbing pipe 43, and the flabellum is mounted equidistant in the side wall of the absorbing pipe 43 44;The memotron 45 is installed in the inside of the pipeline 1, and the side wall of the memotron 45 equidistantly tilts the installation connecting tube 41, the inner rotation of the connecting tube 41 connects the bottom end of the absorbing pipe 43;Exhaust gear 3, the exhaust gear 3 are fixed on The top of the memotron 45, and the inside of the stocking mechanism 2 is protruded on the top of the exhaust gear 3;Bindiny mechanism 5, it is more A bindiny mechanism 5 is installed on the junction of the absorbing pipe 43 and the connecting tube 41 and the fixing pipe 42.
In the specific implementation process, as shown in Fig. 2, the stocking mechanism 2 includes fixed plate 21 and water inlet pipe 22, side wall are The fixed plate 21 of arc is installed on the top of the pipeline 1, and the water inlet pipe is mounted equidistant in the top of the fixed plate 21 22, enter the inside of the hollow fixed plate 21 by the water inlet pipe 22 in order to facilitate liquid.
In the specific implementation process, as shown in Fig. 2, the fixation is mounted equidistant in the bottom end sidewall symmetry of the fixed plate 21 Pipe 42, the fixing pipe 42 tilt the side wall for being fixed on the pipeline 1, and the liquid inside the fixed plate 21 enters for convenience The inside of the fixing pipe 42.
In the specific implementation process, as shown in Fig. 2, the exhaust gear 3 includes exhaust pipe 31, strainer 32 and fixed block 33, the exhaust pipe 31 is mounted on the top of the memotron 45, and institute is protruded into through the pipeline 1 in the top of the exhaust pipe 31 State the inside of fixed plate 21;The top of the exhaust pipe 31 is installed by the hemispheric strainer 32, the top of the strainer 32 The hemispheric fixed block 33 is installed at end, and the gas evaporated inside the memotron 45 for convenience passes through the exhaust pipe 31 Again inside the top that the strainer 32 enters the fixed plate 21, gas is facilitated to be discharged from the inside of the water inlet pipe 22.
In the specific implementation process, as shown in Fig. 2, the inside of the water inlet pipe 22 is protruded into one end of the fixed block 33, And the diameter of the fixed block 33 is greater than the diameter of the strainer 32, enters the fixed plate from the water inlet pipe 22 for convenience Liquid inside 21 is slipped over from the side wall of the fixed block 33, prevents liquid entry into the inside of the strainer 32.
In the specific implementation process, as shown in figure 3, the bindiny mechanism 5 includes convex block 51, connection ring 52, connecting plate 53 With connector sleeve 54, the connector sleeve is installed in the absorbing pipe 43 and the junction of the connecting tube 41 and the fixing pipe 42 respectively 54, the connecting plate 53 is installed in the top of the connecting tube 41 and the bottom end of the fixing pipe 42 respectively, and the connecting plate 53 is solid Surely the inside of the connector sleeve 54 is connected;The both ends of the absorbing pipe 43 are installed by the connection ring 52, the connection ring 52 respectively Side wall be mounted equidistant the convex block 51, and the convex block 51, the connection ring 52 and the absorbing pipe 43 and the connector sleeve The inner sidewall of 54 inner rotation connection, one end of the connecting plate 53 and the connection ring 52 is rotatablely connected, in order to facilitate institute The internal liquid for stating fixing pipe 42 enters the inside of the absorbing pipe 43 through connecting plate 53, and liquid is in the absorbing pipe 43 Flows downward inside enters the inside of the connecting tube 41, and the absorbing pipe 43, in rotation, the absorbing pipe 43 drives institute Connection ring 52 and the convex block 51 are stated in the inner rotation of the connector sleeve 54, the connection ring 52 and the convex block 51 will be described The both ends of absorbing pipe 43 are separately fixed at the inside of the connector sleeve 54, facilitate liquid in the connecting tube 41, the fixing pipe 42 and the absorbing pipe 43 internal flow.
In the specific implementation process, as shown in figure 3, the inside mechanism for installing 6 of the connector sleeve 54, the fixed machine Structure 6 includes card slot 61, protrusion 62 and fixed ring 63, is equipped with the card slot 61, the card slot inside one end of the connecting plate 53 61 inner sidewall is equidistantly equipped with hemispheric described raised 62;One end of the connection ring 52 is fixedly connected with the fixed ring 63, And the fixed ring 63 is slidably connected with the card slot 61 and described raised 62, and for convenience when the connection ring 52 rotation, institute State the inner rotation that connection ring 52 drives the fixed ring 63 in the card slot 61, the fixed ring 63 is by the connecting plate 53 Bottom end package, facilitates liquid in the internal flow of the connecting plate 53 and the absorbing pipe 43, and by the one of the connector sleeve 54 End seal is closed, and prevents liquid from leaking out from the inside of the connector sleeve 54;And the fixed ring 63 is hemispheric described raised 62 One end rotation, reduces the frictional force between the fixed ring 63 and described raised 62, facilitates the rotation of the fixed ring 63.
The working principle of the pipeline provided by the invention that underground water heat can be collected is as follows: by the pipeline 1 and other The pipeline 1 splice, then the spliced pipeline 1 is mounted on ground end, then the pipeline 1 is connected into underground water.It opens The water inlet pipe 22, by liquid by the inside of the water inlet pipe 22, liquid is entered hollow described by the water inlet pipe 22 The inside of fixed plate 21, when liquid enters the inside of the fixed plate 21 by the water inlet pipe 22, the water inlet pipe 22 with The semicircular fixed block 33 contacts, and makes liquid in the side wall slide downward of the fixed block 33 even into the fixed plate 21 both ends, and the diameter of the fixed block 33 is greater than the diameter of the strainer 32, enters the fixation from the water inlet pipe 22 Liquid inside plate 21 is slipped over from the side wall of the fixed block 33, prevents liquid entry into the inside of the strainer 32.Described in inflow The liquid of 21 bottom end of fixed plate enters the inside of the inclined fixing pipe 42, and the liquid is through 42 bottom end of fixing pipe The connecting plate 53, the connection ring 52, the connector sleeve 54 enter the inside of the absorbing pipe 43, and liquid is from the absorbing pipe Flow through the connecting plate 53 for entering 41 top of connecting tube through the connection ring 52 of 43 bottom end of absorbing pipe in 43 inside Inside, liquid runs through the inside that the connecting tube 41 enters the memotron 45 again, liquid made to fill the memotron 45 It is internal.In Groundwater Flow, increase the side wall temperatures of the pipeline 1, inside the fixed plate 21 and the fixed plate 21 Liquid absorption described in 1 side wall of pipeline heat, and the inside of Groundwater Flow and the pipeline 1 and the absorbing pipe 43 and institute The side wall contact of memotron 45 is stated, the heat inside underground water enters the inside of the absorbing pipe 43 and the memotron 45, and Underground water is contacted in flowing with the flabellum 44, to push the flabellum 44 and the absorbing pipe 43 inside the pipeline Tilt rotation contacts the liquid inside the absorbing pipe 43 uniformly with underground water, the temperature of underground water is made to rapidly enter liquid The inside of body;When the absorbing pipe 43 rotates between the connecting tube 41 and the fixing pipe 42,43 band of absorbing pipe The connection ring 52 and the convex block 51 are moved in the inner rotation of the connector sleeve 54, the connection ring 52 and the convex block 51 are solid It is scheduled on the inside of the connector sleeve 54, the both ends of the absorbing pipe 43 are fixed respectively, in the absorbing pipe 43 in the connection Stable rotation between pipe 41 and the fixing pipe 42 facilitates liquid in the connecting tube 41, the fixing pipe 42 and the heat absorption The internal flow of pipe 43;And the connection ring 52, when rotating, the connection ring 52 drives the fixed ring 63 in the card slot 61 Inner rotation, the fixed ring 63 wraps up one end of the connecting plate 53, makes liquid in the connecting plate 53 and the suction The connecting plate 53 is closed with 52 junction of connection ring, prevents liquid from the connector sleeve by the internal flow of heat pipe 43 54 inside leaks out;And the fixed ring 63 is rotated in hemispheric described raised 62 one end, reduce the fixed ring 63 with Frictional force between described raised 62 facilitates the rotation of the fixed ring 63.With flowing to for underground water, in the memotron 45 The liquid evaporation in portion, gas enters inside the top of the fixed plate 21 through the exhaust pipe 31 and the strainer 32, described Gas inside fixed plate 21 and the absorbing pipe 43 is discharged from the inside of the water inlet pipe 22 again, and people is made to use vapor; In use, suitable liquid is often added to the inside of the fixed plate 21 by the water inlet pipe 22.
Compared with the relevant technologies, the pipeline provided by the invention that can collect underground water heat has following beneficial to effect Fruit:
The present invention provides a kind of pipeline that can collect underground water heat, when underground water is in the internal flow of the pipeline 1 When, liquid inside the stocking mechanism 2 enters the interior of the absorbing pipe 43 and the memotron 45 by the fixing pipe 42 Portion, the inside that underground water enters the pipeline 1 is contacted with the side wall of the absorbing pipe 43 and the memotron 45, inside underground water Heat enter the absorbing pipe 43 and the memotron 45 inside, make 45 inside liquid of the absorbing pipe 43 and the memotron Temperature rises, and underground water is contacted in flowing with the flabellum 44 of 43 side wall of absorbing pipe, to push the fan Leaf 44 and the absorbing pipe 43 are rotated in 1 inner inclination of pipeline, make liquid inside the absorbing pipe 43 uniformly with ground It is lauched contact, the temperature of underground water is made to rapidly enter the inside of liquid, fluid temperature increases evaporation and arranges from the inside of exhaust gear 3 Out, it is convenient for people to use, and efficiently uses the heat inside underground water.
The above description is only an embodiment of the present invention, is not intended to limit the scope of the invention, all to utilize this hair Equivalent structure or equivalent flow shift made by bright specification and accompanying drawing content is applied directly or indirectly in other relevant skills Art field, is included within the scope of the present invention.

Claims (7)

1. the pipeline that one kind can collect underground water heat characterized by comprising
Pipeline (1);
Stocking mechanism (2), the stocking mechanism (2) are fixed on the top side wall of the pipeline (1);
Heat-absorbing body (4), the heat-absorbing body (4) are installed on the inside of the pipeline (1), and the heat-absorbing body (4) includes connecting It is symmetrical to take over (41), fixing pipe (42), absorbing pipe (43), flabellum (44) and memotron (45), the bottom end of the stocking mechanism (2) It is mounted equidistant the fixing pipe (42), the bottom inner portion of the fixing pipe (42) is rotatablely connected the absorbing pipe (43), and described The flabellum (44) are mounted equidistant in the side wall of absorbing pipe (43);The memotron (45) is installed in the inside of the pipeline (1), described The side wall of memotron (45) equidistantly tilts the installation connecting tube (41), and the inner rotation of the connecting tube (41) connects the suction The bottom end of heat pipe (43);
Exhaust gear (3), the exhaust gear (3) are fixed on the top of the memotron (45), and the exhaust gear (3) The inside of the stocking mechanism (2) is protruded on top;
Bindiny mechanism (5), multiple bindiny mechanisms (5) are installed on the absorbing pipe (43) and the connecting tube (41) and described The junction of fixing pipe (42).
2. the pipeline according to claim 1 that underground water heat can be collected, which is characterized in that the stocking mechanism (2) Including fixed plate (21) and water inlet pipe (22), side wall is that the fixed plate (21) of arc is installed on the top of the pipeline (1), The water inlet pipe (22) are mounted equidistant in the top of the fixed plate (21).
3. the pipeline according to claim 2 that underground water heat can be collected, which is characterized in that the fixed plate (21) Bottom end sidewall symmetry is mounted equidistant the fixing pipe (42), and the side wall of the pipeline (1) is fixed in fixing pipe (42) inclination.
4. the pipeline according to claim 2 that underground water heat can be collected, which is characterized in that the exhaust gear (3) Including exhaust pipe (31), strainer (32) and fixed block (33), the exhaust pipe (31) is mounted on the top of the memotron (45), The inside of the fixed plate (21) is protruded on the top of the exhaust pipe (31) through the pipeline (1);The exhaust pipe (31) The hemispheric strainer (32) is installed on top, and the hemispheric fixed block (33) is installed on the top of the strainer (32).
5. the pipeline according to claim 4 that underground water heat can be collected, which is characterized in that the fixed block (33) The inside of the water inlet pipe (22) is protruded into one end, and the diameter of the fixed block (33) is greater than the diameter of the strainer (32).
6. the pipeline according to claim 1 that underground water heat can be collected, which is characterized in that the bindiny mechanism (5) Including convex block (51), connection ring (52), connecting plate (53) and connector sleeve (54), the absorbing pipe (43) and the connecting tube (41) It is installed respectively the connector sleeve (54) with the junction of the fixing pipe (42), the top of the connecting tube (41) and the fixation The bottom end of pipe (42) is installed the connecting plate (53) respectively, and the connecting plate (53) is fixedly connected with the interior of the connector sleeve (54) Portion;The both ends of the absorbing pipe (43) are installed the connection ring (52) respectively, and institute is mounted equidistant in the side wall of the connection ring (52) It states convex block (51), and the convex block (51), the connection ring (52) and the absorbing pipe (43) and the connector sleeve (54) is interior Portion's rotation connection, one end of the connecting plate (53) and the inner sidewall of the connection ring (52) are rotatablely connected.
7. the pipeline according to claim 6 that underground water heat can be collected, which is characterized in that the connector sleeve (54) Internal mechanism for installing (6), the fixed mechanism (6) include card slot (61), raised (62) and fixed ring (63), the connection The card slot (61) are equipped with inside one end of plate (53), the inner sidewall of the card slot (61) is equidistantly equipped with the hemispheric protrusion (62);One end of the connection ring (52) is fixedly connected the fixed ring (63), and the fixed ring (63) and the card slot (61) it is slidably connected with raised (62).
CN201811460662.1A 2018-12-01 2018-12-01 Pipeline capable of collecting heat of underground water Active CN109595954B (en)

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Application Number Priority Date Filing Date Title
CN201811460662.1A CN109595954B (en) 2018-12-01 2018-12-01 Pipeline capable of collecting heat of underground water

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Application Number Priority Date Filing Date Title
CN201811460662.1A CN109595954B (en) 2018-12-01 2018-12-01 Pipeline capable of collecting heat of underground water

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CN109595954B CN109595954B (en) 2020-05-22

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110243089A (en) * 2019-06-10 2019-09-17 湖南达道新能源开发有限公司 A kind of double-deck heat exchange pipeline of geothermal energy resources exploitation
CN110260544A (en) * 2019-06-11 2019-09-20 湖南达道新能源开发有限公司 A kind of underground water residual temperature extract equipment

Citations (5)

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Publication number Priority date Publication date Assignee Title
US3834448A (en) * 1969-04-04 1974-09-10 R Cooksley Heat transfer method and apparatus
DE3121757A1 (en) * 1981-06-01 1982-12-16 Fuji Kosan K.K., Kitakyushu, Fukuoka Rotary heat exchanger
CN101275482A (en) * 2007-03-29 2008-10-01 通用电气公司 Apparatus for heating a fluid
CN102261860A (en) * 2011-06-20 2011-11-30 于奎明 Heat exchanger of ground source heat pump
CN104919257A (en) * 2012-12-06 2015-09-16 三管地热公司 Coaxial borehole heat exchanger and method of producing the same

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3834448A (en) * 1969-04-04 1974-09-10 R Cooksley Heat transfer method and apparatus
DE3121757A1 (en) * 1981-06-01 1982-12-16 Fuji Kosan K.K., Kitakyushu, Fukuoka Rotary heat exchanger
CN101275482A (en) * 2007-03-29 2008-10-01 通用电气公司 Apparatus for heating a fluid
CN102261860A (en) * 2011-06-20 2011-11-30 于奎明 Heat exchanger of ground source heat pump
CN104919257A (en) * 2012-12-06 2015-09-16 三管地热公司 Coaxial borehole heat exchanger and method of producing the same

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110243089A (en) * 2019-06-10 2019-09-17 湖南达道新能源开发有限公司 A kind of double-deck heat exchange pipeline of geothermal energy resources exploitation
CN110260544A (en) * 2019-06-11 2019-09-20 湖南达道新能源开发有限公司 A kind of underground water residual temperature extract equipment
CN110260544B (en) * 2019-06-11 2020-11-10 湖南达道新能源开发有限公司 Underground water waste heat extraction equipment

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