CN217979353U - Ground heat source high-efficient heat pump set that utilizes - Google Patents

Ground heat source high-efficient heat pump set that utilizes Download PDF

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Publication number
CN217979353U
CN217979353U CN202221688045.9U CN202221688045U CN217979353U CN 217979353 U CN217979353 U CN 217979353U CN 202221688045 U CN202221688045 U CN 202221688045U CN 217979353 U CN217979353 U CN 217979353U
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China
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heat
heat pump
box
supporting seat
fixedly connected
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CN202221688045.9U
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Chinese (zh)
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高翡
薛智峰
田诚
穆应应
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Xixian New Area Urban Facilities Management Co ltd
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Xixian New Area Urban Facilities Management Co ltd
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Abstract

The utility model discloses a high-efficient heat pump set that utilizes of geothermal source, comprising a supporting seat, the backup pad has all been welded to the left and right sides of supporting seat top surface, the heat pump organism is installed to the inboard of backup pad, the control box is installed to the front side of supporting seat top surface, the back of the body surface mounting of supporting seat has the utilization case, utilize the case to include the box, the front side and the supporting seat and the backup pad welded fastening of box, the vertical welding of center department of box inner chamber bottom has the baffle. The utility model discloses can absorb the use to the cold volume and the heat of the production in the heat pump set working process, heat pump set's energy utilization is higher like this, has solved current heat pump set when using, because of can not absorb the use to the cold volume and the heat that produce in its working process for a large amount of cold volumes and heat have caused the waste of energy in volatilizing external environment, thereby lead to heat pump set to appear the lower problem of energy utilization.

Description

Ground heat source high-efficient heat pump set that utilizes
Technical Field
The utility model relates to a heat pump technical field specifically is a geothermal source high efficiency utilizes heat pump set.
Background
The heat pump is a high-efficiency energy-saving device which makes full use of low-grade heat energy, heat can be spontaneously transmitted from a high-temperature object to a low-temperature object but can not be spontaneously transmitted in the opposite direction, the working principle of the heat pump is a mechanical device which forces the heat to flow from the low-temperature object to the high-temperature object in a reverse circulation mode, and the heat pump can obtain larger heat supply amount only by consuming a small amount of reverse circulation net work, so that the low-grade heat energy which is difficult to apply can be effectively utilized to achieve the purpose of energy saving, the heat pump unit is widely used in modern society, and when the existing heat pump unit is used, the cold and heat generated in the working process can not be absorbed and used, so that a large amount of cold and heat are volatilized into the external environment, the energy is wasted, the problem of low energy utilization rate of the heat pump unit is caused, and the practicability of the heat pump unit is greatly reduced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a ground heat source high efficiency utilizes heat pump set, possess the cold volume and the heat of the production of heat pump set in-process and absorb the advantage of use, solved current heat pump set when using, because of can not absorb the use to the cold volume and the heat that produce in its working process for a large amount of cold volumes and heat volatilize external environment, caused the waste of energy, thereby lead to heat pump set to appear the lower problem of energy utilization.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a ground heat source high efficiency utilizes heat pump set, includes the supporting seat, the backup pad has all been welded to the left and right sides of supporting seat top surface, the heat pump organism is installed to the inboard of backup pad, the control box is installed to the front side of supporting seat top surface, the back of the body surface of supporting seat is installed and is utilized the case, it includes the box to utilize the case, the front side and the supporting seat of box and backup pad welded fastening.
Preferably, the vertical welding of center department of box inner chamber bottom has the baffle, the welding of the top of baffle has lays the board, lay the center department on board top surface through bolt fixedly connected with water injection pump, the rear side fixedly connected with inlet tube of water injection pump intake end.
Preferably, the carriage has all been welded to the left and right sides at box inner chamber top, the sealed apron of bolt fixedly connected with is passed through at the top of carriage, the fixed intercommunication of the play water end of water injection pump has the outlet pipe, the flexible pipe of the equal fixedly connected with in the left and right sides of outlet pipe, the top of sealed apron and the equal fixedly connected with flange dish in the bottom of flexible pipe, two upper and lower flange dishes pass through bolt fixed connection, the surface at sealed apron top and the surface at box top are on same plane, the outer lane at sealed apron top surface and the surface at carriage top all run through and have seted up the connection screw.
Preferably, a first flow transmitter is installed on the water outlet pipe, the bottom of the supporting frame is fixedly connected with the filter screen frame at the left side and the right side of the inner cavity of the box body, the left side and the right side of the bottom at the rear side of the inner cavity of the box body are fixedly communicated with an outer discharge pipe, and a second flow transmitter is installed on the outer discharge pipe.
Preferably, the left side and the right side of the bottom of the front surface of the box body are fixedly connected with heat conducting plates, the front surface of each heat conducting plate is fixedly connected with a heat conducting column, and the rear side of each heat conducting column penetrates through the heat conducting plates and the box body and extends to the inner cavity of the box body.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model discloses a box, the heat-conducting plate, sealed apron, flange plate, the heat conduction post, the outlet pipe, first flow transducer, the inlet tube, the water injection pump, flexible pipe, lay the board, the baffle, the carriage, the filter screen frame, the cooperation of second flow transducer and outer calandria is used, can absorb the use to the cold volume and the heat of the production in the heat pump set working process, heat pump set's energy utilization is higher like this, solved current heat pump set when using, because of can not absorb the use to the cold volume and the heat that produce in its working process, make a large amount of cold volumes and heat volatilize in the external environment, the waste of energy has been caused, thereby lead to heat pump set to appear the lower problem of energy utilization, be worth promoting.
2. The utility model discloses a set up the backup pad, can provide the support to the heat pump organism, through the supporting seat, can provide the support to control box and backup pad, through the carriage, can provide the support to sealed apron.
Drawings
FIG. 1 is an isometric view of the structure of the present invention;
FIG. 2 is an isometric view of the utility model utilizing a box structure;
FIG. 3 is an isometric view of the utility model using a box structure without a sealing cover plate structure;
fig. 4 is a top view of the box structure of the present invention.
In the figure: the heat pump comprises a support base 1, a control box 2, a heat pump body 3, a support plate 4 and a heat conduction plate 5, wherein the heat conduction plate 52, a sealing cover plate 53, a connecting flange plate 54, a heat conduction column 55, a water outlet pipe 56, a first flow transmitter 57, a water inlet pipe 58, a water injection pump 59, a telescopic pipe 510, a 511 placing plate, a 512 partition plate, a 513 support frame, a 514 filter screen frame, a 515 second flow transmitter and an 516 outer discharge pipe.
Detailed Description
Referring to fig. 1-4, a ground heat source high-efficiency utilization heat pump unit comprises a supporting seat 1, supporting plates 4 are welded on the left side and the right side of the top surface of the supporting seat 1, a heat pump body 3 is installed on the inner side of each supporting plate 4, a control box 2 is installed on the front side of the top surface of the supporting seat 1, a utilization box 5 is installed on the back surface of the supporting seat 1, each utilization box 5 comprises a box body 51, the front side of each box body 51 is welded and fixed with the supporting seat 1 and the corresponding supporting plate 4, supporting rods are welded on the left side and the right side of the bottom surface of the control box 2, the bottom of each supporting rod is welded and fixed with the top of the supporting seat 1, positioning blocks are welded on the front side and the back side of the left side and the right side of the supporting seat 1, positioning holes are formed in the top of each positioning block in a penetrating mode, the supporting plates 4 are arranged to support the heat pump body 3, and the supporting plates 2 and the supporting plates 4 are arranged on the supporting seats 1;
a partition plate 512 is vertically welded at the center of the bottom of an inner cavity of the box body 51, a placing plate 511 is welded at the top of the partition plate 512, a water injection pump 59 is fixedly connected at the center of the top surface of the placing plate 511 through a bolt, a water inlet pipe 58 is fixedly connected at the rear side of the water inlet end of the water injection pump 59, and one side of the water inlet pipe 58, which is far away from the water injection pump 59, is communicated with an external water source;
the left side and the right side of the top of the inner cavity of the box body 51 are respectively welded with a supporting frame 513, the top of the supporting frame 513 is fixedly connected with a sealing cover plate 53 through bolts, the water outlet end of a water injection pump 59 is fixedly communicated with a water outlet pipe 56, the left side and the right side of the water outlet pipe 56 are respectively fixedly connected with an expansion pipe 510, the top of the sealing cover plate 53 and the bottom of the expansion pipe 510 are respectively fixedly connected with a connecting flange plate 54, the upper connecting flange plate 54 and the lower connecting flange plate 54 are fixedly connected through bolts, the surface of the top of the sealing cover plate 53 and the surface of the top of the box body 51 are on the same plane, the outer ring of the surface of the top of the sealing cover plate 53 and the surface of the top of the supporting frame 513 are respectively provided with a connecting screw hole in a penetrating manner, and the supporting can be provided for the sealing cover plate 53 through the supporting frame 513;
a first flow transmitter 57 is installed on the water outlet pipe 56, a filter screen frame 514 is fixedly connected to the left and right sides of the inner cavity of the box body 51 and the bottom of the supporting frame 513, outer discharge pipes 516 are fixedly communicated with the left and right sides of the bottom of the rear side of the inner cavity of the box body 51, and a second flow transmitter 515 is installed on the outer discharge pipes 516;
the left side and the right side of the bottom of the front surface of the box body 51 are fixedly connected with heat conducting plates 52, the front surface of the heat conducting plates 52 is fixedly connected with heat conducting columns 55, the rear sides of the heat conducting columns 55 penetrate through the heat conducting plates 52 and the box body 51 and extend to the inner cavity of the box body 51, the output end of the control box 2 is electrically connected with the input ends of the heat pump body 3, the water injection pump 59, the first flow transmitter 57 and the second flow transmitter 515 respectively, the front sides of the heat conducting columns 55 are communicated with the working end of the heat pump body 3, the inner cavity of the box body 51 is divided into two areas by the partition plate 512, the left side is a cold water area, and the right side is a hot water area.
When the cold water heat pump is used, according to the specific use requirement of a user, the control box 2 is used for controlling the running state of the heat pump body 3, when the heat pump body 3 is in a heat supply state, the control box 2 is used for starting the water injection pump 59 and the first flow transmitter 57 on the left side, external water is introduced into the left side of the inner cavity of the box body 51, the water is filtered by the filter screen frame 514 in the water injection process, the heat pump body 3 generates a large amount of cold energy in the heat exchange process, the cold energy is introduced into the box body 51 through the heat conduction column 55 on the left side, the water in the box body 51 is refrigerated, cold water is obtained, the obtained cold water can meet the use requirement of cold water of the user, when the cold water needs to be used, the second flow transmitter 515 on the left side of the box body 51 is started through the control box 2, the cold water on the left side can be discharged for use, and the waste of a large amount of cold energy is avoided; when heat pump body 3 is in the cooling state, utilize control box 2, open water injection pump 59 and the first flow transducer 57 on right side, introduce the right side of box 51 inner chamber with external water, the water injection in-process is filtered by filter screen frame 514, heat pump body 3 produces a large amount of heats at the heat transfer in-process, heat conduction post 55 on right side draws cold volume into box 51, heat the water in box 51, thereby obtain hot water, the hot water that obtains can satisfy user's hot water user demand, when needing to use hot water, utilize control box 2 to open second flow transducer 515 on right side can be discharged the hot water on box 51 right side and use, avoid the waste of a large amount of heats.
In conclusion: the heat pump unit capable of efficiently utilizing the geothermal source solves the problems that when an existing heat pump unit is used, a large amount of cold and heat are volatilized to the external environment and energy is wasted, and accordingly the energy utilization rate of the heat pump unit is low.

Claims (5)

1. The utility model provides a ground heat source high efficiency utilizes heat pump set, includes supporting seat (1), its characterized in that: backup pad (4) have all been welded to the left and right sides of supporting seat (1) top surface, heat pump organism (3) are installed to the inboard of backup pad (4), control box (2) are installed to the front side of supporting seat (1) top surface, the back of the body surface of supporting seat (1) is installed and is utilized case (5), utilize case (5) to include box (51), the front side and supporting seat (1) and backup pad (4) welded fastening of box (51).
2. The heat pump unit for efficiently utilizing the geothermal source according to claim 1, wherein: the water injection tank is characterized in that a partition plate (512) is vertically welded at the center of the bottom of an inner cavity of the tank body (51), a placing plate (511) is welded at the top of the partition plate (512), a water injection pump (59) is fixedly connected to the center of the top surface of the placing plate (511), and a water inlet pipe (58) is fixedly connected to the rear side of a water inlet end of the water injection pump (59).
3. The heat pump unit for efficiently utilizing the geothermal source according to claim 2, wherein: all welded the carriage (513) in the left and right sides at box (51) inner chamber top, the sealed apron of bolt fixedly connected with (53) is passed through at the top of carriage (513), the fixed intercommunication of the play water end of water injection pump (59) has outlet pipe (56), the equal fixedly connected with of the left and right sides of outlet pipe (56) is flexible pipe (510), the equal fixedly connected with flange dish (54) in the top of sealed apron (53) and the bottom of flexible pipe (510), two upper and lower flange dishes (54) are through bolt fixed connection, the surface at sealed apron (53) top and the surface at box (51) top are on same plane, the outer lane at sealed apron (53) top surface and the surface at carriage (513) top all run through and have seted up the connection screw.
4. A geothermal source high-efficiency heat pump unit according to claim 3, wherein: the water outlet pipe (56) is provided with a first flow transmitter (57), the left side and the right side of the inner cavity of the box body (51) are fixedly connected with a filter screen frame (514) at the bottom of the supporting frame (513), the left side and the right side of the bottom of the rear side of the inner cavity of the box body (51) are fixedly communicated with an outer discharge pipe (516), and the outer discharge pipe (516) is provided with a second flow transmitter (515).
5. The heat pump unit for efficiently utilizing the geothermal source according to claim 2, wherein: the heat-conducting plate (52) is fixedly connected to the left side and the right side of the bottom of the front surface of the box body (51), the heat-conducting columns (55) are fixedly connected to the front surface of the heat-conducting plate (52), and the rear sides of the heat-conducting columns (55) penetrate through the heat-conducting plate (52) and the box body (51) and extend to the inner cavity of the box body (51).
CN202221688045.9U 2022-07-01 2022-07-01 Ground heat source high-efficient heat pump set that utilizes Active CN217979353U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221688045.9U CN217979353U (en) 2022-07-01 2022-07-01 Ground heat source high-efficient heat pump set that utilizes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221688045.9U CN217979353U (en) 2022-07-01 2022-07-01 Ground heat source high-efficient heat pump set that utilizes

Publications (1)

Publication Number Publication Date
CN217979353U true CN217979353U (en) 2022-12-06

Family

ID=84275851

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221688045.9U Active CN217979353U (en) 2022-07-01 2022-07-01 Ground heat source high-efficient heat pump set that utilizes

Country Status (1)

Country Link
CN (1) CN217979353U (en)

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