CN211781958U - Heat exchange device of air energy heat pump - Google Patents

Heat exchange device of air energy heat pump Download PDF

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Publication number
CN211781958U
CN211781958U CN201922412098.2U CN201922412098U CN211781958U CN 211781958 U CN211781958 U CN 211781958U CN 201922412098 U CN201922412098 U CN 201922412098U CN 211781958 U CN211781958 U CN 211781958U
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China
Prior art keywords
heat pump
water tank
air energy
heat exchange
air
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CN201922412098.2U
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Chinese (zh)
Inventor
赵密升
李建国
刘振乐
徐子超
严铁牛
赵林
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Longchuan Niuentai New Energy Technology Development Co Ltd
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Longchuan Niuentai New Energy Technology Development Co Ltd
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Abstract

The utility model discloses a heat exchange device of an air energy heat pump, which comprises an air energy heat pump body, wherein the lower surface of the air energy heat pump body is connected with an equipment box, one side of the lower surface inside the equipment box is connected with a water tank, the other side of the lower surface inside the equipment box is connected with a heat exchange box, the upper surface of the water tank is provided with a cleaning mechanism, and a detection mechanism is arranged inside the water tank; through the stirring leaf, the setting of inductor and valve of weighing, prevent to influence the heat conduction effect of air energy heat pump because of the incrustation scale, make the equipment heat of heat transfer incasement be difficult to conduct away, easily produce the condition of exploding the pipe because of the high temperature, dangerous accident takes place, through the time-recorder, buzzer and liquid level detector's setting, make the controller time through the time-recorder, after reaching the settlement time, the liquid level data in the water tank does not change, then buzzer is given to controller transmission signal, buzzer sends out the police dispatch newspaper, prevent to cause the damage of air energy heat pump.

Description

Heat exchange device of air energy heat pump
Technical Field
The utility model relates to an air energy heat pump technical field, concretely relates to air energy heat pump's heat transfer device.
Background
The air energy heat pump generates heat energy by utilizing the energy in the air, can provide different hot water and cold and warm requirements of a whole family in large water quantity, high water pressure and constant temperature within twenty-four hours all day, and can simultaneously meet the requirements by consuming the least energy.
The prior art has the following problems:
1. the incrustation scale is easily condensed to the water tank in the air energy heat pump and the pipeline inner wall in long-term use of air energy heat pump, and the heat conductivility of incrustation scale is relatively poor, makes the heat-conduction effect who influences air energy heat pump, makes the equipment heat in the heat transfer incasement be difficult to conduct away, easily because of the condition of high temperature production fried pipe, takes place dangerous accident.
2. When the water storage equipment in the air energy heat pump breaks down, water in the water tank is difficult to supply timely after being used up, and a user is difficult to timely know that the air energy heat pump breaks down, so that the air energy heat pump is dried and burned, and the equipment is damaged.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a heat transfer device of air energy heat pump, through the stirring leaf, the setting of inductor and valve of weighing, make the difficult incrustation scale that condenses of water tank and pipeline inner wall in the air energy heat pump, prevent to influence the heat-conduction effect of air energy heat pump because of the incrustation scale, make the equipment heat in the heat transfer incasement be difficult to conduct away, easily because of the condition of high temperature production fried pipe, dangerous accident takes place, through the time-recorder, buzzer and liquid level detector's setting, prevent to cause the damage of air energy heat pump, with the above-mentioned weak point in the solution technique.
In order to achieve the above object, the present invention provides the following technical solutions: the utility model provides an air can heat pump's heat transfer device, includes air can heat pump body, air can heat pump body lower surface is connected with the equipment box, equipment incasement portion lower surface one side is connected with the water tank, equipment incasement portion lower surface opposite side is connected with the heat transfer case, the water tank upper surface is equipped with clean mechanism, the inside detection mechanism that is equipped with of water tank, clean mechanism includes pan feeding pipe, support frame, spring, valve, the inductor of weighing and material case, water tank upper surface one side is connected with the pan feeding pipe, pan feeding pipe upper end is connected with the material case, pan feeding pipe lateral wall below is connected with the valve, material case lateral wall is equipped with the support frame, the inside lower surface outside of support frame is connected with the spring, support frame lower surface intermediate position department.
Preferably, the size of the support frame is the same as that of the material box.
Preferably, the middle position of the upper surface of the water tank is connected with a motor.
Preferably, the position of the upper surface inside the water tank corresponding to the motor is connected with a rotating shaft.
Preferably, the outer side wall of the rotating shaft is connected with a stirring blade.
Preferably, the number of the springs is four, and the four springs are respectively distributed at four corners of the inner lower surface of the support frame.
Preferably, the detection mechanism comprises a liquid level detector, and one side of the inner side wall of the water tank is connected with the liquid level detector.
Preferably, the detection mechanism further comprises a timer, and the timer is connected to one side of the outer side wall of the water tank.
Preferably, the detection mechanism further comprises a buzzer, and the buzzer is connected to the outer side wall of the water tank close to the lower part of the timer.
In the technical scheme, the utility model provides a technological effect and advantage:
1. through the stirring leaf, the setting of inductor and valve of weighing, make the air energy heat pump after adorning water, user's accessible air energy heat pump controller operates, make air energy heat pump controller transmission signal give motor and valve, the motor drives the stirring leaf and stirs rivers, the valve is opened and is carried out the input of scale remover, the inductor of weighing carries out the detection of material case weight change, and transmission signal gives the controller when reducing data and reaching the setting value, controller transmission signal closes the valve, make the water tank in the air energy heat pump and the difficult incrustation scale that condenses of pipeline inner wall, prevent to influence the heat-conduction effect of air energy heat pump because of the incrustation scale, make the equipment heat in the heat transfer incasement be difficult to conduct away, easily explode the condition of producing the pipe because of the high temperature, dangerous accident takes.
2. Through the setting of time-recorder, bee calling organ and liquid level detector, make liquid level detector when detecting the liquid level in the water tank and be less than the settlement liquid level, the transmission signal gives air energy heat pump controller, the controller times through the time-recorder, after reaching the settlement time, liquid level data in the water tank does not change, then bee calling organ is given to the controller transmission signal, bee calling organ sends out the police dispatch newspaper and tells that user's air energy heat pump breaks down, must in time overhaul, prevent to cause the damage of air energy heat pump.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present invention, and other drawings can be obtained by those skilled in the art according to these drawings.
Fig. 1 is a schematic view of the present invention.
Fig. 2 is the inside schematic view of the equipment box of the present invention.
Fig. 3 is a schematic view of the cleaning mechanism of the present invention.
Fig. 4 is an enlarged schematic view of a portion a of fig. 3 according to the present invention.
Fig. 5 is a schematic view of the detection mechanism of the present invention.
Description of reference numerals:
1. an air-source heat pump body; 2. an equipment box; 3. a heat exchange box; 4. a water tank; 5. a cleaning mechanism; 51. a rotating shaft; 52. a motor; 53. a feeding pipe; 54. stirring blades; 55. a support frame; 56. a spring; 57. a valve; 58. a weighing sensor; 59. a material box; 6. a detection mechanism; 61. a timer; 62. a buzzer; 63. a liquid level detector.
Detailed Description
In order to make the technical solution of the present invention better understood by those skilled in the art, the present invention will be further described in detail with reference to the accompanying drawings.
The utility model provides a heat exchange device of an air energy heat pump as shown in figures 1-5, which comprises an air energy heat pump body 1, wherein the lower surface of the air energy heat pump body 1 is connected with an equipment box 2, one side of the lower surface in the equipment box 2 is connected with a water tank 4, the other side of the lower surface in the equipment box 2 is connected with a heat exchange box 3, the upper surface of the water tank 4 is provided with a cleaning mechanism 5, the inside of the water tank 4 is provided with a detection mechanism 6, the cleaning mechanism 5 comprises a feeding pipe 53, a support frame 55 and a spring 56, valve 57, weighing inductor 58 and material case 59, water tank 4 upper surface one side is connected with pan feeding pipe 53, and pan feeding pipe 53 upper end is connected with material case 59, and pan feeding pipe 53 lateral wall below is connected with valve 57, and material case 59 lateral wall is equipped with support frame 55, and the inside lower surface outside of support frame 55 is connected with spring 56, and support frame 55 lower surface intermediate position department is connected with weighing inductor 58.
Further, in the above technical solution, the size of the supporting frame 55 is the same as the size of the material tank 59; the material tank 59 can slide up and down in the support frame 55.
Further, in the above technical solution, the middle position of the upper surface of the water tank 4 is connected with a motor 52; so that the motor 52 drives the stirring blade 54 on the rotating shaft 51 to fully mix the descaling agent.
Further, in the above technical solution, the position of the upper surface inside the water tank 4 corresponding to the motor 52 is connected with the rotating shaft 51; so that the motor 52 drives the stirring blade 54 on the rotating shaft 51 to fully mix the descaling agent.
Further, in the above technical solution, the outer side wall of the rotating shaft 51 is connected with a stirring blade 54; so that the motor 52 drives the stirring blade 54 on the rotating shaft 51 to fully mix the descaling agent.
Further, in the above technical solution, the number of the springs 56 is four, and the four springs 56 are respectively distributed at four corners of the inner lower surface of the supporting frame 55; it is convenient to support the material tank 59 and to keep the material tank 59 stable.
Further, in the above technical solution, the detection mechanism 6 includes a liquid level detector 63, and one side of the inner side wall of the water tank 4 is connected with the liquid level detector 63; facilitating the detection of the liquid level inside the water tank 4.
Further, in the above technical solution, the detection mechanism 6 further includes a timer 61, and one side of the outer side wall of the water tank 4 is connected with the timer 61; so that the timing is performed when the liquid level in the water tank 4 is lowered to a set value.
Further, in the above technical solution, the detection mechanism 6 further includes a buzzer 62, and the buzzer 62 is connected to the outer side wall of the water tank 4 below the timer 61; it is convenient to give out buzzing to inform the user.
In the utility model, the motor 52 is a motor sold by Taizhou Langbo motor Co., Ltd, and has a model number of Y2-160L-4 pole type; the valve 57 is an electric valve which is sold by a Tianfei Haitai valve source manufacturer and has the model of CWX-25S; the weighing sensor 58 is a weighing sensor sold by Xiamen Enlai Automation technology, Inc. with model number ELCLY; the timer 61 is a digital clock sold by Shenzhen alpha network technology Limited and of HX-102 type; the buzzer 62 is a miniature buzzer of the type RSBJ-1 sold by Dahua electronics Inc. of Jiangsu; the liquid level detector 63 is sold by southern Thailand software technology Limited in Shenzhen, and the model is TG8100 type.
This practical theory of operation: through the arrangement of the stirring blade 54, the weighing sensor 58 and the valve 57, after the air-source heat pump is filled with water, a user can operate through the air-source heat pump controller, the air-source heat pump controller transmits signals to the motor 52 and the valve 57, the motor 52 drives the stirring blade 54 to stir water flow, the valve 57 is opened to put in a descaling agent, the weighing sensor 58 detects the weight change of the material tank 59 and transmits signals to the controller when the reduction data reaches a set value, the controller transmits signals to close the valve 57, so that the water tank 4 and the inner wall of a pipeline in the air-source heat pump are not easy to condense scale, the heat conduction effect of the air-source heat pump is prevented from being influenced by the scale, the equipment heat in the heat exchange tank 3 is difficult to conduct away, the pipe explosion condition caused by high temperature is easy to occur, the accident danger is caused, and when the liquid level detector 63 detects that the liquid level in the water tank 4 is lower than the set liquid level through the arrangement of, the controller transmits a signal to the air energy heat pump controller, the controller times through the timer 61, after the set time is reached, the liquid level data in the water tank 4 is not changed, the controller transmits a signal to the buzzer 62, the buzzer 62 gives an alarm to inform a user that the air energy heat pump is in fault, the air energy heat pump needs to be overhauled in time, and damage to the air energy heat pump is prevented.
While certain exemplary embodiments of the present invention have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that the described embodiments may be modified in various different ways without departing from the spirit and scope of the present invention. Accordingly, the drawings and description are illustrative in nature and should not be construed as limiting the scope of the invention.

Claims (9)

1. A heat exchange device of an air energy heat pump comprises an air energy heat pump body (1), wherein an equipment box (2) is connected to the lower surface of the air energy heat pump body (1), a water tank (4) is connected to one side of the inner lower surface of the equipment box (2), and a heat exchange box (3) is connected to the other side of the inner lower surface of the equipment box (2), and is characterized in that a cleaning mechanism (5) is arranged on the upper surface of the water tank (4), a detection mechanism (6) is arranged inside the water tank (4), the cleaning mechanism (5) comprises a feeding pipe (53), a support frame (55), a spring (56), a valve (57), a weighing inductor (58) and a material box (59), the feeding pipe (53) is connected to one side of the upper surface of the water tank (4), the material box (59) is connected to the upper end of the feeding pipe (53), and the valve (57, the outer side wall of the material box (59) is provided with a support frame (55), the outer side of the lower surface inside the support frame (55) is connected with a spring (56), and the middle position of the lower surface of the support frame (55) is connected with a weighing inductor (58).
2. The heat exchange device of an air-source heat pump according to claim 1, characterized in that the size of the support frame (55) is the same as the size of the material tank (59).
3. The heat exchange device of an air-source heat pump according to claim 1, characterized in that a motor (52) is connected to the middle position of the upper surface of the water tank (4).
4. A heat exchange device of an air-source heat pump according to claim 3, characterized in that a rotating shaft (51) is connected to the inner upper surface of the water tank (4) at the position corresponding to the motor (52).
5. The heat exchange device of the air-source heat pump as claimed in claim 4, wherein the outer side wall of the rotating shaft (51) is connected with stirring blades (54).
6. The heat exchange device of an air-source heat pump according to claim 1, wherein the number of the springs (56) is four, and four springs (56) are respectively distributed at four corners of the inner lower surface of the support frame (55).
7. The heat exchange device of an air-source heat pump according to claim 1, wherein the detection mechanism (6) comprises a liquid level detector (63), and the liquid level detector (63) is connected to one side of the inner side wall of the water tank (4).
8. The heat exchange device of an air-source heat pump according to claim 1, wherein the detection mechanism (6) further comprises a timer (61), and the timer (61) is connected to one side of the outer side wall of the water tank (4).
9. The heat exchange device of an air-source heat pump according to claim 8, wherein the detection mechanism (6) further comprises a buzzer (62), and the buzzer (62) is connected to the outer side wall of the water tank (4) close to the lower part of the timer (61).
CN201922412098.2U 2019-12-28 2019-12-28 Heat exchange device of air energy heat pump Active CN211781958U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922412098.2U CN211781958U (en) 2019-12-28 2019-12-28 Heat exchange device of air energy heat pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922412098.2U CN211781958U (en) 2019-12-28 2019-12-28 Heat exchange device of air energy heat pump

Publications (1)

Publication Number Publication Date
CN211781958U true CN211781958U (en) 2020-10-27

Family

ID=72977177

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922412098.2U Active CN211781958U (en) 2019-12-28 2019-12-28 Heat exchange device of air energy heat pump

Country Status (1)

Country Link
CN (1) CN211781958U (en)

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