CN210441472U - Refrigeration cooling system - Google Patents

Refrigeration cooling system Download PDF

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Publication number
CN210441472U
CN210441472U CN201920739673.7U CN201920739673U CN210441472U CN 210441472 U CN210441472 U CN 210441472U CN 201920739673 U CN201920739673 U CN 201920739673U CN 210441472 U CN210441472 U CN 210441472U
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circulating pump
exhaust unit
air exhaust
motor
refrigeration
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CN201920739673.7U
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陈泳佑
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Abstract

The utility model discloses a refrigeration heat dissipation system, which comprises a power supply device, a control device, a refrigeration assembly and a heat dissipation assembly; the refrigerating assembly comprises a refrigerating sheet, a first circulating pump, a first motor, a first liquid storage tank and a first air exhaust unit; the heat dissipation assembly comprises a second circulating pump, a second motor, a second liquid storage tank and a second air exhaust unit; the power supply device is respectively and electrically connected with the control device, the refrigerating sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit; the control device is respectively electrically connected with the refrigeration sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit. The utility model has the advantages of simple and reasonable structure, green and it does not need the piece that heats, only utilizes the refrigeration piece to come simultaneous manufacturing steam and air conditioning to manufacturing cost has been practiced thrift.

Description

Refrigeration cooling system
Technical Field
The utility model relates to a refrigeration plant technical field specifically relates to a refrigeration cooling system.
Background
In the past, many places such as a sofa and a mattress in a home are equipped with cooling and heating apparatuses, which generally cool or heat a liquid by a cooling or heating sheet, produce cold or hot water to lower or raise the temperature of the surrounding air, and finally transmit the air having the lowered or raised temperature to the mattress or the sofa to lower the temperature of the mattress or the sofa, and then people can feel comfortable when sitting on the mattress or the sofa. However, the structure of the existing refrigerating and heating equipment is generally complex, and the refrigerating and heating sheets are required to respectively produce cold air and hot air, which undoubtedly increases certain production cost.
SUMMERY OF THE UTILITY MODEL
To the problem that prior art exists above, the utility model aims at providing a refrigeration cooling system, its simple structure, green and it need not heat the piece and only utilizes the refrigeration piece to make air conditioning and steam simultaneously to manufacturing cost has been practiced thrift.
In order to realize the purpose, the technical scheme of the utility model is that: a refrigeration heat dissipation system comprises a power supply device, a control device, a refrigeration assembly and a heat dissipation assembly;
the refrigeration assembly comprises a refrigeration piece, a first circulating pump, a first motor, a first liquid storage tank and a first air exhaust unit, the first motor is connected with the first circulating pump, the refrigeration piece comprises a cold end and a hot end, the cold end of the refrigeration piece is tightly attached to the outer wall of the first circulating pump, the outlet of the first circulating pump is connected with the liquid inlet of the first liquid storage tank through a first circulating pipe, the inlet of the first circulating pump is connected with the liquid outlet of the first liquid storage tank through a second circulating pipe, and the first air exhaust unit is tightly attached to the outer wall of the first liquid storage tank;
the heat dissipation assembly comprises a second circulating pump, a second motor, a second liquid storage tank and a second air exhaust unit, the second motor is connected with the second circulating pump, the hot end of the refrigerating sheet is tightly attached to the outer wall of the second circulating pump, the outlet of the second circulating pump is connected with the liquid inlet of the second liquid storage tank through a third circulating pipe, the inlet of the second circulating pump is connected with the liquid outlet of the second liquid storage tank through a fourth circulating pipe, and the second air exhaust unit is tightly attached to the outer wall of the second liquid storage tank;
the power supply device is respectively and electrically connected with the control device, the refrigerating sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit;
the control device is respectively electrically connected with the refrigeration sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit.
For the additional structure of the above technical scheme, the following scheme is also included:
as a specific embodiment, the refrigeration and heat dissipation system further comprises a housing, wherein the control device, the refrigeration assembly and the heat dissipation assembly are arranged in the housing; and the side surface of the shell is provided with a heat exhaust port aligned with the second air exhaust unit.
Further, a control panel and a display screen are arranged at the top of the shell, and the control panel and the display screen are electrically connected with the control device.
As a specific embodiment, the refrigeration system further comprises an air supply pipe, one end of the air supply pipe is connected with the first air exhaust unit or the second air exhaust unit through an adapter, and the other end of the air supply pipe is connected with a mattress or a sofa.
As a specific embodiment, the power supply device includes a storage battery, the storage battery is disposed in the housing, and the storage battery is electrically connected to the control device, the refrigeration sheet, the first circulation pump, the first motor, the first air exhaust unit, the second circulation pump, the second motor, and the second air exhaust unit, respectively.
As a specific embodiment, a liquid filling port for adding liquid is arranged on the first liquid storage tank.
As a specific embodiment, a liquid filling port for adding liquid is arranged on the second liquid storage tank.
The utility model has the advantages that:
(1) the utility model refrigerates and heats the liquid in the first circulating pump and the second circulating pump through the refrigerating sheet; a circulation loop is formed among the first circulating pump, the first liquid storage tank, the first circulating pipe and the second circulating pipe, and another circulation loop is formed among the second circulating pump, the second liquid storage tank, the third circulating pipe and the fourth circulating pipe, so that liquid in the first liquid storage tank and the second liquid storage tank can be recycled, and the energy conservation and the environmental protection are realized; moreover, a loop formed by the first circulating pump, the first liquid storage tank, the first circulating pipe and the second circulating pipe discharges cold air to a mattress or a sofa and the like through the first air exhaust unit so as to achieve the effect of conveying cold air; and the circulation circuit that constitutes between second circulating pump, second liquid reserve tank, third circulating pipe and the fourth circulating pipe can reduce the temperature of refrigeration piece hot junction effectively, makes the refrigeration effect of refrigeration piece promote, simultaneously, through the second unit of airing exhaust can discharge these steam to places such as mattress or sofa when siphoning away the heat to the second liquid reserve tank, so, the utility model discloses an utilize when radiator unit carries out the heat dissipation to the steam that looses and utilize, make these steam can enter into places such as mattress or sofa, thereby reach the effect of carrying steam, the refrigeration piece has adopted water-cooling radiating's mode moreover, so can better spill steam, thereby need not use the heating piece. Synthesize, the utility model discloses only utilize the refrigeration piece to come simultaneous manufacturing air conditioning and steam, simple structure is reasonable, green and reduced manufacturing cost.
(2) The utility model discloses a control panel can input and adjust the refrigerated temperature of refrigeration piece, the rotational speed of first circulating pump and second circulating pump and the rotational speed of first unit and the second unit of airing exhaust etc. control panel sends the instruction of input or regulation refrigeration to controlling means, controlling means receives the refrigeration temperature of control and regulation refrigeration piece, the rotational speed of first circulating pump and second circulating pump and the rotational speed of first unit and the second unit of airing exhaust etc. after the instruction, it is fairly convenient to adjust, degree of automation is high; simultaneously, controlling means can show refrigerated real-time temperature, the rotational speed of first circulating pump and second circulating pump and the rotational speed of first unit and the second unit of airing exhaust etc. through the display screen directly perceivedly during operating condition to make things convenient for the user to know the operating condition of machine.
(3) The utility model discloses have the battery certainly, when not having the external power supply, can supply power for the machine through the battery, controlling means has the effect that the intelligent protection was opened to the battery overcharge overdischarge and automatic switching simultaneously, and when the electric quantity of battery was in the surplus electric state of protection, controlling means cut off the battery, this cooling heat system stop work.
Drawings
Fig. 1 is a schematic overall structure diagram of a first embodiment of the present invention;
fig. 2 is a schematic view of the overall structure of the second embodiment of the present invention.
Reference numerals:
1. a refrigeration plate; 2. a first circulation pump; 3. a first motor; 4. a first liquid storage tank; 5. a first discharge unit; 11. a second circulation pump; 12. a second motor; 13. a second liquid storage tank; 14. a second air exhaust unit; 21. a housing; 22. a heat exhaust port; 23. a control panel; 24. a display screen; 31. an air supply pipe; 32. an adapter; 33. a mattress; 50. a heat sink; 100. a first circulation pipe; 101. a second circulation pipe; 102. a third circulation pipe; 103. a fourth circulation pipe.
Detailed Description
The invention will be further elucidated with reference to the drawings and the embodiments, which are exemplary only and do not limit the scope of the invention.
The first embodiment is as follows:
as shown in fig. 1, a cooling heat dissipation system includes a power supply device, a control device, a cooling component, and a heat dissipation component;
the refrigeration assembly comprises a refrigeration piece 1, a first circulating pump 2, a first motor 3, a first liquid storage tank 4 and a first air exhaust unit 5, the first motor 3 is connected with the first circulating pump 2, the refrigeration piece 1 comprises a cold end and a hot end, the cold end of the refrigeration piece 1 is tightly attached to the outer wall of the first circulating pump 2, the outlet of the first circulating pump 2 is connected with the liquid inlet of the first liquid storage tank 4 through a first circulating pipe 100, the outlet of the first circulating pump 2 is connected with the liquid outlet of the first liquid storage tank 4 through a second circulating pipe 101, and the first air exhaust unit 5 is tightly attached to the outer wall of the first liquid storage tank 4;
the heat dissipation assembly comprises a second circulating pump 11, a second motor 12, a second liquid storage tank 13 and a second air exhaust unit 14, the second motor 12 is connected with the second circulating pump 11, the hot end of the refrigeration sheet 1 is tightly attached to the outer wall of the second circulating pump 11, the outlet of the second circulating pump 11 is connected with the liquid inlet of the second liquid storage tank 13 through a third circulating pipe 103, the inlet of the second circulating pump 11 is connected with the liquid outlet of the second liquid storage tank 13 through a fourth circulating pipe 103, and the second air exhaust unit 14 is tightly attached to the outer wall of the second liquid storage tank 13;
the power supply device is respectively and electrically connected with the control device, the refrigerating sheet 1, the first circulating pump 2, the first motor 3, the first air exhaust unit 5, the second circulating pump 11, the second motor 12 and the second air exhaust unit 14;
the control device is respectively and electrically connected with the refrigeration piece 1, the first circulating pump 2, the first motor 3, the first air exhaust unit 5, the second circulating pump 11, the second motor 12 and the second air exhaust unit 14. Preferably, the four circulating pipes are made of silica gel; the first exhaust unit 5 and the second exhaust unit 14 may be fans or blowers or the like; in order to improve heat dissipation, two or more second exhaust units 14 may be provided.
The refrigeration and heat dissipation system also comprises a shell 21, wherein the control device, the refrigeration assembly and the heat dissipation assembly are arranged in the shell; a heat exhaust port 22 aligned with the second exhaust unit 14 is also provided on the side of the casing 21. Preferably, shell 21 can choose for use the aluminium alloy to make, and aluminium alloy coefficient of heat conductivity is high, has improved widely the utility model discloses refrigeration cooling system's radiating effect.
A control panel 23 and a display screen 24 are arranged on the top of the housing 21, and the control panel 23 and the display screen 24 are electrically connected with the control device. The refrigerating temperature of the refrigerating sheet 1, the rotating speeds of the first circulating pump 2 and the second circulating pump 11, the rotating speeds of the first air exhaust unit 5 and the second air exhaust unit 14 and the like can be input and adjusted through the control panel 23, the control panel 23 sends an input instruction or adjustment refrigerating to the control device, the control device receives the instruction and then controls and adjusts the refrigerating temperature of the refrigerating sheet 1, the rotating speeds of the first circulating pump 2 and the second circulating pump 11, the rotating speeds of the first air exhaust unit 5 and the second air exhaust unit 14 and the like, the adjustment is quite convenient, and the degree of automation is high; meanwhile, the control device can visually display the real-time temperature of refrigeration, the rotating speeds of the first circulating pump 2 and the second circulating pump 11, the rotating speeds of the first air exhaust unit 5 and the second air exhaust unit 14 and the like in the working state through the display screen 24, so that a user can conveniently know the working state of the machine.
The refrigerating system further includes an air supply pipe 31, one end of the air supply pipe 31 is connected to the first air discharge unit 5 or the second air discharge unit 14 through an adapter 32, and the other end is connected to a mattress 33 or a sofa, etc. to supply cold air or hot air to the mattress 33 or the sofa, etc., and particularly, the air outlet of the first air discharge unit 5 or the second air discharge unit 14 is aligned with the inside of the air supply pipe 31 through the connection of the adapter 32, so that the discharged air can be introduced into the air supply pipe 31, and one end of the air supply pipe 31 is communicated with the inside of the mattress 33 or the sofa, etc., so that the temperature of the mattress 33 or the sofa, etc. can be lowered more rapidly. Of course, two air supply pipes 31 may be provided, and the two air supply pipes 31 are connected to the first exhaust unit 5 and the second exhaust unit 14 through one adapter 32, respectively.
The power supply device comprises a storage battery, the storage battery is arranged in the shell 21, and the storage battery is electrically connected with the control device, the refrigerating sheet 1, the first circulating pump 2, the first motor 3, the first air exhaust unit 5, the second circulating pump 11, the second motor 12 and the second air exhaust unit 13 respectively. This refrigeration cooling system is through taking the battery certainly, and when the outside power supply that does not have power supply unit, the battery can supply power for whole system, can detect the power consumption condition of battery through controlling means, and controlling means has the effect that overcharge overdischarge and automatic rotation opened intelligent protection function to the battery, and when the electric quantity of battery was in the protection odd-numbered state, controlling means cut off the battery, and the system stop work. When power is supplied from the outside of the power supply device, the power supply device supplies power to the whole system, and the system is started to work.
The first liquid storage tank 4 is provided with a liquid adding port for adding liquid, so that the liquid is conveniently added.
And a liquid adding port for adding liquid is arranged on the second liquid storage tank 13, so that the liquid is conveniently added.
The working principle of the utility model is introduced below to facilitate understanding the utility model discloses:
this principle of operation is exemplified by the use of the refrigerated heat dissipation system on a mattress 33. During the refrigeration, the cold junction of refrigeration piece 1 constantly refrigerates first circulating pump 2 interior liquid, and the liquid after the refrigeration is under first circulating pump 2's effect, and liquid after will refrigerating is carried to first liquid reserve tank 4 in, and first exhaust unit 5 is in succession sent the cold gas to mattress 33 in after that to realize circulation refrigeration function. The heat emitted by the hot end of the refrigerating sheet 1 is absorbed by the second circulating pump 11, so that the liquid in the second circulating pump 11 becomes hot, the heated liquid is conveyed to the second liquid storage tank 13 under the action of the second circulating pump 11, and then the hot air is continuously discharged through the heat discharging port 22 by the second air exhaust unit 14, so that the circulating heating function is realized; the heat at the hot end of the refrigerating sheet 1 is absorbed by the second circulating pump 11 to realize the cooling of the hot end of the refrigerating sheet 1, and the second air exhaust unit 14 can blow away the heat of the liquid in the second liquid storage tank 13, so that the refrigerating effect of the cold end of the refrigerating sheet 1 is greatly improved; when a user needs hot air, the air supply pipe 31 is separated from the mattress 33, the heat exhaust port 22 is directly aligned to the mattress 33 or the air supply pipe 31 passes through the heat exhaust port 22 and is connected to the second exhaust unit 14, so that the air supply pipe 31 is not connected with the first exhaust unit 5, then the air supply pipe 31 is communicated with the inside of the mattress 33, and then the hot air can be conveyed into the mattress 33, or the original air supply pipe 31 is not adopted and an air supply pipe is directly added, the air supply pipe passes through the heat exhaust port 22 and is connected with the second exhaust unit 14 by using a new adapter, and the newly added air supply pipe is communicated with the inside of the mattress 33; therefore, the utility model discloses a steam when refrigeration cooling system has utilized the heat dissipation comes to carry out the transport of steam to mattress 33 to make only need a refrigeration piece 1 just can realize making the function of air conditioning and steam, reduced manufacturing cost.
Example two:
as shown in fig. 2, the difference between the first embodiment and the second embodiment is only the difference between the heat dissipation assembly, in the present embodiment, the cooling fin 1 adopts a water cooling heat dissipation manner, but an air cooling heat dissipation manner, instead of the first embodiment, the heat dissipation assembly includes a heat sink 50 and a second air exhaust unit 14, the heat sink 50 is tightly attached to the hot end of the cooling fin 1, and the second air exhaust unit 14 is disposed on the heat dissipation surface of the heat sink 50 and aligned with the heat exhaust opening 22. In this embodiment, the heat dissipation manner is changed compared with the first embodiment, in this embodiment, the heat dissipated from the hot end of the refrigeration sheet 1 is absorbed by the heat sink 50 and then exhausted from the second air exhaust unit 14, so as to achieve the purpose of producing hot air, the method adopted when the user needs hot air is the same as that adopted when hot air is needed in the first embodiment, the air supply pipe 31 is separated from the mattress 33, the heat exhaust port 22 is directly aligned with the mattress 33, or the air supply pipe 31 is passed through the heat exhaust port 22 and is switched to the second air exhaust unit 14, so that the air supply pipe 31 is not connected with the first air exhaust unit 5, then the air supply pipe 31 is communicated with the inside of the mattress 33, so that hot air can be supplied into the mattress 33, or an air supply pipe is directly added without using the original air supply pipe 31, the air supply pipe is passed through the heat exhaust port 22 and is connected with the second air exhaust unit 14 by using a new adapter, and the air supply pipe of the new, this enables the delivery of hot gas.
The present invention is not limited to the above embodiment, and if various modifications or variations of the present invention do not depart from the spirit and scope of the present invention, they are intended to be covered if they fall within the scope of the claims and the equivalent technology of the present invention.

Claims (7)

1. A cooling heat dissipation system, comprising:
the refrigeration system comprises a power supply device, a control device, a refrigeration assembly and a heat dissipation assembly;
the refrigeration assembly comprises a refrigeration piece, a first circulating pump, a first motor, a first liquid storage tank and a first air exhaust unit, the first motor is connected with the first circulating pump, the refrigeration piece comprises a cold end and a hot end, the cold end of the refrigeration piece is tightly attached to the outer wall of the first circulating pump, the outlet of the first circulating pump is connected with the liquid inlet of the first liquid storage tank through a first circulating pipe, the inlet of the first circulating pump is connected with the liquid outlet of the first liquid storage tank through a second circulating pipe, and the first air exhaust unit is tightly attached to the outer wall of the first liquid storage tank;
the heat dissipation assembly comprises a second circulating pump, a second motor, a second liquid storage tank and a second air exhaust unit, the second motor is connected with the second circulating pump, the hot end of the refrigerating sheet is tightly attached to the outer wall of the second circulating pump, the outlet of the second circulating pump is connected with the liquid inlet of the second liquid storage tank through a third circulating pipe, the inlet of the second circulating pump is connected with the liquid outlet of the second liquid storage tank through a fourth circulating pipe, and the second air exhaust unit is tightly attached to the outer wall of the second liquid storage tank;
the power supply device is respectively and electrically connected with the control device, the refrigerating sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit;
the control device is respectively electrically connected with the refrigeration sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit.
2. The refrigerated heat dissipation system of claim 1, wherein:
the refrigeration heat dissipation system also comprises a shell, wherein the control device, the refrigeration assembly and the heat dissipation assembly are arranged in the shell; and the side surface of the shell is provided with a heat exhaust port aligned with the second air exhaust unit.
3. The refrigerated heat dissipation system of claim 2, wherein:
the top of the shell is provided with a control panel and a display screen, and the control panel and the display screen are electrically connected with the control device.
4. The refrigerated heat dissipation system of claim 1, wherein:
the refrigerating system also comprises an air supply pipe, wherein one end of the air supply pipe is connected with the first air exhaust unit or the second air exhaust unit through an adapter, and the other end of the air supply pipe is connected with a mattress or a sofa.
5. The refrigerated heat dissipation system of claim 2, wherein:
the power supply device comprises a storage battery, the storage battery is arranged in the shell, and the storage battery is electrically connected with the control device, the refrigeration sheet, the first circulating pump, the first motor, the first air exhaust unit, the second circulating pump, the second motor and the second air exhaust unit respectively.
6. The refrigerated heat dissipation system of claim 1, wherein:
and a liquid filling port for adding liquid is arranged on the first liquid storage tank.
7. The refrigerated heat dissipation system of claim 1, wherein:
and a liquid filling port for adding liquid is arranged on the second liquid storage tank.
CN201920739673.7U 2019-05-21 2019-05-21 Refrigeration cooling system Active CN210441472U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920739673.7U CN210441472U (en) 2019-05-21 2019-05-21 Refrigeration cooling system

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Application Number Priority Date Filing Date Title
CN201920739673.7U CN210441472U (en) 2019-05-21 2019-05-21 Refrigeration cooling system

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CN210441472U true CN210441472U (en) 2020-05-01

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Application Number Title Priority Date Filing Date
CN201920739673.7U Active CN210441472U (en) 2019-05-21 2019-05-21 Refrigeration cooling system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111811190A (en) * 2020-06-15 2020-10-23 中国科学院空间应用工程与技术中心 Semiconductor refrigeration module, space air-cooled heat dissipation device and space equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111811190A (en) * 2020-06-15 2020-10-23 中国科学院空间应用工程与技术中心 Semiconductor refrigeration module, space air-cooled heat dissipation device and space equipment

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