CN206831849U - Integral type cooling system - Google Patents

Integral type cooling system Download PDF

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Publication number
CN206831849U
CN206831849U CN201720065840.5U CN201720065840U CN206831849U CN 206831849 U CN206831849 U CN 206831849U CN 201720065840 U CN201720065840 U CN 201720065840U CN 206831849 U CN206831849 U CN 206831849U
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CN
China
Prior art keywords
liquid pipe
pipe
heat exchanger
liquid
water
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Expired - Fee Related
Application number
CN201720065840.5U
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Chinese (zh)
Inventor
周虹
高峰
成子明
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Chongqing Yidong Intelligent Technology Co Ltd
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Chongqing Yidong Intelligent Technology Co Ltd
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Priority to CN201720065840.5U priority Critical patent/CN206831849U/en
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Publication of CN206831849U publication Critical patent/CN206831849U/en
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Abstract

Including base, heat-exchange system, refrigeration system and control integrated board, heat-exchange system and refrigeration system are arranged on base.Heat-exchange system includes water tank, water pump, circulation pipe and heat exchanger, and pump intake is connected with water outlet of water tank, and pump outlet is connected by circulation pipe with heat exchanger water inlet, and heat exchanger delivery port connects with water tank.Refrigeration system includes reservoir, compressor and condenser, and the entrance of compressor connects with reservoir outlet, and the outlet of compressor connects with condenser inlet, and condensator outlet connects with heat exchanger refrigerant inlet, and heat exchanger refrigerant exit connects with reservoir entrance.Heat exchanger and water tank are installed close to condenser, it is compact-sized to be easy to carry;Integrated board will be controlled, which to be arranged on heat exchanger top surface by cooling stand, can effectively prevent from controlling the temperature of integrated board, prevent from controlling integrated board to damage at high temperature.

Description

Integral type cooling system
Technical field
The utility model belongs to temperature control technology field, and in particular to a kind of integral type cooling system.
Background technology
With the increase year by year of pit mining depth, and the continuous improvement that mining machinesization is horizontal, down-hole mechanical equipment Dramatically increased with underground heat radiating, high-temperature mine is more and more.Mine high-temperature heat evil problem is also increasingly severe, turns into and mine watt This, one of arranged side by side six big disasters of fire, coal dust, ore deposit pressure, five big disaster of water, while seriously govern the effective of deep coal resources Exploitation.The main heating source of mine has a lot, but important is protolith radiating, electromechanical equipment heat release and underground heat water burst, mine inner ring When border temperature exceedes human normal thermal balance institute patient temperature, the physical and mental health of underground operators is not only had a strong impact on, Cause efficiency to reduce, can also personnel is gone to bits, or even Heat stroke, thermal blooming and central nervous system disorder, sternly Increase accident frequency again, while threaten the life security of miner.According to the difference of temperature-reducing medium, cooling clothes can be divided into liquid cooling Clothes, phase change material temperature lowering clothes and gas cooling clothes, but at present really applied to the only phase transformation cooling clothes of underground coal mine and air cooling Formula cooling clothes.Phase transformation cooling clothes must change phase-change material on time, and the effective time is short, and leakage problem be present.Ventilation type drops The use range warmly taken is limited user's job area by source of the gas and is limited.In view of portable use is unable to existing for current cooling clothes and Make that personnel's scope of activities is limited, cooling-down effect is low, the problems such as being difficult to use in the inferior complicated hot environment of coal mine, therefore need High efficiency cooling processing can be carried out to protective garment by providing a kind of refrigeration system, and efficiently fortune is kept under rugged environment OK.
Utility model content
The utility model solved the problems, such as in a kind of integral type cooling system in individual cooling system is provided,
Concrete technical scheme is as follows:Including base (9), heat-exchange system, refrigeration system and control integrated board (6);
The heat-exchange system and the refrigeration system are arranged on the base (9);
The heat-exchange system includes water tank (2), water pump (8), circulation pipe and heat exchanger, water pump (8) water inlet with Water tank (2) the delivery port connection, water pump (8) delivery port are connected by the circulation pipe and the heat exchanger water inlet Logical, the heat exchanger delivery port connects with the water tank (2);
The refrigeration system includes reservoir (7-1), compressor (7) and condenser, the entrance of the compressor (7) and institute Reservoir (7-1) outlet is stated, the outlet of the compressor (7) connects with the condenser inlet, the condensator outlet Connected with the heat exchanger refrigerant inlet, the heat exchanger refrigerant exit connects with the reservoir (7-1) entrance;
The heat exchanger is located at the top of the condenser, and the water tank is located at the side of the heat exchanger, described Control integrated board (6) is arranged on the heat exchanger top surface by cooling stand (5).
Preferably to realize the utility model, may further be:
The heat exchanger includes the first liquid pipe (1-2) and the second liquid pipe (1-3) being set up in parallel, in first liquid pipe It is distributed with flat heat exchange pipe (1-4) between (1-2) and the second liquid pipe (1-3), flat heat exchange pipe (1-4) the both ends port is respectively with One liquid pipe (1-2) and the second liquid pipe (1-3) communicate, and are covered with outside first liquid pipe (1-2) and the second liquid pipe (1-3) closed Housing (1-1), closed shell (1-1) both ends are tightly connected shape with first liquid pipe (1-2) and the second liquid pipe (1-3) respectively Into heat exchange chamber, the adjacent flat heat exchange pipe (1-4) forms pipelined channel (1-114) with the closed shell (1-1), in institute The outer surface for stating closed shell (1-1) is installed with two water pipes (1-11), and water hole (1- is distributed with the water pipe (1-11) 111), the water hole (1-111) communicates with the pipelined channel (1-114) respectively, and described two water pipes (1-11) are respectively The heat exchanger water inlet and delivery port;
The condenser includes the 3rd liquid pipe (3-1) and the 4th liquid pipe (3-3) being set up in parallel, in the 3rd liquid pipe It is distributed with heat radiating flat tube (3-2) between (3-1) and the 4th liquid pipe (3-3), heat radiating flat tube (3-2) the both ends port is respectively with Three liquid pipes (3-1) and the 4th liquid pipe (3-3) are communicated, and the 3rd liquid pipe (3-1) and the 4th liquid pipe (3-3) are vertically arranged, described The middle part of 3rd liquid pipe (3-1) is provided with partition (3-12), and the both ends of the 3rd liquid pipe (3-1) are respectively equipped with refrigerant inlet (3-11) and refrigerant liquid outlet (3-14);
The refrigerant inlet (3-11) and the refrigerant liquid outlet (3-14) are respectively the condenser inlet and outlet;
Blower fan (4) is installed with the side of the condenser, heat radiating flat tube (3-2) described in blower fan (4) face.
Further:First liquid pipe (1-2) one end sealing, the other end of first liquid pipe (1-2) offer feed liquor Mouthful, separating tube (1-21) is equipped with the heat exchange inlet of first liquid pipe (1-2), is distributed on the separating tube (1-21) There is liquid separation hole (1-211), the liquid separation hole (1-211) is respectively positioned in first liquid pipe (1-2) and is respectively facing the heat exchange Flat tube (1-4);Second liquid pipe (1-3) one end sealing, the other end of second liquid pipe (1-3) offer heat exchange liquid outlet (1-31), the heat exchange inlet and the heat exchange liquid outlet (1-31) are respectively the heat exchanger refrigerant inlet and the heat Exchanger refrigerant exit.The separating tube of design enables refrigerant even into flat tube, so that cooling effect of the utility model to water Fruit is more preferable.
Further:The both ends of the closed shell (1-1) are equipped with the water pipe (1-11), and the water pipe (1-11) Respectively positioned at the closed shell (1-1) up and down on two sides.The fluvial processes of this structure guiding, make the cooling-down effect of water Uniformly.
Further:Closed shell (1-1) section is square type, first liquid pipe (1-2) and the second liquid pipe (1-3) It is heat absorption plate core structure.
Further:The refrigerant liquid outlet (3-14) is connected by capillary with the separating tube (1-21), described Capillary outer layer is enclosed with froth bed.The froth bed of capillary outer layer covers, insulation blocking effect is played, and prevented on capillary Condensing water droplet.
The beneficial effects of the utility model are:Heat exchanger and water tank are installed close to condenser, it is compact-sized to be easy to take Band;Integrated board will be controlled, which to be arranged on heat exchanger top surface by cooling stand, can effectively prevent from controlling the temperature of integrated board, prevent Only control integrated board damages at high temperature.By flat tube design in closed shell, refrigerant is by flat tube to the water in closed shell Cooled, good effect of heat exchange, and easy processing simple in construction;Load separating tube in the first liquid pipe, flat tube is by closed housing in addition Body is divided into some pipelined channels, and the heat exchange of water is uniform, good cooling effect, is enclosed with froth bed in capillary outer layer, plays Insulation blocking acts on, and also prevents condensing water droplet on capillary.
Brief description of the drawings
Fig. 1 is structure principle chart of the present utility model;
Fig. 2 is the utility model structure diagram;
Fig. 3 is the second visual angles of Fig. 2 schematic diagram;
Fig. 4 is refrigerant system configurations schematic diagram;
Fig. 5 is the second visual angles of Fig. 4 schematic diagram;
Fig. 6 is radiator schematic diagram;
Fig. 7 is the second visual angles of Fig. 6 schematic diagram;
Fig. 8 was the structural representation of water pipe;
Fig. 9 is the structural representation of separating tube.
Embodiment
Preferred embodiment of the present utility model is described in detail below in conjunction with the accompanying drawings, so that the advantages of the utility model It can be easier to be readily appreciated by one skilled in the art with feature, it is apparent clear and definite so as to be made to the scope of protection of the utility model Define.
As shown in Figures 1 to 9, including base 9, heat-exchange system, refrigeration system and control integrated board 6, heat-exchange system and system Cooling system is arranged on base 9;
Heat-exchange system includes water tank 2, water pump 8, circulation pipe and heat exchanger, and the water inlet of water pump 8 connects with the delivery port of water tank 2 Logical, the delivery port of water pump 8 is connected by circulation pipe with heat exchanger water inlet, and heat exchanger delivery port connects with water tank 2;
Refrigeration system includes reservoir 7-1, compressor 7 and condenser, and entrance and the reservoir 7-1 outlets of compressor 7 connect Logical, the outlet of compressor 7 connects with condenser inlet, and condensator outlet connects with heat exchanger refrigerant inlet, and heat exchanger is cold Matchmaker outlet connects with reservoir 7-1 entrances;
Heat exchanger is located at the top of condenser, and water tank is located at the side of heat exchanger, and control integrated board 6 passes through the branch that radiates Frame 5 is arranged on heat exchanger top surface.
Heat exchanger includes the first liquid pipe 1-2 and the second liquid pipe 1-3 being set up in parallel, in the first liquid pipe 1-2 and second Be distributed with flat heat exchange pipe 1-4 between liquid pipe 1-3, flat heat exchange pipe 1-4 both ends port respectively with the first liquid pipe 1-2 and the second liquid pipe 1- 3 are communicated, and closed shell 1-1 is covered with outside the first liquid pipe 1-2 and the second liquid pipe 1-3, and closed shell 1-1 both ends are respectively with One liquid pipe 1-2 and the second liquid pipe 1-3 are tightly connected to form heat exchange chamber, and adjacent flat heat exchange pipe 1-4 and closed shell 1-1 is formed Pipelined channel 1-114, two water pipe 1-11 are installed with closed shell 1-1 outer surface, water was distributed with water pipe 1-11 Hole 1-111, water hole 1-111 communicate with pipelined channel 1-114 respectively, two water pipe 1-11 be respectively heat exchanger water inlet and Delivery port.
First liquid pipe 1-2 one end seals, and first liquid pipe 1-2 other end offers inlet, the first liquid pipe 1-2's Separating tube 1-21 is equipped with heat exchange inlet, liquid separation hole 1-211 is distributed with separating tube 1-21, liquid separation hole 1-211 is respectively positioned on First liquid pipe 1-2 is interior and is respectively facing flat heat exchange pipe 1-4;Second liquid pipe 1-3 one end seals, second liquid pipe 1-3 other end Heat exchange liquid outlet 1-31 is offered, heat exchange inlet and heat exchange liquid outlet 1-31 are respectively heat exchanger refrigerant inlet and heat exchange Device refrigerant exit.
Closed shell 1-1 both ends are equipped with water pipe 1-11, and water pipe 1-11 is respectively positioned at two above and below closed shell 1-1 On side.
Closed shell 1-1 sections are square type, and the first liquid pipe 1-2 and the second liquid pipe 1-3 are heat absorption plate core structure.
Condenser includes the 3rd liquid pipe 3-1 and the 4th liquid pipe 3-3 being set up in parallel, in the 3rd liquid pipe 3-1 and the 4th liquid pipe Be distributed with heat radiating flat tube 3-2 between 3-3, heat radiating flat tube 3-2 both ends port respectively with the 3rd liquid pipe 3-1 and the 4th liquid pipe 3-3 phases Logical, the 3rd liquid pipe 3-1 and the 4th liquid pipe 3-3 are vertically arranged, and the 3rd liquid pipe 3-1 middle part is provided with partition 3-12, the 3rd liquid pipe 3-1 Both ends be respectively equipped with refrigerant inlet 3-11 and refrigerant liquid outlet 3-14;
Refrigerant inlet 3-11 and refrigerant liquid outlet 3-14 is respectively condenser inlet and outlet;
Blower fan 4 is installed with the side of condenser, the blower fan 4 face heat radiating flat tube 3-2.
Refrigerant liquid outlet 3-14 is connected by capillary with separating tube 1-21, and froth bed is enclosed with capillary outer layer.
The utility model so works, and water pump 8 extracts the water of water tank 2 out, by circulation pipe after high-temperature area, Crossing in water pipe 1-11 close to the first liquid pipe 1-2 is delivered water into, this crosses water pipe 1-11 by water hole 1-111 by moisture stream, And flowed out respectively through pipelined channel 1-114 from close to crossing in water pipe 1-11 for the second liquid pipe 1-3, subsequently, water is back to water tank 2 It is interior.
Refrigerant is under the effect of compressor 7 simultaneously, after the refrigerant in fluid reservoir 7-1 is transported into radiating inlet 3-11, Due to being provided with partition 3-12 in the middle part of the 3rd liquid pipe 3-1, refrigerant is provided with successively by the 3rd liquid pipe 3-1 tops, heat radiating flat tube After 3-2, the 4th liquid pipe 3-3 and heat radiating flat tube 3-2, then it is back in the 3rd liquid pipe 3-1 bottoms, then, refrigerant is by radiating Liquid mouth 3-14 is entered in separating tube 1-21, enters the first liquid pipe 1-2 from separating tube 1-21, then successively through flat heat exchange pipe 1-4 After the second liquid pipe 1-3, from heat exchange liquid outlet 1-31 outflows, heat exchange liquid outlet 1-31 and fluid reservoir 7-1 is communicated, and refrigerant completes one Secondary circulation;Meanwhile electric fan 4 runs and condenser is cooled.

Claims (6)

  1. A kind of 1. integral type cooling system, it is characterised in that:Including base (9), heat-exchange system, refrigeration system and control integrated board (6);
    The heat-exchange system and the refrigeration system are arranged on the base (9);
    The heat-exchange system includes water tank (2), water pump (8), circulation pipe and heat exchanger, water pump (8) water inlet with it is described Water tank (2) delivery port is connected, and water pump (8) delivery port is connected by the circulation pipe with the heat exchanger water inlet, institute Heat exchanger delivery port is stated to connect with the water tank (2);
    The refrigeration system includes reservoir (7-1), compressor (7) and condenser, entrance and the storage of the compressor (7) Liquid device (7-1) outlet, the outlet of the compressor (7) connect with the condenser inlet, the condensator outlet and institute The connection of heat exchanger refrigerant inlet is stated, the heat exchanger refrigerant exit connects with the reservoir (7-1) entrance;
    The heat exchanger is located at the top of the condenser, and the water tank is located at the side of the heat exchanger, the control Integrated board (6) is arranged on the heat exchanger top surface by cooling stand (5).
  2. 2. integral type cooling system according to claim 1, it is characterised in that:The heat exchanger includes the be set up in parallel One liquid pipe (1-2) and the second liquid pipe (1-3), flat heat exchange pipe is distributed between first liquid pipe (1-2) and the second liquid pipe (1-3) (1-4), flat heat exchange pipe (1-4) the both ends port communicates with the first liquid pipe (1-2) and the second liquid pipe (1-3) respectively, described Be covered with closed shell (1-1) outside first liquid pipe (1-2) and the second liquid pipe (1-3), closed shell (1-1) both ends respectively with institute State the first liquid pipe (1-2) and the second liquid pipe (1-3) and be tightly connected and form heat exchange chamber, the adjacent flat heat exchange pipe (1-4) with The closed shell (1-1) forms pipelined channel (1-114), and two water are installed with the outer surface of the closed shell (1-1) Manage (1-11), be distributed with water hole (1-111) on the water pipe (1-11), the water hole (1-111) respectively with the stream Aquaporin (1-114) communicates, and described two water pipes (1-11) are respectively the heat exchanger water inlet and delivery port;
    The condenser includes the 3rd liquid pipe (3-1) and the 4th liquid pipe (3-3) being set up in parallel, in the 3rd liquid pipe (3-1) And the 4th be distributed with heat radiating flat tube (3-2) between liquid pipe (3-3), heat radiating flat tube (3-2) the both ends port respectively with the 3rd liquid Pipe (3-1) and the 4th liquid pipe (3-3) are communicated, and the 3rd liquid pipe (3-1) and the 4th liquid pipe (3-3) are vertically arranged, and the described 3rd The middle part of liquid pipe (3-1) is provided with partition (3-12), and the both ends of the 3rd liquid pipe (3-1) are respectively equipped with refrigerant inlet (3- And refrigerant liquid outlet (3-14) 11);
    The refrigerant inlet (3-11) and the refrigerant liquid outlet (3-14) are respectively the condenser inlet and outlet;
    Blower fan (4) is installed with the side of the condenser, heat radiating flat tube (3-2) described in blower fan (4) face.
  3. 3. integral type cooling system according to claim 2, it is characterised in that:First liquid pipe (1-2) one end sealing, should The other end of first liquid pipe (1-2) offers inlet, and liquid separation is equipped with the heat exchange inlet of first liquid pipe (1-2) Manage (1-21), be distributed with liquid separation hole (1-211) on the separating tube (1-21), the liquid separation hole (1-211) is respectively positioned on described the One liquid pipe (1-2) is interior and is respectively facing the flat heat exchange pipe (1-4);Second liquid pipe (1-3) one end sealing, second liquid pipe The other end of (1-3) offers heat exchange liquid outlet (1-31), and the heat exchange inlet and the heat exchange liquid outlet (1-31) are respectively For the heat exchanger refrigerant inlet and the heat exchanger refrigerant exit.
  4. 4. integral type cooling system according to claim 2, it is characterised in that:The both ends of the closed shell (1-1) are all provided with There is a water pipe (1-11), and the water pipe (1-11) is respectively positioned at the closed shell (1-1) up and down on two sides.
  5. 5. integral type cooling system according to claim 2, it is characterised in that:Closed shell (1-1) section is square type, First liquid pipe (1-2) and the second liquid pipe (1-3) are heat absorption plate core structure.
  6. 6. integral type cooling system according to claim 3, it is characterised in that:The refrigerant liquid outlet (3-14) passes through capillary Pipe is connected with the separating tube (1-21), and froth bed is enclosed with the capillary outer layer.
CN201720065840.5U 2017-01-19 2017-01-19 Integral type cooling system Expired - Fee Related CN206831849U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720065840.5U CN206831849U (en) 2017-01-19 2017-01-19 Integral type cooling system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720065840.5U CN206831849U (en) 2017-01-19 2017-01-19 Integral type cooling system

Publications (1)

Publication Number Publication Date
CN206831849U true CN206831849U (en) 2018-01-02

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Application Number Title Priority Date Filing Date
CN201720065840.5U Expired - Fee Related CN206831849U (en) 2017-01-19 2017-01-19 Integral type cooling system

Country Status (1)

Country Link
CN (1) CN206831849U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109301974A (en) * 2018-10-17 2019-02-01 湘电风能有限公司 A kind of generator cooling system
CN118089436A (en) * 2024-04-19 2024-05-28 江苏星光发电设备有限公司 External exchange type cooling system of marine generator set

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109301974A (en) * 2018-10-17 2019-02-01 湘电风能有限公司 A kind of generator cooling system
CN118089436A (en) * 2024-04-19 2024-05-28 江苏星光发电设备有限公司 External exchange type cooling system of marine generator set

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20180102

Termination date: 20220119