CN212620232U - Evaporator cooling device of water cooling system - Google Patents

Evaporator cooling device of water cooling system Download PDF

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Publication number
CN212620232U
CN212620232U CN201922426172.6U CN201922426172U CN212620232U CN 212620232 U CN212620232 U CN 212620232U CN 201922426172 U CN201922426172 U CN 201922426172U CN 212620232 U CN212620232 U CN 212620232U
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steam
cooling
fixedly connected
heating
cooling tower
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CN201922426172.6U
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黄峰
卢应成
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Jiangsu Taier New Material Co ltd
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Jiangsu Taier New Material Co ltd
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Abstract

The utility model discloses an evaporimeter heat sink of water cooling system, including cooling tower, steam exhaust mechanism, evaporimeter, support column and mechanism of admitting air, evaporimeter fixed connection cooling tower, the cooling tower is close to evaporimeter top fixed connection steam exhaust mechanism, the cooling tower is close to evaporimeter bottom fixed connection mechanism of admitting air, steam exhaust mechanism includes turbofan, steam extraction section of thick bamboo and steam extraction leaf, fixed connection steam extraction leaf in the steam extraction section of thick bamboo, steam extraction section of thick bamboo top fixed connection turbofan bottom. This water cooling system's evaporimeter heat sink can be through the turbofan that sets up, can reach the same effect of ordinary fan simultaneously in the reduction consumption, and the further reduction of the percentage of content of moisture in the exhaust steam can be guaranteed to the exhaust leaf that sets up, and the first retarder and the second retarder of setting can say that the dry air that blows off through the air-blower carries out certain speed reduction, can introduce in the cooling tower through first retarder and second retarder simultaneously.

Description

Evaporator cooling device of water cooling system
Technical Field
The utility model relates to a water cooling system technical field specifically is a water cooling system's evaporimeter heat sink.
Background
The cooling tower is a device which uses water as circulating coolant, absorbs heat from the system and discharges the heat to the atmosphere so as to reduce the water temperature; the cold is an evaporation and heat dissipation device which utilizes the principle that water is in flowing contact with air and then carries out heat exchange to generate steam, the steam volatilizes and takes away heat to achieve evaporation and heat dissipation, convection heat transfer, radiation heat transfer and the like to dissipate waste heat generated in industry or refrigeration air conditioners to reduce the water temperature so as to ensure the normal operation of the system, and the device is generally barrel-shaped and is named as a cooling tower. The cooling water in the existing water cooling system is recycled, the heated cooling water needs to be quickly reduced to a set temperature (too high or too low), so that an air cooling system is additionally arranged on an evaporator of a cooling tower, but the energy consumption of a fan is high, and the dry air sucked from the bottom is easily influenced by the humidity in the air, so that the cooling effect is influenced, and improvement is needed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an evaporator heat sink of water cooling system to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an evaporimeter heat sink of water cooling system, includes cooling tower, steam extraction mechanism, evaporimeter, support column and the mechanism of admitting air, evaporimeter fixed connection cooling tower, the cooling tower is close to evaporimeter top fixed connection steam extraction mechanism, the cooling tower is close to evaporimeter bottom fixed connection mechanism of admitting air.
The steam exhaust mechanism comprises a turbofan, a steam exhaust barrel and steam exhaust blades, the steam exhaust blades are fixedly connected in the steam exhaust barrel, and the top of the steam exhaust barrel is fixedly connected with the bottom of the turbofan.
The air inlet mechanism comprises a first speed reducing piece, a second speed reducing piece, an air inlet pipe, a cooling box, a cooling pipe, a cooling piece, a heating outer cylinder, an exhaust net, a heating inner cylinder, a heating net and an air blower, wherein an air inlet chamber is arranged at the bottom of the cooling tower, the air inlet chamber is close to the bottom of the evaporator and is fixedly connected with the first speed reducing piece, the air inlet chamber is close to the bottom of the cooling tower and is fixedly connected with the second speed reducing piece, one side of the air inlet chamber close to the cooling tower is fixedly connected with one end of the air inlet pipe, the other end of the air inlet pipe is fixedly connected with the cooling box, the cooling box is internally provided with the cooling pipe, the cooling pipe is fixedly connected with the cooling piece, one end of the cooling pipe is fixedly connected with the right upper corner of the cooling box, the left lower corner of the cooling box is fixedly connected with the other end of, the heating device comprises a heating inner cylinder, a heating outer cylinder, a water outlet, a steam exhaust net, a blower and a heating inner cylinder, wherein the heating inner cylinder is fixedly connected with a heating net, the heating inner cylinder is sleeved with the heating outer cylinder, one side of the wall of the heating outer cylinder is provided with the water outlet, two ends of the heating outer cylinder are fixedly connected with the steam exhaust net, the steam exhaust net is fixedly connected with two ends of.
Preferably, the exhaust blades are arc-shaped blades, and the exhaust blades are bent towards the left side and the right side.
Preferably, the air inlet chamber is communicated with the cooling tower, and the first speed reduction piece and the second speed reduction piece are distributed in a staggered mode.
Preferably, the cooling box is filled with cooling liquid and is hermetically connected with two ends of the cooling pipe.
Preferably, the middle part of the steam exhaust net is provided with a fixing hole in a clamping manner, and the fixing hole is sleeved with the heating inner cylinder.
Preferably, the number of the steam discharging nets is two, and the two steam discharging nets are distributed on two sides of the heating outer cylinder and fixedly connected with two ends of the heating inner cylinder.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this water cooling system's evaporimeter heat sink can be through the turbofan that sets up, can reach the same effect of ordinary fan simultaneously in the reduction consumption, and the further reduction of the percentage of content of moisture in the exhaust steam can be guaranteed to the exhaust leaf that sets up, and the first retarder and the second retarder of setting can say that the dry air that blows off through the air-blower carries out certain speed reduction, can introduce in the cooling tower through first retarder and second retarder simultaneously.
2. This water cooling system's evaporimeter heat sink is through the air-blower that sets up, heating net and cooling box, can inhale the air-blower built-in with the outside air, heat through heating the heating net in the inner tube, reach the purpose of moisture in the deaerate, moisture in the air is discharged into in the heating urceolus through the steam vent simultaneously, the part of liquefaction into water in the heating urceolus is discharged through the drain hole, do not have the part of liquefaction, discharge through the steam vent net, let in the dry air of heating in the cooling pipe, effectively cool down through the effect of coolant liquid and cooling piece, the dry air with the cooling is discharged into in the cooling tower through the air inlet chamber, the effectual influence of humidity in the outside air of having solved, can alleviate turbofan's burden simultaneously, further reach the purpose that reduces the consumption.
Drawings
FIG. 1 is a schematic view of the internal structure of the present invention;
FIG. 2 is a schematic view of the air intake mechanism taken out;
FIG. 3 is a schematic view of the structure of the heating outer cylinder and the steam discharging net;
FIG. 4 is a schematic view of the heating inner cylinder and the exhaust hole.
In the figure: the system comprises a cooling tower 1, a steam exhaust mechanism 2, a turbofan 21, a steam exhaust cylinder 22, a steam exhaust blade 221, an evaporator 3, a support column 4, an air intake mechanism 5, an air intake chamber 51, a first speed reduction plate 511, a second speed reduction plate 512, an air intake pipe 52, a temperature reduction box 53, a temperature reduction pipe 531, a temperature reduction plate 532, a heating outer cylinder 54, a steam exhaust net 541, a heating inner cylinder 542, a steam exhaust hole 543, a heating net 544, a water outlet 545 and an air blower 55.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: the utility model provides an evaporator heat sink of water cooling system, includes cooling tower 1, steam extraction mechanism 2, evaporimeter 3, support column 4 and air inlet mechanism 5, its characterized in that: the evaporator 3 is fixedly connected with the cooling tower 1, the cooling tower 1 is close to the top of the evaporator 3 and is fixedly connected with the steam exhaust mechanism 2, and the cooling tower 1 is close to the bottom of the evaporator 3 and is fixedly connected with the air inlet mechanism 5.
Exhaust mechanism 2 includes turbofan 21, exhaust steam section of thick bamboo 22 and exhaust steam leaf 221, fixed connection exhaust steam leaf 221 in the exhaust steam section of thick bamboo 22, exhaust steam leaf 221 is the arc blade, and exhaust steam leaf 221 is crooked to the left and right sides, exhaust steam section of thick bamboo 22 top fixed connection turbofan 21 bottom, the turbofan 21 of setting can be at the reduction power consumption, reach the same effect of ordinary fan simultaneously, the further reduction of the percentage of inclusion of moisture in the exhaust steam can be guaranteed to the exhaust steam leaf 221 of setting.
The air inlet mechanism 5 comprises a first speed reduction sheet 511, a second speed reduction sheet 512, an air inlet pipe 52, a temperature reduction box 53, a temperature reduction pipe 531, a temperature reduction sheet 532, a heating outer cylinder 54, an exhaust net 541, a heating inner cylinder 542, a heating net 544 and an air blower 55, an air inlet chamber 51 is arranged at the bottom of the cooling tower 1 close to the evaporator 3, the air inlet chamber 51 is fixedly connected with the first speed reduction sheet 511 close to the bottom of the evaporator 3, the air inlet chamber 51 is fixedly connected with the second speed reduction sheet 512 close to the bottom of the cooling tower 1, the air inlet chamber 51 is communicated with the cooling tower 1, the first speed reduction sheet 511 and the second speed reduction sheet 512 are distributed in a staggered manner, the first speed reduction sheet 511 and the second speed reduction sheet 512 have a certain inclination angle, one end of the air inlet pipe 52 is fixedly connected at one side of the air inlet chamber 51 close to the cooling tower 1, the other end of the air inlet pipe 52 is fixedly connected with the temperature reduction box 53, the, the cooling pipe 531 is fixedly connected with a cooling plate 532, one end of the cooling pipe 531 is fixedly connected with the upper right corner of the cooling box 53, the lower left corner of the cooling box 53 is fixedly connected with the other end of the cooling pipe 531, the other end of the cooling pipe 531 is fixedly connected with the right end of the heating inner cylinder 542, the cylinder wall of the heating inner cylinder 542 is provided with a right steam exhaust hole 543, the heating inner cylinder 542 is fixedly connected with a heating net 544, the heating inner cylinder 542 is sleeved with the heating outer cylinder 54, one side of the cylinder wall of the heating outer cylinder 54 is provided with a water outlet 545, the two ends of the heating outer cylinder 54 are fixedly connected with a steam exhaust net 541, the steam exhaust net 541 is fixedly connected with the two ends of the heating inner cylinder 542, the middle part of the steam exhaust net 541 is clamped with a fixed hole, the heating inner cylinder 542 is sleeved with the fixed hole, the two steam exhaust nets 541 are distributed on the two sides of the heating outer cylinder 54 and are fixedly connected with air blowers at, meanwhile, the air can be introduced into the cooling tower through the first speed reduction piece 511 and the second speed reduction piece 512, and the blower 55, the heating net 544 and the cooling box 53 are arranged, so that the outside air can be sucked into the blower 55, the moisture in the air is removed by heating the heating net 544 in the heating inner cylinder 542, and simultaneously the moisture in the air is discharged into the heating outer cylinder 54 through the steam discharge hole 543, the portion liquefied into water in the heating outer cylinder 54 is discharged through the water discharge opening 545, and the portion not liquefied, the exhaust through the exhaust net 541 discharges, the heated dry air is introduced into the cooling pipe 531, the temperature is effectively reduced through the action of the cooling liquid and the cooling fins 532, the cooled dry air is discharged into the cooling tower 1 through the air inlet chamber 51, the influence of the humidity in the outside air is effectively solved, the burden of the turbofan 21 can be reduced, and the purpose of reducing the power consumption is further achieved.
When the air cooling device is used, external air is sucked into the air blower 55 and is heated through the heating net 544 in the heating inner cylinder 542 to achieve the purpose of removing moisture in the air, meanwhile, the moisture in the air is discharged into the heating outer cylinder 54 through the steam discharge hole 543, the part of the water liquefied in the heating outer cylinder 54 is discharged through the water discharge hole 545, the part without liquefaction is discharged through the steam discharge net 541, the heated dry air is introduced into the cooling pipe 531, the temperature is effectively reduced through the action of the cooling liquid and the cooling fins 532, the cooled dry air is discharged into the cooling tower 1 through the air inlet chamber 51, and the steam is discharged into the air through the steam discharge blades 221 and the action of the turbofan 21.
To sum up, the evaporator temperature reducing device of the water cooling system can reduce power consumption and achieve the same effect of a common fan through the arranged turbofan 21, the arranged steam exhaust blade 221 can ensure further reduction of the content rate of moisture in the exhausted steam, the arranged first speed reduction sheet 511 and the second speed reduction sheet 512 can reduce the speed of the dry air blown out by the air blower 55 to a certain degree and can be introduced into the cooling tower through the first speed reduction sheet 511 and the second speed reduction sheet 512, the arranged air blower 55, the heating net 544 and the temperature reduction box 53 can suck the outside air into the air blower 55 and heat through the heating net 544 in the heating inner cylinder 542 to achieve the purpose of removing the moisture in the air, meanwhile, the moisture in the air is discharged into the heating outer cylinder 54 through the steam exhaust hole 543, and the part of water liquefied in the heating outer cylinder 54 is discharged through the water discharge opening 545, the part that does not have the liquefaction is discharged through exhaust net 541, lets in the dry air of heating in cooling pipe 531, through the effect of coolant liquid and cooling fin 532 effective cooling, and the dry air of will cooling is discharged into cooling tower 1 through inlet chamber 51 in, the effectual influence of humidity in the outside air of having solved, can alleviate turbofan 21's burden simultaneously, further reaches the purpose that reduces the consumption.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides an evaporator heat sink of water cooling system, includes cooling tower (1), steam extraction mechanism (2), evaporimeter (3), support column (4) and mechanism (5) admits air, its characterized in that: the evaporator (3) is fixedly connected with a cooling tower (1), the cooling tower (1) is close to the top of the evaporator (3) and is fixedly connected with a steam exhaust mechanism (2), and the cooling tower (1) is close to the bottom of the evaporator (3) and is fixedly connected with an air inlet mechanism (5);
the steam exhaust mechanism (2) comprises a turbofan (21), a steam exhaust cylinder (22) and steam exhaust blades (221), the steam exhaust cylinder (22) is internally and fixedly connected with the steam exhaust blades (221), and the top of the steam exhaust cylinder (22) is fixedly connected with the bottom of the turbofan (21);
the air inlet mechanism (5) comprises a first speed reducing piece (511), a second speed reducing piece (512), an air inlet pipe (52), a temperature reducing box (53), a temperature reducing pipe (531), a temperature reducing piece (532), a heating outer cylinder (54), an exhaust net (541), a heating inner cylinder (542), a heating net (544) and a blower (55), wherein the cooling tower (1) is close to the bottom of the evaporator (3) and is provided with an air inlet chamber (51), the air inlet chamber (51) is close to the bottom of the evaporator (3) and is fixedly connected with the first speed reducing piece (511), the air inlet chamber (51) is close to the bottom of the cooling tower (1) and is fixedly connected with the second speed reducing piece (512), one side of the air inlet chamber (51) close to the cooling tower (1) is fixedly connected with one end of the air inlet pipe (52), the other end of the air inlet pipe (52) is fixedly connected with the temperature reducing box (53), the temperature reducing pipe (531) is arranged in the temperature reducing, cooling pipe (531) one end fixed connection cooling case (53) upper right corner, cooling case (53) lower left corner fixed connection cooling pipe (531) other end, cooling pipe (531) other end fixed connection heating inner tube (542) right-hand member, right exhaust hole (543) are seted up to heating inner tube (542) section of thick bamboo wall, heating inner tube (542) internal fixation connects heating net (544), heating inner tube (542) overcoat heats outer tube (54), drain hole (545) have been seted up to heating outer tube (54) section of thick bamboo wall one side, heating outer tube (54) both ends fixed connection exhaust net (541), exhaust net (541) fixed connection heating inner tube (542) both ends, heating inner tube (542) left side fixed connection air-blower (55).
2. The evaporator temperature reduction device of the water cooling system as claimed in claim 1, wherein: the steam exhaust blades (221) are arc-shaped blades, and the steam exhaust blades (221) are bent towards the left side and the right side.
3. The evaporator temperature reduction device of the water cooling system as claimed in claim 1, wherein: the air inlet chamber (51) is communicated with the cooling tower (1), and the first speed reduction sheets (511) and the second speed reduction sheets (512) are distributed in a staggered mode.
4. The evaporator temperature reduction device of the water cooling system as claimed in claim 1, wherein: the cooling box (53) is filled with cooling liquid and is hermetically connected with two ends of the cooling pipe (531).
5. The evaporator temperature reduction device of the water cooling system as claimed in claim 1, wherein: the middle part of the steam exhaust net (541) is provided with a fixing hole in a clamping way, and the fixing hole is sleeved with the heating inner cylinder (542).
6. The evaporator temperature reduction device of the water cooling system as claimed in claim 1, wherein: the two steam discharge nets (541) are distributed on two sides of the heating outer cylinder (54) and fixedly connected with two ends of the heating inner cylinder (542).
CN201922426172.6U 2019-12-29 2019-12-29 Evaporator cooling device of water cooling system Active CN212620232U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922426172.6U CN212620232U (en) 2019-12-29 2019-12-29 Evaporator cooling device of water cooling system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922426172.6U CN212620232U (en) 2019-12-29 2019-12-29 Evaporator cooling device of water cooling system

Publications (1)

Publication Number Publication Date
CN212620232U true CN212620232U (en) 2021-02-26

Family

ID=74727117

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922426172.6U Active CN212620232U (en) 2019-12-29 2019-12-29 Evaporator cooling device of water cooling system

Country Status (1)

Country Link
CN (1) CN212620232U (en)

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