CN208998238U - A kind of cooling unit of data center - Google Patents

A kind of cooling unit of data center Download PDF

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Publication number
CN208998238U
CN208998238U CN201821678308.1U CN201821678308U CN208998238U CN 208998238 U CN208998238 U CN 208998238U CN 201821678308 U CN201821678308 U CN 201821678308U CN 208998238 U CN208998238 U CN 208998238U
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Prior art keywords
heat exchanger
compressor
indirect evaporation
evaporation heat
cooling
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CN201821678308.1U
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王红卫
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Zhengzhou Yunhai Information Technology Co Ltd
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Zhengzhou Yunhai Information Technology Co Ltd
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Abstract

The utility model discloses a kind of cooling units of data center, refrigerating module is pumped including fluorine, spraying cooling module, compressor refrigerating module, the spraying cooling module includes indirect evaporation heat exchanger, the spray head sprayed water on indirect evaporation heat exchanger, connect the water pump of spray head, the collecting-tank to supply water for water pump, airflow channel one end of the indirect evaporation heat exchanger is connected to return air inlet, airflow channel other end one end of the indirect evaporation heat exchanger is connected to air outlet, the water drenching beneath galleries of the indirect evaporation heat exchanger are connected to fresh wind port, the water drenching upper part of channel of the indirect evaporation heat exchanger is connected to exhaust outlet.Spraying cooling module carries out acceleration evaporative cooling using moisture film of the outdoor fresh air to the water drenching channel of indirect evaporation heat exchanger, and then the hot return air in indirect evaporation heat exchanger airflow channel is cooled down, it only used exhaust blower work, and cooling effect is very significant, energy consumption is low, and cooling efficiency is high.

Description

A kind of cooling unit of data center
Technical field
The utility model relates to server radiating refrigeration unit field, specifically a kind of cooling unit of data center.
Background technique
With the development of information technology, the growth of server radiating amount and computer room heat radiation density is empty by the precision of electric power Radiating mode is adjusted, a part will be gradually replaced novel refrigeration modes.Evaporation cooling technique is a kind of utilization dry air system Cold wind technology is taken, can need to provide cold wind according to end, is data center's cooling supply.Evaporative Cooling Air Conditioning technology is using certainly The dry-bulb temperature of renewable energy dry air and dew-point temperature are poor in right environment, by the hot and humid area between water and air come A kind of environment-friendly high-efficiency of cooling capacity and the economic type of cooling are obtained, there is lower cooling equipment cost, can be greatly lowered The requirement of electricity consumption and peak times of power consumption to electric energy;Evaporation cooling technique is applied and needs to provide the data center computer room of cooling capacity in whole year In air-conditioning system, and artificial cold source is cooperated to use, energy-saving potential is huge, but when outdoor temperature humidity is higher, then refrigeration effect It is unobvious, therefore cooling unit is now needed, improve the cooling effect of unit.
Summary of the invention
The utility model is exactly to provide a kind of data center's cooler to solve deficiencies of the prior art Group is made full use of fluorine pump refrigeration, indirect evaporating-cooling module, mechanical refrigeration, realizes high efficient heat exchanging, exempted from using the realization of outdoor cold wind Take refrigeration.
The technical solution adopted by the utility model to solve its technical problems is that:
A kind of cooling unit of data center, including fluorine pump refrigerating module, spraying cooling module, compressor refrigerating module, institute The spray head that spraying cooling module includes indirect evaporation heat exchanger, sprays water on indirect evaporation heat exchanger is stated, the water pump of spray head is connected, Airflow channel one end for the collecting-tank that water pump supplies water, the indirect evaporation heat exchanger is connected to return air inlet, and the indirect evaporation changes Airflow channel other end one end of hot device is connected to air outlet, and the water drenching beneath galleries of the indirect evaporation heat exchanger are connected to fresh air Mouthful, the water drenching upper part of channel of the indirect evaporation heat exchanger is connected to exhaust outlet;
The fluorine pump evaporator of the fluorine pump refrigerating module is arranged at fresh wind port, the compressor of the compressor refrigerating module Evaporator is located at air outlet.
Hot-air duct after the heat exchange of return air inlet connection data center, air outlet are connected to the cooling air of data center Pipeline, fresh wind port are connected to outdoor air.
The spray head is located at the water drenching upper part of channel of indirect evaporation heat exchanger, and the spray head is mounted on the water pipe of connection water pump On.
The fluorine pump condenser of the fluorine pump refrigerating module and the compressor condenser of compressor refrigerating module are each provided at spray head Between exhaust outlet, exhaust blower is equipped in the exhaust outlet.
The fluorine pump refrigerating module further includes fluorine pump, and the fluorine pump connects fluorine by expansion valve and pumps evaporator, described Fluorine pump connection fluorine pumps condenser, and fluorine pumps evaporator connection fluorine and pumps condenser.
The compressor refrigerating module further includes compressor, and the compressor and compressor evaporator, compressor are cold Condenser is separately connected, and the compressor evaporator, compressor condenser are connected by expansion valve.
Pressure fan is equipped in the air outlet.
The beneficial effects of the utility model are:
1, fluorine pump refrigeration can be made full use of, indirect evaporating-cooling module, mechanical refrigeration, realize high efficient heat exchanging, utilize room Outer cold wind realizes free refrigeration.
2, spraying cooling module carries out acceleration steaming using moisture film of the outdoor fresh air to the water drenching channel of indirect evaporation heat exchanger Hair cooling, and then the hot return air in indirect evaporation heat exchanger airflow channel is cooled down, it only used exhaust blower work, and it is cold But effect is very significant, and energy consumption is low, and cooling efficiency is high.
If 3, fresh air temperature drift can suitably cool down to fresh air using fluorine pump refrigerating module, energy consumption will not be too Height increases the selection of cooling power consumption gradient.
4, fluorine pump refrigerating module and the evaporator of compressor refrigerating module are both placed between spray head and exhaust outlet, using changing The higher fresh air of humidity takes away the heat that evaporator sheds after heat, again using the cooling capacity of low temperature fresh air after water film evaporation, reaches Energy-efficient purpose.
Detailed description of the invention
Fig. 1 is the utility model assembled view.
In figure: 1- fluorine pump refrigerating module, 2- spraying cooling module, 3- compressor refrigerating module, 11- fluorine pump evaporator, 12-- expansion valve, 13- fresh wind port, 14- fluorine pump condenser, 21- collecting-tank, 22- water pump, 23- indirect evaporation heat exchanger, 24- are returned Air port, 25- spray head, 26- exhaust outlet, 27- exhaust blower, 28- air outlet, 29- pressure fan, 31- compressor, the evaporation of 32- compressor Device, 33- compressor condenser.
Specific embodiment
The utility model in order to better understand explains in detail the specific embodiment party of the utility model with reference to the accompanying drawing Formula.
A kind of cooling unit of data center, including fluorine pump refrigerating module 1, spraying cooling module 2, compressor refrigerating module 3, The spray head 25 that the spraying cooling module 2 includes indirect evaporation heat exchanger 23, sprays water on indirect evaporation heat exchanger 23, connection spray First 25 water pump 22, for the collecting-tank 21 that water pump 22 supplies water, airflow channel one end of the indirect evaporation heat exchanger 23 is connected to back Air port 24, airflow channel other end one end of the indirect evaporation heat exchanger 23 are connected to air outlet 28, the indirect evaporation heat exchange The water drenching beneath galleries of device 23 are connected to fresh wind port 13, and the water drenching upper part of channel of the indirect evaporation heat exchanger 23 is connected to exhaust outlet 26;
Spraying cooling module 2 carries out acceleration steaming using moisture film of the outdoor fresh air to the water drenching channel of indirect evaporation heat exchanger 23 Hair cooling, and then the hot return air in 23 airflow channel of indirect evaporation heat exchanger is cooled down, it only used the work of exhaust blower 27, And cooling effect is very significant, energy consumption is low, and cooling efficiency is high.
The fluorine pump evaporator 11 of the fluorine pump refrigerating module 1 is arranged at fresh wind port 13, the compressor refrigerating module 3 Compressor evaporator 32 is located at air outlet 28.If fresh air temperature drift can fit fresh air using fluorine pump refrigerating module 1 Work as cooling, energy consumption will not be too high, increases the selection of cooling power consumption gradient.
The return air inlet 24 is connected to the hot-air duct after data center's heat exchange, and air outlet 28 is connected to the refrigeration of data center Air pipeline, fresh wind port 13 are connected to outdoor air.
The spray head 25 is located at the water drenching upper part of channel of indirect evaporation heat exchanger 23, and the spray head 25 is mounted on connection water pump On 22 water pipe.The fluorine pump condenser 14 of the fluorine pump refrigerating module 1 and the compressor condenser 33 of compressor refrigerating module 3 are equal It is located between spray head 25 and exhaust outlet 26, is equipped with exhaust blower 27 in the exhaust outlet 26.
The evaporator of fluorine pump refrigerating module 1 and compressor refrigerating module 3 is both placed between spray head 25 and exhaust outlet 26, benefit The heat that evaporator sheds is taken away with the higher fresh air of humidity after heat exchange, utilizes the cooling capacity of low temperature fresh air after water film evaporation again, Energy-efficient purpose is reached.
The fluorine pump refrigerating module 1 further includes fluorine pump, and the fluorine pump connects fluorine by expansion valve 12 and pumps evaporator 11, The fluorine pump connection fluorine pumps condenser 14, and fluorine pumps the connection fluorine of evaporator 11 and pumps condenser 14.
The compressor refrigerating module 3 further includes compressor 31, the compressor 31 and compressor evaporator 32, pressure Contracting machine condenser 33 is separately connected, and the compressor evaporator 32, compressor condenser 33 are connected by expansion valve 12.It is described to send Pressure fan 29 is equipped in air port 28.
When outdoor temperature Ta >=30 DEG C, opens fluorine and pumps refrigerating module 1, spraying cooling module 2, compressor refrigerating module 3, The hot return air of data center room enters unit in return air inlet 24, cools down in indirect evaporation heat exchanger 23 first, steams through compressor It sends out device 32 and supplements cooling capacity completion return air processing;Cold air enters data center by air outlet 28 under the effect of pressure fan 29 It is interior, cooling down is carried out to information technoloy equipment and controller switching equipment;Cold air passes through return air by becoming the hot-air of high temperature after information technoloy equipment Mouth 24 returns to the cooling unit of evaporation, so recycles.The fresh air enters unit by fresh wind port 13, is pumping evaporator by fluorine Enter indirect evaporation heat exchanger 23 after 11 cooling downs, the gas with indirect evaporation heat exchanger 23 is evaporated under water spray evaporation Circulation road carries out high efficient heat exchanging, and the humid air for the completion that exchanges heat pumps condenser 14 and compressor condensation under the effect of exhaust blower 27 for fluorine Unit is discharged after 33 cooling down of device.
As 20 DEG C of outdoor temperature, 30 DEG C of < Ta <, close compressor refrigerating module 3, return air is directly entered spraying cooling mould Block 2, after 2 cooling of spraying cooling module processing, cold air is exported by air outlet 28, and cold air becomes high temperature after passing through information technoloy equipment Hot-air unit is returned to by return air inlet 24, so recycle.The fresh air enters unit by fresh wind port 13, is passing through fluorine Enter indirect evaporation heat exchanger 23 after pumping the fluorine pump evaporator cooling down in refrigerating module 1, is evaporated under water spray evaporation High efficient heat exchanging is carried out with the airflow channel of indirect evaporation heat exchanger 23, the humid air for the completion that exchanges heat is fluorine under the effect of exhaust blower 27 Unit is discharged after pump condenser 14 and 33 cooling down of compressor condenser.
When outdoor temperature Ta≤20 DEG C, close compressor refrigerating module 3 closes fluorine and pumps refrigerating module 1, it is cold to close spray But module 2, return air cool down through indirect evaporation heat exchanger 23 and new air heat-exchange, and cold air is exported by air outlet 28, and cold air passes through The hot-air for becoming high temperature after information technoloy equipment returns to the cooling unit of evaporation by return air inlet 24, so recycles.Fresh air is from fresh wind port 13 Enter and is discharged with after the heat exchange of return air dry cooling condition through exhaust outlet 26 through indirect evaporation heat exchanger 23;
The refrigeration system can make full use of fluorine pump refrigeration, spraying cooling indirect evaporation, mechanical refrigeration, realize efficiently Heat exchange realizes free refrigeration using outdoor cold wind.
Above-described embodiment is the preferable embodiment of the utility model, but the embodiments of the present invention is not by above-mentioned The limitation of embodiment, it is made under other any spiritual essence and principles without departing from the utility model to change, modify, replacing In generation, simplifies combination, should be equivalent substitute mode, is included within the protection scope of the utility model.

Claims (7)

1. a kind of cooling unit of data center, characterized in that cooling including fluorine pump refrigerating module, spraying cooling module, compressor Module, the spraying cooling module includes indirect evaporation heat exchanger, the spray head sprayed water on indirect evaporation heat exchanger, connects spray head Water pump, for the collecting-tank that water pump supplies water, airflow channel one end of the indirect evaporation heat exchanger is connected to return air inlet, it is described indirectly Airflow channel other end one end of evaporating heat exchanger is connected to air outlet, the water drenching beneath galleries connection of the indirect evaporation heat exchanger The water drenching upper part of channel of fresh wind port, the indirect evaporation heat exchanger is connected to exhaust outlet;
The fluorine pump evaporator of the fluorine pump refrigerating module is arranged at fresh wind port, and the compressor of the compressor refrigerating module evaporates Device is located at air outlet.
2. the cooling unit of a kind of data center according to claim 1, characterized in that the return air inlet is connected to data center Hot-air duct after heat exchange, air outlet are connected to the cooling air pipeline of data center, and fresh wind port is connected to outdoor air.
3. the cooling unit of a kind of data center according to claim 1, characterized in that the spray head is located at indirect evaporation and changes The water drenching upper part of channel of hot device, the spray head are mounted on the water pipe of connection water pump.
4. the cooling unit of a kind of data center according to claim 3, characterized in that the fluorine pump of the fluorine pump refrigerating module The compressor condenser of condenser and compressor refrigerating module is each provided between spray head and exhaust outlet, the row of being equipped in the exhaust outlet Blower.
5. the cooling unit of a kind of data center according to claim 1, characterized in that the fluorine pump refrigerating module also wraps Fluorine pump is included, the fluorine pump connects fluorine by expansion valve and pumps evaporator, and the fluorine pump connection fluorine pumps condenser, and fluorine pumps evaporator and connects Connect fluorine pump condenser.
6. the cooling unit of a kind of data center according to claim 1, characterized in that the compressor refrigerating module is also Including compressor, the compressor is separately connected with compressor evaporator, compressor condenser, the compressor evaporator, Compressor condenser is connected by expansion valve.
7. the cooling unit of a kind of data center according to claim 1, characterized in that be equipped with air-supply in the air outlet Machine.
CN201821678308.1U 2018-10-16 2018-10-16 A kind of cooling unit of data center Active CN208998238U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821678308.1U CN208998238U (en) 2018-10-16 2018-10-16 A kind of cooling unit of data center

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821678308.1U CN208998238U (en) 2018-10-16 2018-10-16 A kind of cooling unit of data center

Publications (1)

Publication Number Publication Date
CN208998238U true CN208998238U (en) 2019-06-18

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109163401A (en) * 2018-10-16 2019-01-08 郑州云海信息技术有限公司 A kind of cooling unit of data center
WO2023010853A1 (en) * 2021-08-04 2023-02-09 中兴通讯股份有限公司 Indirect evaporative cooling device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109163401A (en) * 2018-10-16 2019-01-08 郑州云海信息技术有限公司 A kind of cooling unit of data center
WO2023010853A1 (en) * 2021-08-04 2023-02-09 中兴通讯股份有限公司 Indirect evaporative cooling device

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