CN214901798U - High-efficient heat abstractor of information computer lab - Google Patents

High-efficient heat abstractor of information computer lab Download PDF

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Publication number
CN214901798U
CN214901798U CN202120288641.7U CN202120288641U CN214901798U CN 214901798 U CN214901798 U CN 214901798U CN 202120288641 U CN202120288641 U CN 202120288641U CN 214901798 U CN214901798 U CN 214901798U
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China
Prior art keywords
pipe
ventilation
computer lab
air
side wall
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CN202120288641.7U
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Chinese (zh)
Inventor
李波
赵达
刘慧豪
曾春钦
廖丽芬
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Guangzhou Zhongjinda Technology Co ltd
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Guangzhou Zhongjinda Technology Co ltd
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Abstract

The utility model provides a high-efficient heat abstractor of information computer lab, the utility model relates to a computer lab heat abstractor technical field, computer lab upside inner wall is equipped with bilateral symmetry and is equipped with the fixed plate, the lower lateral wall of fixed plate and the upper end fixed connection of bracing piece, be equipped with one in the computer lab and lead to the tuber pipe, the lower extreme and one lead to tuber pipe fixed connection of bracing piece, the lower lateral wall bilateral symmetry of one lead to the tuber pipe link up and is equipped with the aspiration channel No. one, the lower lateral wall of aspiration channel No. one is equipped with one leads to the fan, one leads to the tuber pipe and passes after the right lateral wall of computer lab, link up with an air-out pipe and set up, one leads to the tuber pipe right-hand member and inlays and is equipped with No. three ventilating fans, the right-hand member of an air-out pipe is funnel-shaped setting, the right-hand member of an air-out pipe is equipped with No. two filter screens, the outside of an air-out pipe is equipped with the sunshade canopy, the sunshade canopy is fixed in the right-hand wall of computer lab; the device carries out the efficiency of wind circulation through improving in the computer lab with outdoor to improve the radiating efficiency in the computer lab, simple structure, convenient operation.

Description

High-efficient heat abstractor of information computer lab
Technical Field
The utility model relates to a computer lab heat abstractor technical field, concretely relates to high-efficient heat abstractor of information computer lab.
Background
The computer lab generally indicates telecommunications, net expert, remove, the double-line, electric power and government or enterprise etc. deposit the server, for user and staff provide the place of IT service, the probability increase that breaks down when the computer lab high temperature can lead to equipment operation influences equipment performance and operation to data suffer to destroy and also beat the increase with the possibility of losing, general computer lab air is not circulated, and the heat in the computer lab gives off not going out, thereby leads to the computer lab high temperature, and the radiating effect is poor.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art's defect and not enough, provide a reasonable in design's high-efficient heat abstractor of information computer lab, the device carries out the efficiency of wind circulation through improving in the computer lab with outdoor to improve the radiating efficiency in the computer lab, simple structure, convenient operation.
In order to achieve the above purpose, the utility model adopts the following technical proposal: the novel wind-proof awning comprises a fixed plate, a supporting rod, a first ventilating pipe, a first air suction pipe, a first ventilating fan, a third ventilating fan, a first air outlet pipe, a second filter screen, a sun-shading rain-proof awning, a second ventilating pipe, a fourth ventilating fan, an air inlet pipe, a rain-proof awning, a third filter screen, a second air outlet pipe and a blocking net; the inner wall of the upper side of the machine room is provided with fixed plates in bilateral symmetry, the lower side wall of each fixed plate is fixedly connected with the upper end of each support rod, a first ventilation pipe is arranged in the machine room, the lower end of each support rod is fixedly connected with the first ventilation pipe, the lower side wall of the first ventilation pipe is provided with a first air suction pipe in bilateral symmetry in a through mode, the lower side wall of the first air suction pipe is provided with a first ventilation fan, the first ventilation pipe penetrates through the right side wall of the machine room and is communicated with the first air outlet pipe, the right end of the first ventilation pipe is embedded with a third ventilation fan, the right end of the first air outlet pipe is arranged in a funnel-shaped mode, the right end of the first air outlet pipe is provided with a second filter screen, the outer side of the first air outlet pipe is provided with a sun-shading rain-shading shed, the sun-shading rain-shading shed is fixed on the right side wall of the machine room, the second ventilation pipe penetrates through the left side wall of the machine room, the second ventilation pipe is provided with a fourth ventilation fan, the left end of the second ventilation pipe is communicated with an air inlet pipe, and the left end of the air inlet pipe is arranged in a funnel-shaped mode, be equipped with the canopy that keeps off on the left side wall of computer lab, the air-supply line is located the canopy that keeps off, and the bottom that keeps off the canopy is equipped with No. three filter screens, and the right side wall of No. two ventilation pipes link up and is equipped with No. two play tuber pipes, and No. two right-hand members that go out the tuber pipe are hopper-shaped and set up, and No. two right-hand members that go out the tuber pipe are equipped with the fender net, and the equal external power supply of fan, No. three ventilation fans and No. four ventilation fans leads to one number.
Further, the left end of a logical tuber pipe inlay and be equipped with No. two ventilation fans, the left side of No. two ventilation fans is equipped with the filter screen No. one, No. one the filter screen inlays and locates in a logical tuber pipe, No. two ventilation fan external power supply.
Further, the lower lateral wall of fixed plate be connected with electric telescopic handle's stiff end, the downside of fixed plate is equipped with the connecting rod, the connecting pipe is located logical tuber pipe downside No. one, electric telescopic handle's expansion end and connecting rod fixed connection, the aspiration channel left and right sides all is equipped with the slide rail, slide on the slide rail and be equipped with the sleeve pipe, bilateral symmetry's sleeve pipe passes through the connecting rod and connects, the bottom of slide rail is equipped with the stopper, stopper and sheathed tube lower lateral wall activity joint, sheathed tube lower lateral wall is equipped with No. two aspiration channels, electric telescopic handle external power supply.
Furthermore, a filter element is arranged in the second air outlet pipe.
After the structure is adopted, the beneficial effects of the utility model are that: the utility model provides a high-efficient heat abstractor of information computer lab, the device carry out the efficiency of wind circulation with outdoor in through improving the computer lab to improve the radiating efficiency in the computer lab, simple structure, convenient operation.
Description of the drawings:
fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a right side view of fig. 1.
Fig. 3 is an enlarged view of a portion a in fig. 1.
Description of reference numerals:
computer lab 1, fixed plate 2, bracing piece 3, No. 4 ventilation pipes, aspiration channel 5, slide rail 6, stopper 6-1, No. 7 ventilation fans, No. two ventilation fans 8, a filter screen 9, No. three ventilation fans 10, No. 11 play tuber pipe, No. two filter screens 12, sunshade canopy 13, electric telescopic handle 14, connecting rod 15, sleeve pipe 16, No. two aspiration channels 17, No. two ventilation pipes 18, No. four ventilation fans 19, air-supply line 20, canopy 21, No. three filter screens 22, No. two play tuber pipe 23, filter core 24, fender net 25.
The specific implementation mode is as follows:
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.
As shown in fig. 1 to fig. 3, the following technical solutions are adopted in the present embodiment: the novel solar energy air conditioner comprises a fixing plate 2, a support rod 3, a first ventilation pipe 4, a first air suction pipe 5, a first ventilation fan 7, a third ventilation fan 10, a first air outlet pipe 11, a second filter screen 12, a sun-shading rain-blocking shed 13, a second ventilation pipe 18, a fourth ventilation fan 19, an air inlet pipe 20, a rain-blocking shed 21, a third filter screen 22, a second air outlet pipe 23 and a blocking net 25; the inner wall of the upper side of a machine room 1 is provided with a bilateral symmetry bolt connected with a fixed plate 2, the lower side wall of the fixed plate 2 is welded with the upper end of a support rod 3, a first ventilation pipe 4 is arranged in the machine room 1, the lower end of the support rod 3 is welded with the first ventilation pipe 4, the lower side wall of the first ventilation pipe 4 is welded with a first air suction pipe 5 in a bilateral symmetry through way, the lower side wall of the first air suction pipe 5 is provided with a first ventilation fan 7, the left end of the first ventilation pipe 4 is embedded with a second ventilation fan 8, the left side of the second ventilation fan 8 is provided with a first filter screen 9, the first filter screen 9 is embedded in the first ventilation pipe 4, the first ventilation pipe 4 penetrates through the right side wall of the machine room 1 and is welded with a first air outlet pipe 11, the right end of the first ventilation pipe 4 is embedded with a third ventilation fan 10, the right end of the first air outlet pipe 11 is arranged in a funnel shape, the right end of the first air outlet pipe 11 is provided with a second filter screen 12, the outer side of the first air outlet pipe 11 is provided with a sunshade rain shelter 13, the sunshade rain-proof shed 13 is bolted on the right side wall of the machine room 1, the second ventilating pipe 18 passes through the left side wall of the machine room 1, the fourth ventilating fan 19 is arranged in the second ventilating pipe 18, the left end of the second ventilating pipe 18 is penetrated and welded with an air inlet pipe 20, the left end of the air inlet pipe 20 is arranged in a funnel shape, the rain-proof shed 21 is bolted on the left side wall of the machine room 1, the air inlet pipe 20 is positioned in the rain-proof shed 21, the bottom of the rain-proof shed 21 is provided with a third filter screen 22, the right side wall of the second ventilating pipe 18 is penetrated and welded with a second air outlet pipe 23, the right end of the second air outlet pipe 23 is arranged in a funnel shape, a filter element 24 is arranged in the second air outlet pipe 23, the right end of the second air outlet pipe 23 is connected with a screen 25 in a threaded manner, the lower side wall of the fixed plate 2 is welded with the fixed end of the electric telescopic rod 14, the lower side of the fixed plate 2 is provided with a connecting rod 15, the connecting pipe 15 is positioned at the lower side of the one ventilating pipe 4, the movable end of the electric telescopic rod 14 is welded with the connecting rod 15, slide rails 6 are welded on the left side and the right side of a first air suction pipe 5, sleeves 16 are arranged on the slide rails 6 in a sliding mode, the sleeves 16 in bilateral symmetry are connected through connecting rods 15, limiting blocks 6-1 are integrally formed at the bottoms of the slide rails 6, the limiting blocks 6-1 are movably clamped with the lower side wall of each sleeve 15, a second air suction pipe 17 is arranged on the lower side wall of each sleeve 16, an electric telescopic rod 14 is XTL in type, and a first ventilating fan 7, a second ventilating fan 8, a third ventilating fan 10, an electric telescopic rod 14 and a fourth ventilating fan 19 are all externally connected with a power supply.
The working principle of the specific embodiment is as follows: when the device is used, the first air outlet pipe 11 is positioned on the sunny side, the air inlet pipe 20 is positioned on the shady side, the first ventilating fan 7, the second ventilating fan 8, the third ventilating fan 10, the electric telescopic rod 14 and the fourth ventilating fan 19 are all electrified and started, heat in the machine room 1 is sucked into the first air suction pipe 5 under the action of the first ventilating fan 7, then the blowing force of the second ventilating fan 8 and the suction force of the third ventilating fan 10 enable the heat to pass through the second filter screen 12 along with air, then outdoor cold air passes through the third filter screen 22 and enters the machine room 1 under the action of the fourth ventilating fan 19, then the cold air passes through the second ventilating fan 18 and is dried through the filter element 24, the outdoor air is prevented from being wetted to influence equipment in the machine room 1, then the cold air enters the machine room 1 through the second air outlet pipe 23 and the blocking screen 25, air circulation is realized, when the temperature in the machine room 1 is overhigh, control electric telescopic handle 14 extension, drive connecting rod 15 and descend, drive sleeve pipe 16 and slide down on slide rail 6 for No. two aspiration channels 17 descend, make the heat can enter into No. one aspiration channel 5 fast, discharge again in the computer lab 1, improve the radiating efficiency.
After adopting above-mentioned structure, this embodiment's beneficial effect is as follows:
1. the second ventilating fan 8 is arranged, so that the flow of hot air in the first ventilating pipe 4 can be accelerated, the heat discharge efficiency in the first ventilating pipe 4 is improved, and roof dust is prevented from entering the first ventilating pipe 4 by the first filter screen 9;
2. a second air suction pipe 17 is arranged, so that the height can be adjusted, and the second air suction pipe is close to the equipment, so that the heat emission efficiency of the equipment is improved;
3. the filter element 24 is arranged, so that moisture in outdoor cold air can be removed, and the influence on equipment in the machine room 1 is avoided.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (4)

1. The utility model provides an information computer lab's high-efficient heat abstractor which characterized in that: the novel solar energy heat collector comprises a fixing plate (2), a supporting rod (3), a first ventilation pipe (4), a first air suction pipe (5), a first ventilation fan (7), a third ventilation fan (10), a first air outlet pipe (11), a second filter screen (12), a sun-shading rain shed (13), a second ventilation pipe (18), a fourth ventilation fan (19), an air inlet pipe (20), a rain shed (21), a third filter screen (22), a second air outlet pipe (23) and a blocking net (25); the inner wall of the upper side of the machine room (1) is provided with fixing plates (2) in bilateral symmetry, the lower side wall of each fixing plate (2) is fixedly connected with the upper end of a supporting rod (3), a first ventilation pipe (4) is arranged in the machine room (1), the lower end of each supporting rod (3) is fixedly connected with the first ventilation pipe (4), the lower side wall of the first ventilation pipe (4) is provided with a first air suction pipe (5) in bilateral symmetry in a penetrating manner, the lower side wall of the first air suction pipe (5) is provided with a first ventilation fan (7), the first ventilation pipe (4) penetrates through the right side wall of the machine room (1) and is communicated with a first air outlet pipe (11), the right end of the first ventilation pipe (4) is embedded with a third ventilation fan (10), the right end of the first air outlet pipe (11) is arranged in a funnel-shaped manner, the right end of the first air outlet pipe (11) is provided with a second filter screen (12), and the outer side of the first air outlet pipe (11) is provided with a rain shelter (13), sunshade rain shed (13) are fixed in on the right side wall of computer lab (1), No. two ventilation pipe (18) pass in the left side wall of computer lab (1), be equipped with No. four ventilation fan (19) in No. two ventilation pipe (18), the left end of No. two ventilation pipe (18) link up and is equipped with air-supply line (20), the left end of air-supply line (20) is hourglass hopper-shaped setting, be equipped with rain shed (21) on the left side wall of computer lab (1), air-supply line (20) are located rain shed (21), the bottom of rain shed (21) is equipped with No. three filter screen (22), the right side wall of No. two ventilation pipe (18) link up and is equipped with No. two play tuber pipe (23), the right-hand member that No. two play tuber pipe (23) is hourglass hopper-shaped setting, the right-hand member that No. two play tuber pipe (23) is equipped with fender net (25), a ventilation fan (7), No. three ventilation fan (10) and No. four ventilation fan (19) all external power supply.
2. The efficient heat dissipation device of an information machine room according to claim 1, wherein: the left end of a logical tuber pipe (4) inlay and be equipped with No. two ventilation fan (8), the left side of No. two ventilation fan (8) is equipped with filter screen (9) No. one, filter screen (9) inlay and locate logical tuber pipe (4) in, No. two ventilation fan (8) external power supply.
3. The efficient heat dissipation device of an information machine room according to claim 1, wherein: the utility model discloses a novel electric telescopic handle, including fixed plate (2), connecting rod (5), connecting rod (15) are located ventilation pipe (4) downside, the expansion end and connecting rod (15) fixed connection of electric telescopic handle (14), the downside of fixed plate (2) all is equipped with slide rail (6) in the suction pipe (5) left and right sides, slide rail (6) are gone up and are equipped with sleeve pipe (16), bilateral symmetry's sleeve pipe (16) are connected through connecting rod (15), the bottom of slide rail (6) is equipped with stopper (6-1), stopper (6-1) and the lower lateral wall activity joint of sleeve pipe (16), the lower lateral wall of sleeve pipe (16) is equipped with suction pipe (17) No. two, electric telescopic handle (14) external power supply.
4. The efficient heat dissipation device of an information machine room according to claim 1, wherein: a filter element (24) is arranged in the second air outlet pipe (23).
CN202120288641.7U 2021-02-02 2021-02-02 High-efficient heat abstractor of information computer lab Active CN214901798U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120288641.7U CN214901798U (en) 2021-02-02 2021-02-02 High-efficient heat abstractor of information computer lab

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120288641.7U CN214901798U (en) 2021-02-02 2021-02-02 High-efficient heat abstractor of information computer lab

Publications (1)

Publication Number Publication Date
CN214901798U true CN214901798U (en) 2021-11-26

Family

ID=78860800

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120288641.7U Active CN214901798U (en) 2021-02-02 2021-02-02 High-efficient heat abstractor of information computer lab

Country Status (1)

Country Link
CN (1) CN214901798U (en)

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