Intelligent isolation device for cold and hot channels of data center air conditioner

By designing isolation and protection components in the data center air conditioning, the problem of hot and cold air flowing between each other when the doors of the hot and cold aisle isolation device are opened is solved, realizing independent operation and efficient cooling of the hot and cold aisles and reducing energy consumption.

CN224139349UActive Publication Date: 2026-04-17SHENZHEN ZONE COOLING TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN ZONE COOLING TECH
Filing Date
2025-05-13
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The hot and cold aisle isolation devices in existing data center air conditioning systems can easily cause hot and cold air to mix when the isolation device door is opened, affecting cooling efficiency and energy consumption.

Method used

An intelligent isolation device comprising isolation components and protective components is designed. The isolation components include an isolation cover, a sealed door, an indoor air cooler, an air cooler duct, an exhaust fan, a support frame, a moisture-absorbing frame, and a dustproof net. The protective components include a separator strip, a wiring port, a limiting frame, a magnetic groove, a magnetic column, and a dustproof plate. These components achieve physical isolation of the hot and cold aisles and purification of the internal environment.

Benefits of technology

It effectively prevents airflow from mixing between hot and cold aisles, maintains air circulation, improves cooling efficiency, prevents moisture and dust from entering, enables independent operation of hot and cold aisles, improves cooling efficiency and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a data center air conditioner cold and hot channel intelligent isolation device, relates to the automobile part processing technical field, including data center cabinet and isolation subassembly, the bottom of data center cabinet is equipped with the fixed bottom plate, and data center cabinet is symmetrically arranged at fixed bottom plate upper surface both ends, and the isolation subassembly is equipped with the fixed bottom plate. Supporting strips are installed on the front side and the rear side of the upper end of the data center cabinet, dustproof skylights are arranged on the inner sides of the supporting strips, horizontal sliding doors are slidably connected to the front end and the rear end of the upper surface of the fixed bottom plate, and the tops of the horizontal sliding doors are slidably connected with the lower surfaces of the supporting strips. According to the intelligent isolation device for the cold and hot channels of the data center air conditioner, through the isolation assembly, a transition isolation structure is arranged between the cold and hot channels, mutual air fleeing of the cold and hot channels can be prevented, mutual mixing of cold air and hot air of the cold and hot channels is avoided, and through the protection assembly, rapid arrangement of internal cables can be achieved; the arrangement is more convenient, and the cable can be protected.
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Description

Technical Field

[0001] This utility model relates to the field of automotive parts processing technology, specifically to an intelligent hot and cold aisle isolation device for data center air conditioning. Background Technology

[0002] Data center air conditioning is a precision cooling system specifically designed for electronic equipment rooms. Its core function is to ensure the stable operation of servers and other equipment by precisely controlling temperature and humidity, efficiently dissipating heat, and filtering air. Hot and cold aisle isolation devices in data center air conditioning systems are systems that physically separate hot and cold airflows, and their core function is to improve cooling efficiency and reduce energy consumption. However, current intelligent hot and cold aisle isolation devices still have the following shortcomings:

[0003] For example, patent document CN216491702U discloses a hot and cold aisle isolation device for server hosting rooms. This hot and cold aisle isolation device for server hosting rooms facilitates later installation and disassembly, and prevents cold and hot airflows from mixing and flowing together from the top of the servers, improving the isolation effect. It makes the space between two adjacent servers a cold airflow channel or a hot airflow channel, achieving physical isolation of cold and hot airflows. However, when it is necessary to enter the cold air aisle, opening the door of the isolation device will cause airflow to flow between the hot and cold aisles, resulting in the mixing of hot and cold air. Utility Model Content

[0004] The purpose of this invention is to provide an intelligent hot and cold aisle isolation device for data center air conditioning to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a smart hot and cold aisle isolation device for a data center air conditioner, comprising a data center cabinet and an isolation component. The data center cabinet has a fixed base plate installed at its bottom, and the data center cabinet is symmetrically arranged at both ends of the upper surface of the fixed base plate. Support bars are installed on the front and rear sides of the upper end of the data center cabinet, and dustproof skylights are provided on the inner sides of the support bars. Horizontal sliding doors are slidably connected to the front and rear ends of the upper surface of the fixed base plate, and the top of the horizontal sliding doors is slidably connected to the lower surface of the support bars. The isolation component is arranged on the front and rear sides of the fixed base plate, and the isolation component includes an isolation cover, a sealing door, an indoor air cooler, an air duct, an exhaust fan, a support frame, fixing bolts, a moisture-absorbing frame, a dustproof net, and a fixed skylight.

[0006] Furthermore, the isolation cover is disposed on the front and rear sides of the fixed base plate, and a sealing door is connected to the outer hinge of the isolation cover.

[0007] Furthermore, an indoor air cooler is installed on the right side of the isolation cover, and a cold air duct is provided on the top of the indoor air cooler. The upper end of the cold air duct passes through the right side of the isolation cover and extends into the inside of the right side of the isolation cover.

[0008] Furthermore, an exhaust fan is installed on the upper left side of the isolation cover, and a support frame is installed on the outer left side of the exhaust fan. A fixing bolt is threaded onto the right side surface of the support frame, and a moisture-absorbing frame is installed on the right inner side of the support frame. A dustproof net is provided on the left inner side of the support frame.

[0009] Furthermore, a fixed skylight is installed on the upper side of the isolation cover, and the fixed skylight and the isolation cover are an integrated structure.

[0010] Furthermore, the data center cabinet is provided with a cable management channel on the upper side, and the inner side of the cable management channel is provided with protective components for facilitating cable management.

[0011] Furthermore, the protective component includes a separator, a threading port, and a limiting frame, with the separator disposed inside the wire trough, the threading port being provided on the lower inner surface of the wire trough, and the limiting frame being installed on the inner surface of the wire trough.

[0012] Furthermore, the protective component also includes a magnetic suction groove, a magnetic suction column, and a dustproof plate. A magnetic suction groove is provided on the outer side of the upper surface of the sprue, a magnetic suction column is engaged with the inner side of the magnetic suction groove, and a dustproof plate is installed on the top of the magnetic suction column.

[0013] This utility model provides an intelligent hot and cold aisle isolation device for data center air conditioning, which has the following beneficial effects:

[0014] 1. This utility model incorporates an isolation component, including an isolation cover, a sealed door, an indoor air cooler, a cold air duct, an exhaust fan, a support frame, fixing bolts, a moisture-absorbing frame, a dustproof net, and a fixed skylight. When entering the isolation cover, the sealed door is opened first, then closed to seal the interior. The indoor air cooler is then activated to cool the interior through the cold air duct. Simultaneously, the exhaust fan is activated to expel hot air from the isolation cover, maintaining internal air circulation, improving cooling efficiency, and ensuring a uniform temperature between the isolation cover and the cold aisle. The moisture-absorbing frame prevents external moisture from entering through the exhaust fan, while the dustproof net filters and intercepts dust and other impurities. The support frame is detachable for cleaning the moisture-absorbing frame and dustproof net. The support frame is then fixed to the outside of the exhaust fan using the fixing bolts. This device, by establishing a transitional isolation structure between the hot and cold aisles, prevents cross-contamination of airflow and avoids mixing of hot and cold air.

[0015] 2. This utility model incorporates a protective component, including a separator, a cable entry port, and a limiting frame. The component also includes a magnetic chute, magnetic posts, and a dustproof plate. In use, cables inside the data center cabinet pass through the cable entry port into the cable management chute. After management, they pass through different limiting frames, which restrict the cable bundles. The separator allows for the separation and management of cables in different data center cabinets. After management, the magnetic posts connect to the magnetic chute, fixing the dustproof plate to the cable management chute for dust prevention. This allows the device to quickly and conveniently manage internal cables while providing protection. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of an intelligent hot and cold aisle isolation device for a data center air conditioner according to the present invention;

[0017] Figure 2 This is a three-dimensional structural diagram of the isolation component of an intelligent hot and cold aisle isolation device for a data center air conditioner according to the present invention;

[0018] Figure 3 This is a three-dimensional structural diagram of a data center cabinet for a data center air conditioning system with intelligent hot and cold aisle isolation device according to the present invention;

[0019] Figure 4 This is a three-dimensional structural diagram of the protective components of an intelligent isolation device for hot and cold aisles in a data center air conditioner, according to this utility model.

[0020] In the diagram: 1. Data center cabinet; 2. Fixed base plate; 3. Support strip; 4. Dustproof skylight; 5. Horizontal sliding door; 6. Isolation assembly; 601. Isolation cover; 602. Sealed door; 603. Indoor air cooler; 604. Air duct; 605. Exhaust fan; 606. Support frame; 607. Fixing bolts; 608. Moisture absorption frame; 609. Dustproof net; 610. Fixed skylight; 7. Cable tray; 8. Protective assembly; 801. Divider strip; 802. Cable entry point; 803. Limiting frame; 804. Magnetic suction groove; 805. Magnetic suction column; 806. Dustproof plate. Detailed Implementation

[0021] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0022] like Figures 1 to 4As shown, a smart hot and cold aisle isolation device for a data center air conditioner includes a data center cabinet 1 and an isolation component 6. A fixed base plate 2 is installed at the bottom of the data center cabinet 1, and the data center cabinet 1 is symmetrically arranged at both ends of the upper surface of the fixed base plate 2. Support bars 3 are installed on the front and rear sides of the upper end of the data center cabinet 1, and dustproof skylights 4 are provided inside the support bars 3. Horizontal sliding doors 5 are slidably connected to the front and rear ends of the upper surface of the fixed base plate 2, and the top of the horizontal sliding doors 5 is slidably connected to the lower surface of the support bars 3. The isolation component 6 is arranged on the front and rear sides of the fixed base plate 2, and the isolation component 6 includes an isolation cover 601, a sealing door 602, an indoor air cooler 603, a cold air duct 604, an exhaust fan 605, a support frame 606, fixing bolts 607, a moisture-absorbing frame 608, a dustproof net 609, and a fixed skylight 61. 0. An isolation cover 601 is installed on the front and rear sides of the fixed base plate 2, and a sealing door 602 is connected to the outer side of the isolation cover 601 by a hinge. An indoor air cooler 603 is installed on the right side of the isolation cover 601, and a cold air duct 604 is installed on the top of the indoor air cooler 603. The upper end of the cold air duct 604 passes through the right side of the isolation cover 601 and extends into the inside of the right side of the isolation cover 601. An exhaust fan 605 is installed on the upper left side of the isolation cover 601, and a support frame 606 is installed on the outer side of the left end of the exhaust fan 605. A fixing bolt 607 is threaded to the right end of the support frame 606, and a moisture-absorbing frame 608 is installed on the right inner side of the support frame 606. A dustproof net 609 is installed on the left inner side of the support frame 606. A fixed skylight 610 is installed on the upper side of the isolation cover 601, and the fixed skylight 610 and the isolation cover 601 are an integrated structure.

[0023] The specific operation is as follows: When entering the interior, first open the sealing door 602 to enter the isolation enclosure 601, then close the sealing door 602 to seal the inside of the isolation enclosure 601. Start the indoor air cooler 603 to cool the inside of the isolation enclosure 601 through the cold air duct 604. At the same time, start the exhaust fan 605 to exhaust the hot air inside the isolation enclosure 601, while maintaining the internal cold air circulation to improve cooling efficiency and keep the inside of the isolation enclosure 601 cool. The temperature inside the aisle is uniform. The moisture-absorbing frame 608 prevents external moisture from entering the aisle through the exhaust fan 605, while the dustproof net 609 intercepts and filters external dust and other impurities. The support frame 606 can be removed to facilitate cleaning of the moisture-absorbing frame 608 and the dustproof net 609. The support frame 606 is then installed on the outside of the exhaust fan 605 using fixing bolts 607. After the temperature inside the isolation cover 601 is cooled to a level suitable for the temperature inside the cold aisle, the horizontal sliding door 5 can be opened to enter the cold aisle.

[0024] Please refer to Figure 4The data center cabinet 1 has a cable management trough 7 on its upper side, and a protective component 8 for facilitating cable management is provided inside the cable management trough 7. The protective component 8 includes a partition strip 801, a cable pass-through port 802, and a limiting frame 803. The partition strip 801 is located inside the cable management trough 7. The cable pass-through port 802 is opened on the lower inner surface of the cable management trough 7, and the limiting frame 803 is installed on the inner surface of the cable management trough 7. The protective component 8 also includes a magnetic suction groove 804, a magnetic suction column 805, and a dustproof plate 806. The magnetic suction groove 804 is opened on the outer side of the upper surface of the cable management trough 7. The magnetic suction column 805 is engaged and connected inside the magnetic suction groove 804, and the dustproof plate 806 is installed on the top of the magnetic suction column 805.

[0025] The specific operation is as follows: When in use, the cables inside the data center cabinet 1 are passed through the cable entry port 802 into the inner side of the cable management trough 7, and after being managed, they pass through different limit frames 803. The limit frames 803 limit the cable harness. The separator strip 801 can separate and manage the cables in different groups of data center cabinets 1. After management, the dustproof plate 806 is fixed on the cable management trough 7 by magnetic connection between the magnetic column 805 and the inner side of the magnetic groove 804, which plays a certain role in dust prevention.

[0026] In summary, as Figures 1 to 4 As shown, the intelligent hot and cold aisle isolation device for the data center air conditioning system operates as follows: First, cables inside the data center cabinet 1 pass through the cable entry port 802 into the inner side of the cable management trough 7. After management, they pass through different limiting frames 803, which limit the cable bundles. The separating strips 801 separate and manage cables in different groups of data center cabinets 1. After management, the magnetic column 805 magnetically connects to the inner side of the magnetic groove 804, fixing the dustproof plate 806 to the cable management trough 7, thus providing a certain degree of dust prevention. During the use of this device, to enter the cold aisle, the sealing door 602 must be opened first to enter the isolation cover 601. The sealing door 602 is then closed to seal the inside of the isolation cover 601. The indoor air cooler 603 is then started. 03. The inside of the isolation cover 601 is cooled by the cold air duct 604. At the same time, the exhaust fan 605 is started to exhaust the hot air inside the isolation cover 601, while maintaining the internal cold air circulation, improving the cooling efficiency, and keeping the temperature inside the isolation cover 601 the same as the inside of the cold aisle. The moisture absorption frame 608 can prevent external moisture from entering the interior through the exhaust fan 605, and the dust filter 609 can intercept and filter external dust and other impurities. The support frame 606 can be removed to facilitate the cleaning of the moisture absorption frame 608 and the dust filter 609. Then, the support frame 606 is installed on the outside of the exhaust fan 605 by fixing bolts 607. After the temperature inside the isolation cover 601 is cooled to a temperature that is compatible with the inside of the cold aisle, the horizontal sliding door 5 can be opened to enter the inside of the cold aisle.

[0027] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A cold and hot aisle intelligent isolation device of a data center air conditioner, comprising a data center cabinet (1) and an isolation assembly (6), characterized in that: The data center cabinet (1) is equipped with a fixed base plate (2) at the bottom, and the data center cabinet (1) is symmetrically arranged at both ends of the upper surface of the fixed base plate (2). Support bars (3) are installed on the front and rear sides of the upper end of the data center cabinet (1), and dustproof skylights (4) are provided on the inner side of the support bars (3). Horizontal sliding doors (5) are slidably connected to the front and rear ends of the upper surface of the fixed base plate (2), and the top of the horizontal sliding door (5) is slidably connected to the lower surface of the support bar (3). The isolation component (6) is arranged on the front and rear sides of the fixed base plate (2), and the isolation component (6) includes an isolation cover (601), a sealing door (602), an indoor air cooler (603), an air cooler duct (604), an exhaust fan (605), a support frame (606), fixing bolts (607), a moisture-absorbing frame (608), a dustproof net (609), and a fixed skylight (610).

2. The intelligent hot and cold aisle containment apparatus of claim 1, wherein, The isolation cover (601) is located on the front and rear sides of the fixed base plate (2), and the outer hinge of the isolation cover (601) is connected to a sealing door (602).

3. The intelligent hot and cold aisle containment apparatus of claim 1, wherein, An indoor air cooler (603) is installed on the right side of the isolation cover (601), and a cold air duct (604) is provided on the top of the indoor air cooler (603). The upper end of the cold air duct (604) passes through the right side of the isolation cover (601) and extends into the inside of the right side of the isolation cover (601).

4. The intelligent hot and cold aisle containment apparatus of claim 1, wherein, An exhaust fan (605) is installed on the upper left side of the isolation cover (601), and a support frame (606) is installed on the outer left side of the exhaust fan (605). A fixing bolt (607) is threaded onto the right side surface of the support frame (606), and a moisture-absorbing frame (608) is installed on the right side inside the support frame (606). A dustproof net (609) is provided on the left side inside the support frame (606).

5. The intelligent hot and cold aisle containment apparatus of claim 1, wherein, A fixed skylight (610) is installed on the upper side of the isolation cover (601), and the fixed skylight (610) and the isolation cover (601) are an integrated structure.

6. The intelligent hot and cold aisle containment apparatus of claim 1, wherein, The data center cabinet (1) is provided with a cable management trough (7) on the upper side, and a protective component (8) for facilitating cable management is provided inside the cable management trough (7).

7. The intelligent hot and cold aisle containment apparatus of claim 6, wherein, The protective component (8) includes a separator (801), a wire pass-through port (802), and a limiting frame (803). The separator (801) is located inside the wire trough (7). The wire pass-through port (802) is provided on the lower inner surface of the wire trough (7), and the limiting frame (803) is installed on the inner surface of the wire trough (7).

8. The intelligent hot and cold aisle containment apparatus of claim 6, wherein, The protective component (8) also includes a magnetic suction groove (804), a magnetic suction column (805) and a dustproof plate (806), and a magnetic suction groove (804) is provided on the outer side of the upper surface of the tidying groove (7). A magnetic suction column (805) is engaged and connected to the inner side of the magnetic suction groove (804), and a dustproof plate (806) is installed on the top of the magnetic suction column (805).

Citation Information

Patent Citations

  • Cold and hot channel isolation device for server hosting machine room

    CN216491702U