A skid-mounted integrated machine room

CN224805310UActive Publication Date: 2026-09-25ANHUI HUAYUAN HVAC ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202522270318.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-25
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0005]为了克服现有的撬装式集成机房难以满足高效、灵活的使用需求的问题,本实用新型提供了一种结构稳定、空间利用率高、扩展灵活且散热高效的撬装式集成机房

Benefits of technology

该一种撬装式集成机房,加强框架与调平支腿使机房抗形变能力提升50%,可承受运输过程中±30°倾斜冲击,适应松软地面等复杂地形,抽拉式舱体与分层设备架使内部空间利用率提升40%,设备维护时舱体可整体抽出,操作空间增加60%,模块舱体安装或者拆卸时间缩短至30分钟以内,支持1-4个舱体灵活组合,满足不同规模设备部署需求,循环气流设计使机房内部温差控制在5℃以内,设备运行温度降低8-10℃,故障率降低30%。

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Abstract

The utility model relates to pry dress formula integrated machine room technical field, concretely is a pry dress formula integrated machine room, including pry dress base, machine room main part, modularization cabin body, integrated heat abstract system, quick -witted connection subassembly, strengthen frame and leveling support leg make machine room anti -deformation ability promotion 50%, can bear in the transportation process the inclination impact of +30 DEG, adapt complex terrain such as soft ground, pull -out type cabin body and layered equipment frame make internal space utilization rate promotion 40%, equipment maintenance cabin body can integrally pull out, operation space increases 60%, module cabin body installation or dismounting time shortens to 30 minutes within, support 1-4 cabin body flexible combination, satisfy different scale equipment deployment demand, circulating air current design makes the temperature difference control in 5 DEG C within in machine room, equipment operation temperature reduces 8-10 DEG C, failure rate reduces 30%.
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Description

Technical Field

[0001] This utility model relates to the field of skid-mounted integrated data center technology, specifically a skid-mounted integrated data center. Background Technology

[0002] As is well known, skid-mounted integrated data centers are widely used in field operations, emergency communications, and other scenarios due to their modular design, ease of movement, and rapid deployment. However, traditional skid-mounted data centers have the following technical drawbacks.

[0003] Insufficient structural stability: Traditional skid-mounted bases often use simple steel splicing, which is prone to deformation when transported or placed on complex terrain, affecting the overall structural safety of the computer room. Low space utilization: Most internal equipment is fixedly installed, the compartments are poorly divided, and equipment maintenance and expansion require extensive disassembly, making the operation cumbersome. Poor modular expandability: The functional compartments are rigidly connected by welding or bolts, making it impossible to flexibly increase or decrease the number of compartments or adjust the layout according to needs. Poor heat dissipation efficiency: It mostly relies on a single axial flow fan for heat dissipation, resulting in poor airflow circulation inside the computer room. Areas with dense equipment are prone to localized high temperatures, affecting the operational stability of the equipment.

[0004] In existing technologies, some improved skid-mounted server rooms have attempted to optimize the base structure or add cooling fans, but they have not solved the overall problem of synergy between structural stability, space utilization and module expansion, making it difficult to meet the needs of efficient and flexible use. Utility Model Content

[0005] To overcome the problem that existing skid-mounted integrated data centers cannot meet the needs of efficient and flexible use, this utility model provides a skid-mounted integrated data center with stable structure, high space utilization, flexible expansion and efficient heat dissipation.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a skid-mounted integrated computer room, comprising: The skid-mounted base serves as the load-bearing foundation for the computer room. It is made of welded steel to form a reinforced frame, and the bottom is equipped with anti-slip skid components and leveling legs. The main body of the computer room is fixed on top of the skid-mounted base and includes detachable wall panels, a top rainproof canopy and side sliding doors. The wall panels are spliced ​​together by sealing connectors. The modular cabin is located inside the main body of the computer room and includes an equipment cabin, a power distribution cabin and an energy storage cabin. Each cabin is slidably connected to the skid-mounted base via bottom rails, and there are isolation partitions between the cabins. The integrated heat dissipation system includes a top ventilation assembly, side air intake assemblies, and internal air guides. The top ventilation assembly is located at the top of the main structure of the server room, the side air intake assemblies are embedded in the lower part of the wall panels, and the internal air guides are arranged along the gaps between the compartments. The quick-connect components include a water and electricity interface module and a cabin connection latch. The water and electricity interface module is located on the outside of the main body of the machine room, and the cabin connection latch is used to fix the modular cabin after it is pulled out.

[0007] Preferably, the reinforcing frame of the skid-mounted base is made of H-beams and channel steel welded together. Anti-slip skid components are welded to the bottom of the frame. The skid components have an inverted "U" shape and anti-slip teeth on the inside. The leveling legs have a spiral structure and are evenly distributed at the four corners of the frame. Wear-resistant pads are provided at the bottom of the legs.

[0008] Furthermore, the detachable wall panels of the main body of the computer room adopt a structure of color steel plate sandwiched with insulation layer. The edges of the wall panels are provided with tongue and groove, and the sealing connectors are rubber sealing strips and stainless steel buckles. The buckles pass through the tongue and groove to fix the wall panels, and sound-absorbing cotton is pasted on the inside of the wall panels.

[0009] Furthermore, the modular cabin has a layered equipment rack inside the equipment compartment. The equipment rack is slidably connected to the bottom of the cabin via a slide rail. A fireproof partition is provided between the power distribution compartment and the energy storage compartment. Ventilation holes are opened on the partition, and fire dampers are installed in the holes.

[0010] In a further embodiment, the top ventilation component of the integrated heat dissipation system includes an axial flow fan and rainproof louvers. The axial flow fan is fixed to the top of the main body of the machine room by a bracket, and the rainproof louvers cover the outside of the fan. The side air intake component includes a dust filter and adjustable louvers. The filter uses activated carbon composite filter material, and the internal air guide is a PVC air guide channel, which is arranged along the gap between the top and side of the cabin. An air outlet is opened on the surface of the air guide channel.

[0011] Based on the aforementioned solution, the water and electricity interface module of the quick connection component includes a waterproof cable connector, a quick water pipe connector, and a grounding terminal. Each interface is equipped with a dust cover. The cabin connection latch includes a lock seat fixed to the skid base and a lock tongue on the side of the cabin. The lock tongue and the lock seat are locked together by a spring clip.

[0012] Furthermore, based on the aforementioned scheme, the top of the main body of the computer room adopts a sloping structure for the rainproof canopy, the canopy roof is covered with an anti-ultraviolet coating, the edge of the canopy is provided with a water guide groove, the end of the water guide groove is connected to a drain pipe, and the drain pipe extends along the outside of the main body of the computer room to the edge of the skid-mounted base.

[0013] Furthermore, based on the aforementioned solution, each layer of the equipment compartment's tiered equipment rack is equipped with a cable management rack, which has a mesh structure and is used to organize the equipment connection cables.

[0014] Beneficial effects This skid-mounted integrated data center features a reinforced frame and leveling legs, increasing its deformation resistance by 50%. It can withstand ±30° tilting impacts during transportation and adapts to complex terrains such as soft ground. The pull-out cabins and layered equipment racks increase internal space utilization by 40%. During equipment maintenance, the cabins can be pulled out as a whole, increasing operating space by 60%. The installation or disassembly time of modular cabins is reduced to less than 30 minutes. It supports flexible combinations of 1-4 cabins to meet the deployment needs of equipment of different sizes. The circulating airflow design keeps the internal temperature difference of the data center within 5°C, reduces equipment operating temperature by 8-10°C, and reduces the failure rate by 30%. Attached Figure Description

[0015] Figure 1 This is a side view of the structure of this utility model; Figure 2 This is a schematic diagram of the structure of the quick-connect component of this utility model; Figure 3 This is a schematic diagram of the side air intake assembly of this utility model; Figure 4 This is a schematic diagram of the main structure of the computer room of this utility model; Figure 5 This is a schematic diagram of the modular cabin structure of this utility model; Figure 6 This is a schematic diagram of the structure of the skid-mounted base of this utility model.

[0016] In the diagram: 1. Skid-mounted base; 2. Skid-mounted component; 3. Support leg; 4. Main body of the computer room; 5. Rainproof canopy; 6. Sliding door; 7. Sealing connector; 8. Modular cabin; 9. Equipment compartment; 10. Power distribution compartment; 11. Energy storage compartment; 12. Slide rail; 13. Isolation partition; 14. Integrated heat dissipation system; 15. Top ventilation assembly; 16. Side air intake assembly; 17. Internal air guide; 18. Quick connection assembly Components; 19. Water and electricity interface module; 20. Cabin connection lock; 21. Anti-slip teeth; 22. Wear-resistant pad; 23. Sound-absorbing cotton; 24. Equipment rack; 25. Ventilation hole; 26. Fire damper; 27. Axial flow fan; 28. Rainproof louver; 29. ​​Filter screen; 30. Louver; 31. Air outlet; 32. Dust cover; 33. Spring buckle; 34. Water guide channel; 35. Drain pipe; 36. Cable management rack. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] See Figures 1-6 A skid-mounted integrated data center, through a collaborative design of "reinforced load-bearing base + modular cabin layout + directional integrated heat dissipation + rapid connection and adaptation," solves the problems of unstable structure, low space utilization, poor expansion flexibility, and inefficient heat dissipation in traditional skid-mounted data centers. The core solution is as follows: the skid base 1 adopts a steel composite frame, which takes into account both deformation resistance and convenient deployment; the main body of the data center 4 uses detachable sealed wall panels and a rainproof structure to adapt to complex outdoor environments; the modular cabin 8 uses a sliding rail 12 pull-out design to achieve zoned management and flexible maintenance of equipment; the integrated heat dissipation system 14 eliminates local high temperatures through "side air intake - internal air guidance - top exhaust" directional airflow; and the rapid connection component 18 simplifies cabin assembly and water and electricity connection. All components work closely together through modular integration, airflow coordination, and mechanical linkage, making it suitable for scenarios such as field operations, emergency communication, and temporary equipment deployment. It eliminates the need for complex on-site construction, ensuring structural stability and equipment safety while taking into account space utilization and expansion flexibility, meeting the needs of efficient and flexible use.

[0019] First, refer to Figure 1 In this embodiment, the skid-mounted base 1 is the "stable foundation" of the machine room, taking into account structural strength, terrain adaptability and convenient movement, and providing reliable support for all components. It adopts a combination of H-beams and channel steel welded together to form a reinforced frame. The H-beams are arranged along the length of the frame and bear the main load. The channel steels are connected laterally along the width to enhance the overall rigidity and avoid deformation when transported or placed on complex terrain. The outside of the frame is reinforced with corrugated steel plates to further improve wind load and pressure resistance, and is suitable for complex sites such as soft ground and slopes in the field.

[0020] The bottom of the frame is welded with an inverted "U"-shaped anti-slip skid assembly 2, with anti-slip teeth 21 on the inside. It can be quickly lifted and transported by forklift or crane without the need for on-site foundation pouring, meeting the emergency needs of "ready to use".

[0021] Spiral leveling legs 3 are evenly distributed at the four corners of the frame. Wear-resistant pads 22 (rubber material) are attached to the bottom of the legs 3. Rotating the legs 3 can adjust the level of the base, ensuring that the main body 4 of the computer room and the internal equipment are not tilted even on uneven ground, thus ensuring stable operation.

[0022] Parallel slide rails 12 are reserved along the length of the top of the frame. The surface of the slide rails 12 is polished to provide guidance for the pull-out loading and unloading of the modular cabin 8, ensuring that the cabin moves smoothly without jamming. Limiting protrusions are provided on both sides of the slide rails 12 to prevent the cabin from sliding out, and at the same time to provide a fixed base for the cabin connection locks 20 to prevent the cabin from shifting during operation.

[0023] Then, refer to Figure 4In this embodiment, the main body 4 of the computer room serves as the "protective shell" for the equipment, taking into account sealing and insulation, outdoor weather resistance, and convenient maintenance, creating a stable environment for the internal system. The wall panels adopt a composite structure, with an outer layer of color steel plate (corrosion-resistant and impact-resistant) and an inner layer of insulation (blocking the exchange of internal and external temperatures). Tongue and groove are pressed between the edges of the panels, and rubber sealing strips are embedded in the grooves. After splicing, they are fixed through by stainless steel buckles to form a gapless seal, effectively preventing dust and rainwater from seeping in, which is suitable for outdoor dusty and rainy environments. The wall panels are connected to the skid-mounted base 1 frame by bolts, which facilitates transportation or expansion after disassembly, flexibly adapting to the space requirements of different sites.

[0024] A sloping rain shelter 5 is welded to the top, and the roof is covered with an anti-UV coating to prevent aging caused by long-term sun exposure. The slope of the rain shelter 5 faces both sides of the machine room. A water guide channel 34 is welded to the edge of the eaves, and a drainage pipe 35 is connected to the end of the channel to guide rainwater to flow away along the outside of the machine room and prevent it from seeping into the interior. Sound-absorbing cotton 23 is pasted on the inside of the wall panels, which can reduce the noise of equipment operation, create a relatively quiet maintenance environment, and further enhance the heat preservation effect.

[0025] A sliding door 6 is provided on the side. The door is equipped with a lock and a sealing strip, which facilitates the entry and exit of maintenance personnel and prevents unauthorized operation. The sliding door 6 is reinforced with ribs around its perimeter to improve the rigidity of the door panel and prevent deformation caused by outdoor wind pressure. The joint between the door and the wall panel is also sealed with tongue and groove to ensure that there are no blind spots in the overall protection.

[0026] Secondly, see Figure 5 In this embodiment, the modular cabin 8 is the "functional unit" of the computer room. Through partitioned layout and pull-out design, it realizes orderly management and convenient maintenance of equipment. The computer room is equipped with an equipment cabin 9, a power distribution cabin 10 and an energy storage cabin 11. Each cabin is independent and separated by a partition 13. The equipment cabin 9 is used to place core working equipment (such as communication modules and control hosts). The power distribution cabin 10 integrates power supply and protection devices. The energy storage cabin 11 stores backup power. The partitions between the cabins can be removed as needed to flexibly adjust the internal space allocation and adapt to the deployment of equipment of different scales.

[0027] Each compartment has a slider installed at the bottom that is compatible with the slide rail 12 of the skid-mounted base 1. The entire compartment can be pulled out along the slide rail 12. During maintenance, there is no need to disassemble the surrounding equipment. The compartment can be pulled out of the machine room directly, providing more operating space.

[0028] The equipment compartment 9 is equipped with a layered equipment rack 24. The rack is connected to the bottom of the compartment via a slide rail 12 and can be pulled out independently for easy equipment installation and wiring. Each layer of equipment rack 24 has a cable management rack 36 (grid structure) on its edge to organize the equipment connection cables and prevent them from getting tangled, affecting heat dissipation or causing safety hazards.

[0029] A fireproof partition is installed between the power distribution compartment 10 and the energy storage compartment 11. Ventilation holes 25 are opened on the partition, and fire dampers 26 are installed in the holes. During normal operation, the fire dampers 26 are open to ensure airflow between the compartments. In case of fire, the fire dampers 26 are automatically closed to block the spread of fire and protect the safety of core equipment.

[0030] See again Figure 4 In this embodiment, the integrated heat dissipation system 14 is a "temperature control barrier" for stable equipment operation. It eliminates local high temperatures by guiding directional airflow and protects the equipment operating environment. The side air intake component 16 is embedded in the lower part of the wall panel of the main body 4 of the computer room. It includes a dust filter 29 and an adjustable louver 30. The dust filter 29 uses activated carbon composite filter material to filter dust, impurities and odors in the air and prevent them from entering the computer room and contaminating the equipment. The adjustable louver 30 can be manually or in conjunction with other controls to adjust the opening degree and control the air intake according to the equipment operation requirements to adapt to the heat dissipation requirements of different seasons or loads.

[0031] The internal air guide 17 is a PVC air guide channel, which is arranged along the gap between the top and side of the cabin. An air outlet 31 facing the equipment is opened on the surface of the channel. The angle of the air outlet 31 can be adjusted as needed. After the external cold air enters through the side air inlet component 16, it flows in a direction along the air guide channel and is accurately blown to the dense equipment area through the air outlet 31 to avoid local high temperature caused by airflow dispersion and ensure that the temperature of each cabin equipment is balanced.

[0032] The top ventilation component 15 is located at the top of the main body 4 of the computer room, including an axial flow fan 27 and rainproof louvers 28. The axial flow fan 27 is fixed by a bracket. When it is started, it creates negative pressure and draws the hot air in the computer room upward after absorbing heat. The rainproof louvers 28 cover the outside of the fan, which does not affect the exhaust and prevents rainwater and debris from falling into the computer room, making it suitable for outdoor open-air environments. A dustproof net is installed between the fan and the louvers to further block dust falling from the air.

[0033] In addition, see Figure 3 In this embodiment, the quick-connect component 18 simplifies the fixing of the cabin and the connection of water and electricity, and can complete the assembly or disassembly without complicated tools, thereby improving the efficiency of operation and maintenance. The water and electricity interface module 19 is located on the outside of the main body 4 of the computer room and integrates three types of core interfaces: waterproof cable connector (adapts to the power supply and signal transmission of the equipment, with a high protection level to prevent rainwater from seeping in), quick water pipe connector (if the equipment needs water cooling, it can quickly connect to the cooling water pipe), and grounding terminal (to ensure the electrical safety of the equipment and prevent the risk of static electricity or leakage). Each interface is equipped with a dust cover 32 on the outside, which is covered when not in use to prevent dust accumulation from affecting the connection effect.

[0034] The cabin connection latch 20 includes a lock seat fixed to the skid base 1 and a lock tongue on the side of the cabin. When the cabin is pushed into place along the slide rail 12, the lock tongue and the lock seat automatically align and engage, and are locked by the built-in spring buckle 33 to prevent the cabin from shifting due to vibration during equipment operation. During maintenance, simply press the latch unlock button to disengage the lock tongue from the lock seat and pull the cabin out along the slide rail 12. The operation is convenient and does not require disassembly of surrounding parts.

[0035] In addition, see Figure 6 In this embodiment, the slide rail 12 of the skid-mounted base 1 provides a pull guide for the modular cabin 8, the leveling support leg 3 ensures that the cabin is level and avoids the equipment tilting, and the cabin connecting latch 20 cooperates with the slide rail 12 to ensure the stability of the cabin during operation and facilitate flexible pulling during maintenance, thus achieving a balance between "stable load-bearing and flexible maintenance".

[0036] The integrated heat dissipation system 14 forms a directional circulation of "side air intake - internal air guidance - top air exhaust". Adjustable louvers on the side introduce cold air, PVC air guide channels guide airflow to accurately cover the equipment, and the top axial flow fan 27 extracts hot air, eliminating local high temperature in densely populated equipment areas, ensuring that the temperature of each compartment equipment is balanced, and avoiding the impact of overheating on operational stability.

[0037] The sealed wall panels and rainproof structure of the main body of the computer room 4 block the influence of outdoor dust, rain and temperature difference. The detachable design and the convenient hoisting of the skid-mounted base 1 allow for rapid deployment without on-site construction, making it suitable for outdoor, emergency and other scenarios without fixed infrastructure.

[0038] In addition, see Figure 1 In this embodiment, emergency communication deployment in the field A temporary communication equipment room needs to be built in the mountainous wilderness. The site is uneven, dusty and rainy, and an additional energy storage compartment will be needed later to extend the power supply time. The equipment room needs to be able to be set up quickly, operate stably, and be easy to maintain.

[0039] Finally, see Figure 1 In this embodiment, the spiral leveling legs 3 of the skid base 1 quickly calibrate the level to adapt to uneven ground in mountainous areas, and the reinforced frame and anti-slip skid parts 2 ensure no deformation during hoisting and transportation, thus ensuring the overall stability of the computer room.

[0040] Working principle: When using this skid-mounted integrated data center, the entire data center is first hoisted to the target site using a crane or forklift and the anti-slip skid components 2 of the skid base 1. The four corner leveling legs 3 are rotated, and the base is leveled using a level to ensure that the main body 4 of the data center is not tilted. The equipment compartment 9, power distribution compartment 10, and energy storage compartment 11 are pushed into the data center in sequence along the slide rail 12 of the skid base 1. The compartment connecting locks 20 are fastened and fixed. The water and electricity interface modules 19 on the outside of the data center are connected to the power supply, signal and cooling pipelines of the equipment (if necessary). The side sliding door 6 is closed to complete the deployment.

[0041] After the equipment is started, the integrated heat dissipation system 14 operates synchronously, the adjustable louvers on the side open, and cold air enters through the dust filter 29. The PVC air guide duct guides the cold air to the surface of each compartment equipment to absorb the heat of the equipment operation. The top axial flow fan 27 starts and draws the heat-absorbing hot air out of the machine room, forming a directional airflow circulation to maintain the internal temperature stability. The fireproof partition between the power distribution compartment 10 and the energy storage compartment 11 is kept ventilated, and the fire damper 26 is opened normally to ensure airflow between the compartments and at the same time prepare for fire protection.

[0042] When equipment maintenance is required, open the side sliding door 6, press the unlock button of the cabin connection latch 20, pull out the target cabin along the slide rail 12, remove the cables on the equipment rack 24 (the cable management rack 36 assists in quickly identifying the lines), complete the equipment inspection or replacement, regularly clean the dust filter 29 of the side air intake component 16 and the rainproof louvers 28 of the top ventilation component 15 to ensure the heat dissipation system is unobstructed, after maintenance, push the cabin back to its original position and lock it to restore the airtight state of the machine room.

[0043] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A skid-mounted integrated computer room, characterized in that, include: The skid-mounted base (1) serves as the foundation for the computer room. It is made of welded steel to form a reinforced frame, and the bottom is equipped with anti-slip skid parts (2) and leveling legs (3). The main body of the computer room (4) is fixed above the skid-mounted base (1), including detachable wall panels, a top rainproof canopy (5) and a side sliding door (6). The wall panels are spliced ​​together by sealing connectors (7). Modular cabin (8) is located inside the main body (4) of the computer room and includes equipment cabin (9), power distribution cabin (10) and energy storage cabin (11). Each cabin is slidably connected to the skid base (1) via bottom slide rail (12), and there is an isolation partition (13) between the cabins. An integrated heat dissipation system (14) includes a top ventilation assembly (15), a side air intake assembly (16), and an internal air guide (17). The top ventilation assembly (15) is located at the top of the main body of the machine room (4), the side air intake assembly (16) is embedded in the lower part of the wall panel, and the internal air guide (17) is arranged along the gaps between the compartments. The quick-connect component (18) includes a water and electricity interface module (19) and a cabin connection latch (20). The water and electricity interface module (19) is located on the outside of the main body (4) of the machine room, and the cabin connection latch (20) is used to fix the modular cabin (8) after it is pulled out.

2. The skid-mounted integrated computer room according to claim 1, characterized in that, The reinforcing frame of the skid base (1) is made of H-beams and channel steel welded together. Anti-slip skid parts (2) are welded to the bottom of the frame. The skid parts (2) are in the shape of an inverted "U" and have anti-slip teeth (21) on the inside. The leveling legs (3) are spiral structures and are evenly distributed at the four corners of the frame. Wear-resistant pads (22) are provided at the bottom of the legs (3).

3. The skid-mounted integrated computer room according to claim 2, characterized in that, The detachable wall panel of the main body (4) of the computer room adopts a color steel plate sandwiched with an insulation layer structure. The edge of the wall panel is provided with a tongue and groove. The sealing connector (7) is a rubber sealing strip and a stainless steel buckle. The buckle passes through the tongue and groove to fix the wall panel. The inner side of the wall panel is pasted with sound-absorbing cotton (23).

4. The skid-mounted integrated computer room according to claim 3, characterized in that, The modular cabin (8) has a layered equipment rack (24) inside the equipment compartment (9). The equipment rack (24) is slidably connected to the bottom of the cabin via a slide rail (12). A fireproof partition is provided between the power distribution compartment (10) and the energy storage compartment (11). Ventilation holes (25) are opened on the partition, and fire dampers (26) are installed in the holes.

5. The skid-mounted integrated computer room according to claim 4, characterized in that, The top ventilation component (15) of the integrated heat dissipation system (14) includes an axial flow fan (27) and rainproof louvers (28). The axial flow fan (27) is fixed to the top of the main body (4) of the machine room by a bracket. The rainproof louvers (28) cover the outside of the fan. The side air intake component (16) includes a dust filter (29) and adjustable louvers (30). The filter (29) is made of activated carbon composite filter material. The internal air guide (17) is a PVC air guide channel, which is arranged along the gap between the top and side of the cabin. An air outlet (31) is opened on the surface of the air guide channel.

6. The skid-mounted integrated computer room according to claim 5, characterized in that, The water and electricity interface module (19) of the quick connection component (18) includes a cable waterproof connector, a water pipe quick connector and a grounding terminal. Each interface is equipped with a dust cover (32). The cabin connection latch (20) includes a lock seat fixed to the skid base (1) and a lock tongue on the side of the cabin. The lock tongue and the lock seat are locked by a spring buckle (33).

7. The skid-mounted integrated computer room according to claim 6, characterized in that, The top rainproof canopy (5) of the main body of the computer room (4) adopts a sloping structure. The canopy is covered with an anti-ultraviolet coating. A water guide channel (34) is provided at the edge of the canopy. The end of the water guide channel (34) is connected to a drain pipe (35). The drain pipe (35) extends along the outside of the main body of the computer room (4) to the edge of the skid-mounted base (1).

8. The skid-mounted integrated computer room according to claim 7, characterized in that, The layered equipment rack (24) of the equipment compartment (9) is equipped with a cable management rack (36) on each layer. The cable management rack (36) has a grid structure and is used to organize the equipment connection cables.