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数据中心的供电、制冷及模块化数据中心解决方案

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微型模块化数据中心

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  • HI2000 微型模块化数据中心
    • HI2000 操作指南:实用维护与安全检查表
    • HI2000 微模块数据中心:系统概述与核心组件
    • HI2000 微模块数据中心:系统概述与核心组件
    • HI2000 微型模块化数据中心:组件与配置实用指南
    • HI2000 微模块数据中心:系统概述与核心组件
    • HI 2000 系列紧凑型模块化数据中心:简介与概述
    • HI 2000 系列微型模块化数据中心:产品特点
    • 用例与配置
      • HI2000 应用案例:为边缘站点、实验室和远程设施配置模块化供电和制冷系统
      • HI2000 应用案例:为边缘、实验室和远程站点配置模块化供电和散热方案
      • HI2000 应用案例:为边缘站点、实验室和远程设施配置精准制冷
      • HI2000 微型模块数据中心:典型应用场景
      • HI2000 微型模块化数据中心:典型配置
      • 结构配置方案
        • HI2000 结构配置:机柜布局与组件放置指南
        • How to Plan the HI2000 Structural Configuration for a Micro Module Deployment
        • HI2000 结构配置:机柜布局与组件布置
        • HI2000 微型模块化数据中心:结构配置图
        • HI2000 双排 1200 毫米宽密封通道微型模块化数据中心
        • HI2000 单排 1200 毫米宽密封通道微型模块化数据中心
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  • How to Plan the HI2000 Structural Configuration for a Micro Module Deployment

How to Plan the HI2000 Structural Configuration for a Micro Module Deployment

阅读时间 7 分钟

You've got a 20 kW IT load going into a small server room, and the vendor asks for the HI2000 structural configuration before they ship. The question is not which cabinet looks neat—it's where the cooling coil, the UPS, and the battery string sit relative to the hot aisle. Get that wrong and you'll fight hot spots for years.

What the HI2000 Structural Configuration Actually Controls #

The HI2000 is a self-contained micro module: racks, precision air conditioner, power distribution, and monitoring in one enclosure. The structural configuration defines the physical arrangement of those parts—how many IT racks, where the cooling unit mounts, and how cable trays and busbars route. It's not just a drawing; it sets the module's cooling capacity, redundancy options, and service access.

For a typical 15–30 kW deployment, you'll choose between a single-row layout with cooling at one end, or a more compact arrangement with cooling integrated between racks. The first is easier to service, the second saves floor space. Neither is universally better—it depends on your load density and how often you expect to touch the hardware.

Single-row HI2000 module with cooling unit at the end

Cabinet Layout Choices: Single Row vs. Dual Row #

Most HI2000 deployments use a single row of IT racks with the cooling unit positioned at one end. That works well up to about 25 kW because the airflow path stays short. Push beyond that and you'll want a dual-row layout with a hot aisle contained between the racks—cooling returns air from the hot aisle directly, which keeps supply temperatures stable.

LayoutIT CapacityCooling Path最适合
Single row, cooling at end10–25 kWAir blows across the row, returns at the far endSmall server rooms, edge sites
Dual row with hot aisle containment25–60 kWHot air captured and returned directly to coolingHigher density, better PUE
Integrated cooling between racks15–40 kWShort internal path, less floor spaceTight spaces, retrofit projects

The short answer is: don't pick a layout just because it fits the room. Model the airflow first. A 30 kW load in a single-row layout might work if the room has a raised floor, but it'll struggle with ceiling return. In practice, most buyers under 25 kW go single-row, and above that they move to dual-row containment.

Component Placement: Where the UPS and Batteries Go #

The HI2000 typically integrates a UPS and battery string inside the module. Where you place them matters for weight distribution and heat. Batteries are heavy—a 20 kVA UPS with a 10-minute runtime can add several hundred kilograms. Put them at the bottom of the rack, not on top, to keep the center of gravity low and avoid tipping during seismic events.

Also, think about ventilation. Batteries (especially VRLA) emit hydrogen during charging, though in small quantities. The HI2000's structural configuration should include passive vents or a small fan to prevent gas buildup. If you're using lithium-ion, the thermal management is different—they prefer cooler temps, so keep them away from the hot aisle and direct cooling airflow over the battery compartment.

UPS and battery cabinet placement inside HI2000 module

Cooling Paths and Airflow Management #

How to Plan the HI2000 Structural Configuration for a Micro Module Deployment: data center infrastructure

Precision air conditioners in the HI2000 are usually downflow or horizontal flow, depending on the model. Downflow units sit under a raised floor, which works if you have one. But many micro modules go on a concrete slab—then you need a horizontal-flow unit that discharges air across the front of the racks.

Whichever type you choose, the structural configuration must keep supply and return air separate. Without separation, hot air recirculates and you get mixed temperatures. For a 20 kW rack, you're looking at roughly 3,400 BTU/min of heat to remove. That's not trivial. You need a cooling unit rated at least 1.2 times the IT load to account for fan heat and inefficiencies.

Cable Routing and Service Access #

How to Plan the HI2000 Structural Configuration for a Micro Module Deployment: system design detail

Nobody thinks about cables until they're tripping over them. In the HI2000, plan for overhead cable trays or integrated busbars. Power cables should run separately from data cables to avoid interference. Also, leave enough space at the rear of the racks for power and network connections—at least 600 mm of clearance, though 800 mm is more comfortable for maintenance.

Service access is another thing buyers overlook. If the cooling unit sits flush against a wall, you can't pull the compressor for replacement. The structural configuration should include removable panels or enough clearance on the service side. Check the manufacturer's recommended clearances before you finalize the layout.

Cable tray routing above HI2000 micro module racks

Practical Checklist for Your HI2000 Structural Configuration #

How to Plan the HI2000 Structural Configuration for a Micro Module Deployment: deployment and maintenance
  1. Calculate total IT load in kW and kVA, including redundancy.
  2. Decide on single-row or dual-row layout based on load density and floor space.
  3. Position the cooling unit to avoid hot spots and ensure short airflow paths.
  4. Place UPS and batteries at the bottom of the rack, with proper ventilation.
  5. Plan cable routing for power and data separately, with adequate service clearance.
  6. Verify floor loading capacity, especially with battery weight.
  7. Confirm cooling capacity is at least 1.2x the IT load.
  8. Check service access on all sides—don't block the compressor or fans.

Why the HI2000 Structural Configuration Matters for PUE #

A well-planned structural configuration can shave 0.1–0.2 off your PUE. That's not huge, but over a year it adds up. For a 30 kW load running 24/7, a 0.1 PUE improvement saves roughly 26,000 kWh annually—enough to power two or three homes. The trick is to avoid overcooling. With proper airflow management, you can run supply air at 22–24°C instead of 18°C, which cuts compressor energy significantly.

How to Plan the HI2000 Structural Configuration for a Micro Module Deployment: data center infrastructure view

In practice, the HI2000's structural configuration gives you the flexibility to optimize for your specific climate and load. If you're in a cool region, you might even use free cooling. But that only works if the layout allows the air to flow where you want it. So spend the time upfront—it pays off in lower operating costs.

安全与合规注意事项 #

Don't forget local codes. The structural configuration must comply with fire safety regulations, especially regarding battery storage. Some jurisdictions require smoke detectors and fire suppression inside the module. Also, ensure the floor can handle the weight—a fully loaded HI2000 with batteries can exceed 1,500 kg per rack. Check with a structural engineer if you're installing on an upper floor.

Finally, verify that the module's electrical ratings match your utility supply. The HI2000 typically accepts 208V or 400V input, but you'll need to confirm the exact model. Specifications can change, so always double-check with VERHI or your local distributor before ordering.

常见问题解答 #

What is the typical power range for an HI2000 micro module?

The HI2000 is designed for small to medium IT loads, typically from 10 kW up to around 60 kW depending on the configuration. The structural configuration you choose—single row, dual row, or integrated cooling—directly affects the maximum power density you can support.

How do I decide between single-row and dual-row layout?

For loads under 25 kW, a single-row layout with cooling at the end is usually sufficient and easier to service. Above that, a dual-row layout with hot aisle containment is better because it prevents hot air recirculation and keeps supply temperatures stable.

Can I place the UPS and batteries outside the HI2000 module?

Yes, the HI2000 can be configured with external UPS or battery cabinets if you need more runtime or want to isolate heat sources. However, this increases the footprint and may require additional cabling. It's a trade-off between space and serviceability.

What clearance do I need around the HI2000 for maintenance?

At least 600 mm at the rear for cable connections, and 800 mm on the service side of the cooling unit. Check the specific model's manual, as clearances can vary. Always confirm with VERHI before finalizing your room layout.

Need help planning your HI2000 structural configuration? Talk to VERHI's engineers to get a layout that fits your load and space.

联系 VERHI
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VERHI 编辑团队
精密制冷、UPS 和数据中心基础设施内容团队
由 VERHI 技术编辑评审组于 2026 年 9 月 9 日审阅

Based on VERHI's engineering experience with micro module deployments and standard data center cooling practices.

信息可能会有变动。在做出决定之前,请向官方服务提供商或您的技术顾问核实与时间相关的细节。
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更新 2026年9月9日
HI2000 Structural Configuration 未幻科技

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目录
  • What the HI2000 Structural Configuration Actually Controls
  • Cabinet Layout Choices: Single Row vs. Dual Row
  • Component Placement: Where the UPS and Batteries Go
  • Cooling Paths and Airflow Management
  • Cable Routing and Service Access
  • Practical Checklist for Your HI2000 Structural Configuration
  • Why the HI2000 Structural Configuration Matters for PUE
  • 安全与合规注意事项
  • 常见问题解答

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