ОВК для дата-центров: полное руководство по охлаждающей инфраструктуре и управлению воздушными потоками (2026)
Техническое руководство по ОВК для дата-центров: архитектуры охлаждения, управление воздушными потоками, спецификации воздуховодов, изоляция горячих/холодных коридоров и закупка компонентов.
Data centers are the fastest-growing segment of commercial HVAC — driven by AI compute buildouts (xAI, Microsoft, Google, Amazon), cloud infrastructure expansion, and the global shift to edge computing. The global data center cooling market reached $18.8-26.7 billion in 2025 and is growing at 12-19% annually.
For HVAC contractors, mechanical engineers, and facility operators sourcing components for data center projects, this guide covers the cooling architectures, airflow design principles, and specific HVAC components you need — along with specifications that distinguish data center-grade from standard commercial HVAC.
Data Center Cooling Architectures
Modern data centers use one or a combination of three cooling approaches. The choice depends on rack density, facility size, and capital/operating cost targets.
1. Raised Floor with Underfloor Plenum Supply
The traditional approach for enterprise and colocation facilities. CRAH/CRAC units push conditioned air into the pressurized space beneath the raised floor. Air rises through perforated floor tiles and grilles positioned in the cold aisle between server rack fronts. Hot exhaust from server backends rises to the ceiling and returns to cooling units via overhead return plenums or the open ceiling plenum.
Key HVAC components: perforated floor grilles, adjustable airflow tiles, underfloor supply air plenums, motorized dampers for zone control, and cable tray blanking panels to manage underfloor airflow.
2. Overhead Ducted Supply
Used in facilities without raised floors — increasingly common in hyperscale and GPU-dense environments where the floor area is maximized for rack space. Conditioned air is distributed via overhead spiral ductwork with supply diffusers directed down into cold aisles. Return air is captured through ceiling return plenums or dedicated return duct runs.
This architecture requires more ductwork but offers better scalability and avoids the structural cost of raised flooring. It is the dominant approach in new hyperscale construction.
3. In-Row / Close-Coupled Cooling
Cooling units are placed directly in the server row, between racks. Air travels only a few feet from the cooling unit to the server inlet, minimizing mixing losses. In-row cooling is often combined with hot aisle containment — the enclosed hot aisle channels exhaust directly into the rear of the in-row cooling unit.
HVAC components: non-return dampers to prevent bypass airflow, return air grilles, and custom sheet metal transitions connecting in-row units to the containment system.
Hot Aisle / Cold Aisle Containment
Aisle containment is the single most impactful airflow management strategy in data centers. By physically separating hot and cold air streams, containment reduces cooling energy consumption by 20-40% and allows higher rack densities without hot spots.
The HVAC components that make containment work:
- Ceiling return plenums: Custom fabricated in galvanized steel to capture hot exhaust air from the contained aisle and route it directly back to cooling units. Our plenum boxes are manufactured to precise dimensions from your CAD drawings.
- End-of-row panels: Sheet metal or transparent panels that seal the ends of contained aisles. Must include self-closing doors for personnel access.
- Motorized dampers: Our 24V and 240V motorized dampers integrate with BMS systems to dynamically adjust airflow based on server load. Opposed-blade dampers (OBD) provide fine-grained volume control.
- Blanking panels: Fill empty rack positions to prevent hot air recirculation. A single open rack unit (1U) in a high-density row can raise inlet temperatures by 2-5°C.
Ductwork Specifications for Data Centers
Data center ductwork must meet tighter specifications than standard commercial HVAC:
| Parameter | Commercial HVAC | Data Center Grade |
|---|---|---|
| Air leakage class | SMACNA Class 1-2 | SMACNA Class 3+ (sealed) |
| Pressure class | 1-2" WG | 2-4" WG |
| Material | Galvanized steel | Galvanized steel, low-particulate |
| Insulation | R-4 to R-6 | R-6 to R-8 (condensation prevention) |
| Fire rating | UL 181 Class 1 | UL 181 Class 1 (mandatory) |
| Tolerance | ±6mm standard | ±3mm for containment fit |
Our spiral duct and metal fittings are manufactured to data center tolerances. Spiral duct inherently provides lower air leakage than rectangular duct due to its continuous seam — making it the preferred choice for data center applications.
Ventilation for Support Spaces
Beyond the data hall, data centers have critical support spaces that require dedicated HVAC:
- Generator rooms: Diesel backup generators produce extreme heat and exhaust gases. Require high-temperature exhaust ducting, large-volume fresh air intake through weather-proof louvers, and motorized dampers that open automatically on generator start.
- UPS / battery rooms: Hydrogen gas venting (for lead-acid batteries) or thermal management (for lithium-ion). Require continuous ventilation with inline exhaust fans and gas detection-linked damper controls.
- Electrical switchgear rooms: Heat dissipation from transformers and switchgear. Standard ventilation with filtered intake and exhaust louvers.
Why Source Data Center HVAC from Airwise
Airwise (Dongyang Hstube Co., Ltd) brings three capabilities that matter for data center construction:
UL Listed manufacturer — one of only three Chinese HVAC component manufacturers with UL Listing. This is a non-negotiable requirement for US data center construction and insurance compliance.
Dual manufacturing in China and Houston, TX — our 4,300 sqm Houston facility provides local fabrication for North American projects with 1-2 week turnaround. No tariff exposure on US-fabricated components. Our 5,000 sqm China facility handles volume production at competitive pricing.
25+ years of HVAC manufacturing experience across 60+ countries. We understand the quality, documentation, and timeline requirements that data center projects demand.
Explore our Data Center HVAC Solutions page for a complete overview of our data center capabilities, or request a quote for your project.