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Heat Exchange Solutions for Cooling and Heat Dissipation in Data Centers and Communication Base Stations (Indirect Evaporative Cooling / Cabinet Heat Exchangers)

Jul 28, 2026 120 views ~11 min read Application Knowledge
Heat exchange applications for cooling and heat dissipation in data centers, communication base stations, charging piles, and AI control cabinets: indirect evaporative cooling systems, in-cabinet internal circulation heat exchange, ERB counter-flow cores, IPX waterproof radiators—with scheme selection.
Heat Exchange Solutions for Cooling and Heat Dissipation in Data Centers and Communication Base Stations (Indirect Evaporative Cooling / Cabinet Heat Exchangers)

The Imperative of Heat Exchange in the Era of High-Density Computing

With the explosion of AI, big data, 5G, and new-energy power stations, the heat dissipation density of data centers, communication base stations, charging piles, and converter cabinets has risen sharply. Traditional direct ventilation easily draws in dust and moisture, whereas a sealed internal-circulation air-to-air heat exchanger that transfers heat without exchanging air efficiently removes heat while isolating external contamination, making it the mainstream cooling solution for server rooms and outdoor cabinets.

I. Data Center Indirect Evaporative Cooling

  • Air-cooled cooling heat exchangers for data center plate heat exchanger indirect evaporative cooling systems;
  • Air-to-air heat exchanger cores for data center indirect evaporative cooling and temperature-reduction systems;
  • Sensible heat exchange cores for IEC indirect evaporative cooling units, data center IPX zero-leakage heat exchangers.

II. In-Cabinet and Base Station Internal-Circulation Cooling

  • Air-to-air heat exchange devices, heat recovery exchangers for cooling computer and data processing rooms;
  • Counter-flow plate heat exchanger cores for dehumidification and cooling of telecom outdoor cabinets;
  • Rectangular L-L counter-flow radiators with hydrophilic aluminum foil, customizable air-to-air heat exchangers for cabinets;
  • Plate heat exchangers with hydrophilic aluminum foil heat exchange cores for internal-circulation auxiliary cooling of communication base stations.

III. New Energy and Charging Pile Cooling

  • Hydrophilic aluminum foil heat exchange cores for PV inverter cooling, centralized PV base station energy-saving equipment for solar power generation;
  • Customizable-size flow-direction radiators for charging pile base station cooling;
  • Factory-direct ERB counter-flow heat exchange cores in multiple flow-direction configurations, customizable cabinet radiators;
  • Customizable stainless steel heat exchange cores for offshore wind farm cabinet cooling and energy recovery.

IV. Key Parameters and Selection

ScenarioFlow ConfigurationProtection
Server room indirect evaporationCross-flow / counter-flowIPX waterproof
Outdoor cabinetL-L counter-flowSalt-mist-resistant epoxy aluminum foil
Offshore windCustom rectangularCorrosion-resistant, high-temp, withstands tens of kPa
Charging pileERB counter-flowCustomizable size and flow direction

Need a customized cooling heat exchange solution for a server room or cabinet? Use our online selection calculator, or contact us for a free assessment.

Keywords: data center cooling indirect evaporative cooling cabinet heat exchanger communication base station cooling charging pile heat sink ERB counter-flow core AI control cabinet cooling IPX waterproof heat exchanger
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