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568 kW Dry Cooler Shipped to Ecuador for Data Center Cooling

Date:2026-08-28

Project Overview

A 568 kW Dry Cooler from SHENGLIN has been shipped to Ecuador for application in a data center cooling system. Designed for water-based heat rejection, the unit provides an efficient solution for transferring heat from the cooling loop to the outdoor environment without direct contact between the cooling water and ambient air.

 

Project Information

Country: Ecuador
Application: Data Center Cooling System
Product: Dry Cooler
Cooling Capacity: 568 kW
Cooling Medium: Water
Power Supply: 400V / 3Ph / 50Hz
Tube Material: Copper
Fin Material: Aluminum with Epoxy Resin Anti-Corrosion Coating
Casing Material: Stainless Steel Sheet Metal

 

 

Project Features

With a cooling capacity of 568 kW, the Dry Cooler is designed to handle a substantial heat rejection requirement for data center cooling applications. Water is used as the cooling medium, allowing the unit to work as part of a closed-loop cooling system and transfer the accumulated heat to the outdoor environment.

The heat exchanger uses copper tubes and aluminum fins, providing an effective heat-transfer structure. To enhance durability, the aluminum fins are treated with an epoxy resin anti-corrosion coating, while stainless steel sheet metal is used for the external casing. The material configuration is designed to provide additional protection against environmental exposure and support long-term operation.

The unit operates with a 400V / 3Ph / 50Hz power supply, matching the electrical requirements of the project. Combined with its high-capacity heat rejection performance, the Dry Cooler provides a practical air-cooled heat rejection option for data center cooling systems where dependable thermal management is required.

 

Project Significance

The shipment to Ecuador represents SHENGLIN’s continued application of Dry Cooler technology in international data center cooling projects. By using ambient air to reject heat from the water circuit, the solution can reduce dependence on water consumption during the heat rejection process compared with systems that continuously consume cooling water.

 

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