Liebert Indirect Evaporative Free Cooling Unit
The Liebert Indirect Evaporative Free Cooling Unit improves energy efficiency with potential PUEs under 1.2 with minimal water usage. It includes supplemental DX (direct expansion) or chilled water options for trim cooling requirements.
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- Banking, Financial and Insurance
- Data Center/Colocation/Hosting
- Education
- Government
- Healthcare
- Retail and Wholesale
Liebert Indirect Evaporative Free Cooling Unit
The Liebert Indirect Evaporative Free Cooling Unit improves energy efficiency with potential PUEs under 1.2 with minimal water usage. It includes supplemental DX (direct expansion) or chilled water options for trim cooling requirements.
- Banking, Financial and Insurance
- Data Center/Colocation/Hosting
- Education
- Government
- Healthcare
- Retail and Wholesale
Преимущества
Особенности
Характеристики
The Liebert ® Indirect Evaporative Freecooling Unit achieves higher effi ciency through economization without the risks of bringing outside air into the data center. During the majority of annual operating hours cooling of data center air is done by transferring heat to the scavenger air stream while passing through a coated aluminum heat exchanger. As ambient conditions increase to temperatures above ~60°F dry bulb the unit cools the scavenger air through use of the evaporative cooling effect of water to provide increased cooling capacity without the use of compressors. During exceptionally hot ambient conditions the supplemental trim cooling system will engage to provide additional cooling capacity. Liebert ® Indirect Evaporative Freecooling Unit What’s Cool in the Data Center Thermal Management Innovations This unit offers several signifi cant advantages for large data center designs. The evaporative cooling offers a significantly lower peak power consumption compared to other large thermal management system. The exceptional dry mode effectiveness of the epoxy-coated aluminum heat exchanger reduces water usage and allows flexibility in operating modes to prioritize reduced water consumption, reduced power consumption, or a combination of both.