Adiabatic Industrial Evaporative Air Cooler Evaporative Air Cooling System Adiabatic Evaporative Cooler for Industrial Buildings

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Shandong Casen Heat Transfer Technology Co., Ltd.

VIP   Audited Supplier 6 years
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Adiabatic air cooler
Air-Cooled
Industrial Water
Closed System
Frequency Fan
Low
Machinery
ISO, CE, SGS
New
Galvanized or Stainless Steel
Low Noise
Galvanized or Stainless Steel
Water Saving
Efficient Cooling
Gas or Liquid
CASEN
Container
100 ton
China
84198990
Product Description

Adiabatic Operating Principle: Wet or Dry Operation


Efficient FACS adiabatic condensers with hydroBLU™ Technology can be operated either wet or dry. Both modes provide excellent performance with a small footprint and low operating costs.
 
The cooling limit (the theoretically best possible condensing temperature/pressure for the system) is tied to the wet bulb the temperature of the ambient air.

Thermal Efficiency

Increased Thermal Performance, Lowers Total Cost of Ownership At peak ambient temperatures, the air entering the finned heat the exchanger is pre-cooled by wetted cooling pads to a temperature approaching the wet-bulb temperature, without the aerosol formation and without applying water to the finned surface.
The pre-cooling process maintains the required condensing temperatures at peak ambient conditions. The adiabatic process significantly increases the thermal efficiency of the condenser with minimal water usage.
The increased thermal performance at peak ambient conditions lowers the total cost of ownership. The reduction in compressor energy usage permits higher COP's, with a significantly reduced footprint.
Evaporative condensers use water as the evaporative cooling source throughout the year. The adiabatic alternative only uses water at peak ambient conditions thereby significantly reducing or eliminating water usage, water treatment, chemicals, sewage, and the costs associated with each.


Different between Evaporative vs. Adiabatic Analysis



Technical Data

CASEN Adiabatic Air Cooler 

Intelligent Control of Fan Speed and Wetting
1) Water conserved by the volume control 
2) Very low energy consumption using Electronically Commutated (EC) motors/fans
3) Very low water consumption with a high dry operation switching

Optimal Adiabatic Cooling Delivery System
1)Maximum adiabatic efficiency
2)Plume-free
3)No water circulation
4)System checked for aerosol output
5)Automatic draining
6)Dry cooling coil
7)No spraying
8)No water treatment required in most cases

Multifunctional Use of Humidification Pads
1) Easily removable for additional dry operation capacity
2)Reliable adiabatic-cooling delivery system
3)Protects coil from dirt and debris

Integrated, Intelligent Control
1)Wired ready to use
2)EC motors with a built-in fan speed controller
3)Motor Management step controller for fan cycling

Installation
1)Easily rigged by crane thanks to easily accessible lifting lugs
2)Quick and easy installation
3)Optimal distribution of forces
4)Rigid structure, resistant to deflection

Project Cases And Workshop

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