Dry and adiabatic cooling products

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Principle of operation Configuration counterflow Air entry axial fan induced draft TSDC condenser Capacity www.BaltimoreAircoil.co.za 109 - 371 kW Maximum entering fluid temperature 116,7°C Dry and adiabatic cooling products Operational safety (hygiene) Low sound Energy efficiency Easy maintenance Water saving Best G A counterflow axial fan induced draft TVFC cooler 250 - 2000 kW 60°C Tab v04 EN-SA © 2022 Baltimore Aircoil International nv More than 15 years of experience in Adiabatic Cooling C A A D B A A B E D

Transcript of Dry and adiabatic cooling products

Page 1: Dry and adiabatic cooling products

Principle ofoperation

Configuration counterflow

Air entry

axial fan induced draft

TSDC condenser

Capacity

www.BaltimoreAircoil.co.za

109 - 371 kW

Maximum entering fluid temperature

116,7°C

Dry and adiabatic cooling products

Operational safety (hygiene)

Low sound

Energy efficiency

Easy maintenance

Water saving

BestG A

counterflow

axial fan induced draft

TVFC cooler

250 - 2000 kW

60°C

Tab v04 EN-SA © 2022 Baltimore Aircoil International nv

More than 15 years of experience in Adiabatic Cooling

C

A

A

D

B

A

A

B

E

D

Page 2: Dry and adiabatic cooling products

Adiabatic cooling productsAd

iaba

tic co

olin

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oduc

ts

Tab_DAC_ENv04

More than 15 years of experience in Adiabatic Cooling

Baltimore Aircoil Company is producing and successfully installing adiabatic cooling products since 2005.Adiabatic products are NOT JUST air-cooled products, with an adiabatic pre-cooler in front.

Instead a properly designed, highly efficient adiabatic unit is the result of extensive testing, close coorporation with customers and multiple design improvements.

In Europe only, already more than 1500 successfully installed adiabatic installations:

Adiabatic products Adiabatic products are air-cooled coolers or condensers with adiabatic pre-coolers. Before the fan draws the ambient air through the finned coil, the air is pre-cooled adiabatically when traversing an humidification pad. This evaporates the water in the air, thus boosting the cooling capacity.

Key benefits• low process temperatures• saves more than 80% on annual water compared to cooling towers• up to 40% increased capacity compared to dry cooling (air temperatures approaching wet bulb

temperature)• reduced energy consumption• operational safety: no water recirculation, no stagnant water, no aerosol generation,

no water carry-over

INTERCLIMA Innovation Award 2006

WINNER