ULOC Cooling system

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The ULOC cooling system with three-phase AC motor is optimized for use in the industrial sector. The system is supplied ready for installation. An integrated circulation pump makes it possible to cool and treat the oil in a separate circuit – offline cooling. Together with a wide range of accessories, the ULOC cooling system is suitable for installation in most applications and environments. Choosing the right cooler requires precise system sizing. The most reliable way to size a cooler is with the aid of our calculation program. This program, together with precise evaluations from our experienced, skilled engineers, gives you the opportunity for more cooling per $ invested.
Manufacturer: Oiltech Olaer Group
Description

The ULOC cooling system with three-phase AC motor is optimized for use in the industrial sector. The system is supplied ready for installation. An integrated circulation pump makes it possible to cool and treat the oil in a separate circuit – offline cooling. Together with a wide range of accessories, the ULOC cooling system is suitable for installation in most applications and environments. Choosing the right cooler requires precise system sizing. The most reliable way to size a cooler is with the aid of our calculation program. This program, together with precise evaluations from our experienced, skilled engineers, gives you the opportunity for more cooling per $ invested.

Temperature optimization - a basic prerequisite

for cost-efficient operation

Temperature balance in a hydraulic system occurs when

the cooler can cool down the energy input that the

system does not consume - the system’s lost energy

(Ploss = Pcool = Pin – Pused).

Temperature optimization occurs at the temperature at

which the oil viscosity is maintained at recommended

values. The correct working temperature produces a

number of economic and environmental benefits:

• Extended hydraulic system life.

• Extended oil life.

• Increased hydraulic system availability - more

operating time and fewer shutdowns.

• Reduced service and repair costs.

• Maintained high efficiency in continuous

operation – the system efficiency falls if the

temperature exceeds the ideal working

temperature.

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