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Adsorption with heat compressed air dryer WVM series
two-stageexternally heated

Adsorption with heat compressed air dryer - WVM series - Parker Hannifin France SAS - two-stage / externally heated
Adsorption with heat compressed air dryer - WVM series - Parker Hannifin France SAS - two-stage / externally heated
Adsorption with heat compressed air dryer - WVM series - Parker Hannifin France SAS - two-stage / externally heated - image - 2
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Characteristics

Technology
by adsorption with heat
Number of stages
two-stage
Other characteristics
externally heated
Capacity

Min.: 450 m³/h
(15,891.6 ft³/h)

Max.: 7,300 m³/h
(257,797.07 ft³/h)

Working pressure

Min.: 4 bar
(58.02 psi)

Max.: 11 bar
(159.54 psi)

Operating temperature

Min.: 5 °C
(41 °F)

Max.: 40 °C
(104 °F)

Ambient temperature

40 °C
(104 °F)

Dew point

-70 °C, -40 °C, -20 °C
(-94 °F, -40 °F, -4 °F)

Description

Low energy large flow industrial compressed air dryers providing flow rates up to 7300m³/h @ 7 barg with a dew point of -40°C (-20°C and -70°C options). Energy savings of up to 25%. Parker Generation 5 WVM compressed air dryers provide an energy efficient heat regenerated compressed air drying solution for large scale compressed air applications. Ideal for electronics and automotive production plants but suitable for all general manufacturing industries where typically high volume flows and low pressure dewpoints are required. Providing energy savings of up to 25% compared to conventional systems, WVM series compressed air dryers can be equipped with heat exchangers that allow steam or other available process heat sources to be used for heat regeneration. This alternative regeneration process can be employed in addition to or instead of the standard electrical heaters, resulting in even higher energy savings. Features: • Constant outlet dewpoint in accordance with ISO8573-1 classes 1, 2 or 3 for water vapour & -25°C PDP • Full feature electronic control with dewpoint display and Energy Saving Technology fitted as standard • Large flow capacities • Active heating under vaccum • Various options for optimal adaptability to customer needs Benefits: • Low energy costs • No process air loss • Regeneration under vacuum further improves energy efficiency • Low regeneration temperature

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