Portfolio Category: [:nl]Verdringing industrie[:en]Displacement industrial sector

Swivel displacement outlet VA-S

Low-turbulence displacement flow Placement above the occupied zone, in front of walls or galleries Discharge height 3 to 5 m Discharge direction adjustable from +10° to -35° to horizontal, manually or with servomotor Placement at side of main supply air duct, singly or several in a row Downloads E1.5.4_VA-S_Swivel displacement outlet D1.5.4_VA-S_Schwenkbarer …

Radial displacement outlet VA-PV

Low-turbulence displacement flow Placement above the occupied zone at a height of 4 to 10 m, freely suspended Jet direction more or less spread, vertical downflow When heating, higher jet momentum downwards by opening of core tube Well suited for cooling and heating Adjustment via thermostatic control unit; advantages: no wiring, no auxiliary energy …

Conical displacement outlet VA-K

Low-turbulence displacement flow Placement at a height of 10 to 30 m Umbrella-shaped, radial supply air downflow When heating, greater penetration depth of warm supply air by opening the centrical core tube and the rotating ring slot Well suited for cooling and heating Adjustment with built-in servomotor Connection from above Downloads E1.5.6_VA-K_Conical …

Laminar outlet VA-L

Placement above workplace to be protected Vertical supply air flow with extremely low turbulence Stable jet pattern at discharge velocities as low as 0.15 m/s Effective and economical protection of individual workplaces against pollutants Optional lateral shields to protect against cross convections Connection from above or at a side Downloads E1.5.7_VA-L_Laminar …

Displacement ventilation for indoor firing ranges VA-RSA

​Air distribution wall placed behind the shooter Horizontal displacement flow with a mean indoor air velocity of 0.25 to 0.30 m/s over the range cross section Each cassette panel is fitted with an adjustable slot diffuser designed to stabilize the displacement flow Dimensions depend on range geometry – customized solutions to ensure air flow over …