TA610/915C Terowongan Aerodinamis, 610X915 mm, Dikendalikan dari Komputer (PC)

COMPUTER CONTROLLED AERODYNAMIC TUNNEL, 610 X 915 MM - TA610/915C

Unit: TA610/915C. Computer Controlled Aerodynamic Tunnel, 610 x 915 mm

COMPUTER CONTROLLED AERODYNAMIC TUNNEL, 610 X 915 MM - TA610/915C

TA610/915C/CIB. Control Interface Box: The Control Interface Box is part of the SCADA system

COMPUTER CONTROLLED AERODYNAMIC TUNNEL, 610 X 915 MM - TA610/915C

Process diagram and unit elements allocation

COMPUTER CONTROLLED AERODYNAMIC TUNNEL, 610 X 915 MM - TA610/915C
COMPUTER CONTROLLED AERODYNAMIC TUNNEL, 610 X 915 MM - TA610/915C
COMPUTER CONTROLLED AERODYNAMIC TUNNEL, 610 X 915 MM - TA610/915C

SISTEM INOVATIF

The Computer Controlled Aerodynamic Tunnel, 610 x 915 mm, "TA610/915C", is a wind tunnel designed to study subsonic aerodynamics in a tunnel in open circuit and with incompressible subsonic flow.

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Aerodynamics is the part of fluid mechanics that studies the motion of gases and the forces or reactions to which the bodies they interact with are subjected. Aerodynamics is not only important by itself but also as a complement to aeronautics. According to Mach number, or relative speed of a movable object with respect to air, these studies are divided into subsonic and supersonic aerodynamics, depending on whether that number is higher or lower than one.

Knowing the aerodynamics principles is useful for many activities, from the take-off and piloting of an airplane to driving a car or kicking a ball. Every time we move or throw an object, there are many physical principles acting, but we do not notice them.

Aerodynamic test tunnels are widely used to determine the actions of the wind on different types of bodies. The model under study remains motionless, whereas the flow medium is set in motion to generate the desired flow.

The Computer Controlled Aerodynamic Tunnel, 610 x 915 mm, "TA610/915C", is a wind tunnel designed to study subsonic aerodynamics in a tunnel in open circuit and with incompressible subsonic flow.

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