Characteristic variables of a radial fan_1920364
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GUNT Radial Fan Trainer, Characteristic Variables Study, Variable Speed, Flow Rate, Pressure, Digital Display

The GUNT Radial Fan Trainer explores the characteristic variables essential for designing ventilation, cooling, drying, and pneumatic transport systems. It investigates the relationship between fan speed, flow rate, and pressure head to optimize system performance.

Product Features

  • Studies the interdependencies between fan head, flow rate, and fan speed
  • Radial fan aspirates air axially and accelerates it outward through a high-speed rotor
  • Spiral housing converts rotor velocity into pressure energy efficiently
  • Vertical pipe section equipped with Venturi nozzle and throttle valve to measure and adjust flow rate
  • Optional iris diaphragm allows variable cross-section adjustment and flow measurement
  • Liquid column manometers (U-tube, single tube, inclined tube) for measuring effective pressures and fan head
  • Frequency converter adjusts fan speed digitally for precise control
  • Digital display shows fan speed, torque, and electric power capacity for energy analysis
  • System characteristic curve determined by measuring variables at constant throttle setting with variable speed
  • Enables investigation of fan-system interaction at operation points for system dimensioning

Benefits

  • Provides detailed insight into radial fan performance under varying conditions
  • Facilitates energy efficiency analysis through digital measurement of torque and power
  • Supports optimization of ventilation and pneumatic transport system design
  • Accurate measurement tools enable precise system characterization
  • Frequency converter allows smooth and flexible fan speed adjustment

Why Choose the GUNT Radial Fan Trainer?

The GUNT Radial Fan Trainer is an ideal educational and research tool for understanding the characteristic variables of radial fans. Its comprehensive measurement capabilities and precise speed control help optimize fan and system performance for real-world ventilation and pneumatic applications.

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