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GUNT Air Flow Experimental Plant, Steady Incompressible Flow, Pressure Distribution, Velocity Profile, Extensive Accessories

The GUNT Air Flow Experimental Plant offers comprehensive experiments in steady, incompressible airflow analysis, essential for understanding pressure distribution and velocity profiles relevant to turbomachine design.

Product Features

  • Investigates physical behavior of air flow in the incompressible range
  • External Pitot tube measures free jet velocities; inner Pitot tube analyzes airflow within the pipe section
  • Low-loss inlet and extended pipe section ensure optimal airflow formation
  • Optional nozzle and orifice plate allow detailed study of airflow variations
  • Iris diaphragm enables variable air flow diameter adjustment
  • Ability to examine pipe friction losses across various pipe fittings
  • Up to 20 pressure measuring points along the measuring section to determine pressure distribution
  • Tube manometers provide pressure readings for flow velocity and pressure distribution calculations
  • Optional Venturi tube accessory for verifying continuity equation and energy conservation in changing cross-sections
  • Optional boundary layer measurement accessory for velocity distribution and boundary layer thickness on flat surfaces

Benefits

  • Enables practical analysis of air flow parameters in incompressible flow conditions
  • Supports verification of fundamental fluid mechanics principles like continuity and energy conservation
  • Comprehensive accessory range allows diverse experiment setups and detailed measurements
  • Helps build foundational knowledge for turbomachinery and ventilation system design
  • High number of pressure points ensures precise pressure distribution mapping

Why Choose the GUNT Air Flow Experimental Plant?

The GUNT Air Flow Experimental Plant is a versatile, well-equipped solution for studying incompressible air flow in research and teaching environments. Its precision instrumentation and modular accessories enable a wide array of experiments, supporting fluid mechanics education and practical turbomachinery design.

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