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Laminar & Turbulent Flow Apparatus

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Laminar And Turbulent flow Apparatus MT-146223

Laminar flow :
The type of flow in which the particles move in a straight line in the form of a thin parallel sheets is known as the Laminar flow. Laminar flow denotes a steady condition where all stream lines follow parallel paths. Under this condition, the dye will remain easily identifiable as a solid core.
Turbulent flow :

The type of flow in which the particles move in a zigzag pattern is known as the turbulent flow. Turbulent flow denotes as unsteady condition where stream lines interact causing shear plan collapse and mixing occurs. As the flow rate is increased, the transition from laminar to turbulent flow is a gradual process. This zone of change is defined as transitional flow. This will appear as a wandering dye stream prior to dispersion as turbulence occurs.
Experimental study of Laminar, Transitional and Turbulent Flow :

  • Hydraulic bench.
  • Osborne Reynolds apparatus.
  • Dye.
Osborne Reynolds apparatus includes the following parts:

  • Support columns.
  • Visualization pipes.
  • Outlet control valve.
  • Needle.
  • Reservoir.
  • Marble glasses (kanchi) for smoothness of flow.
  • Starter.
  • Overflow pipe.
  • Inlet pipe.
  • Dye reservoir.
  • Bil mouth.
  • Dye control valve.

Laminar Turbulent Flow Apparatus

Laminar Turbulent Flow Apparatus

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Laminar Turbulent Flow Apparatus MT- LTFA
Our company is the major in offering Laminar Turbulent Flow Apparatus to the clients. This product is widely used to measures. Laminar Turbulent Flow Apparatus is offered in different specifications as per client's requirements. Offered range is highly acknowledged among clients due to its impeccable finish, excellent robustness and optimum performance.
Features of Laminar Turbulent Flow Apparatus

  • Low maintenance
  • Less space consumed
  • High efficiency
  • Experimental study of Laminar

Experiments of Laminar Turbulent Flow Apparatus

  • Laminar /Turbulant flow study with respect Reynold number
  • Head loss comparison in Laminar /Turbulent flow
  • Velocity profile in Laminar /Turbulent flow using pitot tube


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