To determine the Reynold's number and hence the type of flow from laminar to turbulent
To determine the Reynold's number and hence the type of flow from laminar to turbulent
To determine the Reynold's number and hence
the type of flow from laminar to turbulent
To study transition zone
Tube: Clear acrylic 750mm length, 32mm outer dia.
and 25mm inner dia
Dye Vessel: Made of material SS sheet, 1litrs capacity
Constant Head Tank: 300mm x 300mm x 450mm (LxBxH)
Measuring Tank: 300mm x 300mm x 300mm (LxBxH)
Sump Tank: 600mm x 300mm x 300mm (LxBxH)
Tanks made of SS sheet
Piping & Fittings: Gl material used
For more details please refer datasheet
To determine the Reynold's number and hence
the type of flow from laminar to turbulent
To study transition zone
Tube: Clear acrylic 750mm length, 32mm outer dia.
and 25mm inner dia
Dye Vessel: Made of material SS sheet, 1litrs capacity
Constant Head Tank: 300mm x 300mm x 450mm (LxBxH)
Measuring Tank: 300mm x 300mm x 300mm (LxBxH)
Sump Tank: 600mm x 300mm x 300mm (LxBxH)
Tanks made of SS sheet
Piping & Fittings: Gl material used
For more details please refer datasheet
Calculation, Sub Area division , reference Line, COGO, Projection Systems, National grids System , select Geoids, Grid to Ground , select Coordinate in order NEZ & ENZ , settings (units, precision,
Losses due to Pipe Fitting, Sudden Enlargement & Contraction
To determine co-efficient of discharge of nozzlemeter