HydroWiz - Pipe Flow Hydraulic Calculations

By Tony Renzullo

HydroWiz - Pipe Flow Hydraulic CalculationsHydroWiz - Pipe Flow Hydraulic CalculationsHydroWiz - Pipe Flow Hydraulic CalculationsHydroWiz - Pipe Flow Hydraulic CalculationsHydroWiz - Pipe Flow Hydraulic Calculations

This application was developed to supply simple on-the-spot calculations to both non-professionals and engineers working with projects involving the circulate of fluids via pressurized pipes. The app makes use of probably the most accurate and widely accepted formulation for hydraulic analysis. Every formula has been employed with meticulous care and the performance and accuracy of the program shall be regularly updated. It calculates pressure loss, circulate fee, pipe diameter and pipe size by fixing the Darcy-Weisbach equation, the Colebrook-White equation and Bernoulli's equation from simple user enter.

For Pressure Loss Calculation - input elevation, circulate, diameter and size.

For Flow Rate Calculation - enter elevation, pressure, diameter and length.

For Pipe Diameter Calculation - input elevation, pressure, flow and length.

For Pipe Length Calculation - enter elevation, stress, flow and diameter.

The consumer can select from the following choices:

1. Preferred models of measurement in both SI / Metric and US / Imperial models.

2. Pipe roughness coefficients from a broad range of pipe materials.

3. Resistance coefficients from generally used pipe fittings and valves.

4. Fluid properties from a broad range of fluids including fresh water and sea water at completely different temperatures.

Options 2, 3 and 4 may even settle for consumer specified knowledge.

NOTE: These options are only out there with the paid model.

The primary calculations (pressure loss, flow rate, pipe diameter and pipe length) are displayed on the top of the display whereas all other essential calculation results (hydraulic head, friction loss, fittings loss, velocity head, move velocity, flow type, Reynolds number and friction factor) are displayed on the bottom of the screen.

Note regarding critical flow or transitional move zone at (2300 Re 4000):

It is properly acknowledged that move inside this narrow zone is unpredictable, unstable and never totally understood. The finest practice is to design throughout the laminar flow or turbulent flow zones to keep away from potential issues and uncertainty. Any calculation falling inside this zone shall be issued with a warning. The calculated results are average values but can vary considerably due to both friction issue and move instability.

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