What is hydraulic depth ?
Hydraulic mean depth, or hydraulic radius, is the ratio of the cross-sectional area of fluid flow to the wetted perimeter in a channel or pipe. It's a key parameter in fluid dynamics, used to determine flow characteristics like velocity and discharge. In open channel flow, it influences resistance, energy loss, and overall efficiency, making it vital for designing and analyzing water conveyance systems.
How to Calculate Roughness Coefficient for Partial Flow given Hydraulic Mean Depth Ratio?
Roughness Coefficient for Partial Flow given Hydraulic Mean Depth Ratio calculator uses Roughness Coefficient Partially Full = Roughness Coefficient for Running Full/((Velocity in a Partially Running Sewer/Velocity While Running Full)/(Hydraulic Mean Depth Ratio)^(1/6)) to calculate the Roughness Coefficient Partially Full, Roughness Coefficient for Partial Flow given Hydraulic Mean Depth Ratio is defined for flow calculations, accounting for varied wetting of pipe surfaces. Roughness Coefficient Partially Full is denoted by np symbol.
How to calculate Roughness Coefficient for Partial Flow given Hydraulic Mean Depth Ratio using this online calculator? To use this online calculator for Roughness Coefficient for Partial Flow given Hydraulic Mean Depth Ratio, enter Roughness Coefficient for Running Full (N), Velocity in a Partially Running Sewer (Vs), Velocity While Running Full (V) & Hydraulic Mean Depth Ratio (R) and hit the calculate button. Here is how the Roughness Coefficient for Partial Flow given Hydraulic Mean Depth Ratio calculation can be explained with given input values -> 2.047849 = 0.74/((self_cleansing_velocity/6.01)/(0.61)^(1/6)).