Inside Diameter given Flow Quantity for Full Flowing Sewer Solution

STEP 0: Pre-Calculation Summary
Formula Used
Inner Diameter = ((Water Flow*Roughness Coefficient of Conduit Surface)/(0.463*Energy loss^(1/2)))^(3/8)
di = ((Q*nc)/(0.463*S^(1/2)))^(3/8)
This formula uses 4 Variables
Variables Used
Inner Diameter - (Measured in Meter) - The Inner Diameter is the diameter of inner circle of circular hollow shaft.
Water Flow - (Measured in Cubic Meter per Second) - Water Flow is rate of flow of water.
Roughness Coefficient of Conduit Surface - Roughness Coefficient of Conduit Surface is coefficient dependent on roughness of conduit surface.
Energy loss - (Measured in Joule) - Energy loss is the loss of energy of flowing water.
STEP 1: Convert Input(s) to Base Unit
Water Flow: 1.8 Cubic Meter per Second --> 1.8 Cubic Meter per Second No Conversion Required
Roughness Coefficient of Conduit Surface: 0.017 --> No Conversion Required
Energy loss: 2 Joule --> 2 Joule No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
di = ((Q*nc)/(0.463*S^(1/2)))^(3/8) --> ((1.8*0.017)/(0.463*2^(1/2)))^(3/8)
Evaluating ... ...
di = 0.317036700208421
STEP 3: Convert Result to Output's Unit
0.317036700208421 Meter --> No Conversion Required
FINAL ANSWER
0.317036700208421 0.317037 Meter <-- Inner Diameter
(Calculation completed in 00.004 seconds)

Credits

Created by Mridul Sharma
Indian Institute of Information Technology (IIIT), Bhopal
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Meerut Institute of Engineering and Technology (MIET), Meerut
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8 Required flow velocity Calculators

Inside Diameter given Full Flow Velocity in Sewer
Go Inner Diameter = ((Flow Velocity*Roughness Coefficient of Conduit Surface)/(0.59*Energy loss^(1/2)))^(3/2)
Inside Diameter given Flow Quantity for Full Flowing Sewer
Go Inner Diameter = ((Water Flow*Roughness Coefficient of Conduit Surface)/(0.463*Energy loss^(1/2)))^(3/8)
Energy Loss given Flow Quantity for Full Flowing Sewer
Go Energy loss = (((Water Flow*Manning’s Roughness Coefficient)/(0.463*Inner Diameter of Sewer^(8/3)))^2)
Coefficient of Roughness given Full Flow Velocity in Sewer
Go Roughness Coefficient of Conduit Surface = (0.59*Inner Diameter^(2/3)*Energy loss^(1/2))/Flow Velocity
Energy Loss given Full Flow Velocity in Sewer
Go Energy loss = ((Flow Velocity*Roughness Coefficient of Conduit Surface)/(0.59*Inner Diameter^(2/3)))^2
Full flow velocity in sewer
Go Flow Velocity = (0.59*Inner Diameter^(2/3)*Energy loss^(1/2))/Roughness Coefficient of Conduit Surface
Coefficient of roughness given flow quantity of full flowing sewer
Go Roughness Coefficient of Conduit Surface = (0.463*Energy loss^(1/2)*Inner Diameter^(8/3))/Water Flow
Flow Quantity for Full Flowing Sewer
Go Water Flow = (0.463*Energy loss^(1/2)*Inner Diameter^(8/3))/Roughness Coefficient of Conduit Surface

Inside Diameter given Flow Quantity for Full Flowing Sewer Formula

Inner Diameter = ((Water Flow*Roughness Coefficient of Conduit Surface)/(0.463*Energy loss^(1/2)))^(3/8)
di = ((Q*nc)/(0.463*S^(1/2)))^(3/8)

What is pipe roughness coefficient?

Roughness coefficient is a value used in Manning's formula to determine energy losses of flowing water due to pipe or channel wall roughness.It is based on the material of the pipe. New steel pipe uses a C value of 140, but with use and corrosion a lower value is typically used. For HDPE pipe, a range of C values between 150 and 160 is typical.

How to Calculate Inside Diameter given Flow Quantity for Full Flowing Sewer?

Inside Diameter given Flow Quantity for Full Flowing Sewer calculator uses Inner Diameter = ((Water Flow*Roughness Coefficient of Conduit Surface)/(0.463*Energy loss^(1/2)))^(3/8) to calculate the Inner Diameter, The Inside diameter given flow quantity for full flowing sewer formula calculates inner diameter of the pipe when we have a prior info of the flow quantity , the roughness coefficient and energy loss. Inner Diameter is denoted by di symbol.

How to calculate Inside Diameter given Flow Quantity for Full Flowing Sewer using this online calculator? To use this online calculator for Inside Diameter given Flow Quantity for Full Flowing Sewer, enter Water Flow (Q), Roughness Coefficient of Conduit Surface (nc) & Energy loss (S) and hit the calculate button. Here is how the Inside Diameter given Flow Quantity for Full Flowing Sewer calculation can be explained with given input values -> 0.317037 = ((1.8*0.017)/(0.463*2^(1/2)))^(3/8).

FAQ

What is Inside Diameter given Flow Quantity for Full Flowing Sewer?
The Inside diameter given flow quantity for full flowing sewer formula calculates inner diameter of the pipe when we have a prior info of the flow quantity , the roughness coefficient and energy loss and is represented as di = ((Q*nc)/(0.463*S^(1/2)))^(3/8) or Inner Diameter = ((Water Flow*Roughness Coefficient of Conduit Surface)/(0.463*Energy loss^(1/2)))^(3/8). Water Flow is rate of flow of water, Roughness Coefficient of Conduit Surface is coefficient dependent on roughness of conduit surface & Energy loss is the loss of energy of flowing water.
How to calculate Inside Diameter given Flow Quantity for Full Flowing Sewer?
The Inside diameter given flow quantity for full flowing sewer formula calculates inner diameter of the pipe when we have a prior info of the flow quantity , the roughness coefficient and energy loss is calculated using Inner Diameter = ((Water Flow*Roughness Coefficient of Conduit Surface)/(0.463*Energy loss^(1/2)))^(3/8). To calculate Inside Diameter given Flow Quantity for Full Flowing Sewer, you need Water Flow (Q), Roughness Coefficient of Conduit Surface (nc) & Energy loss (S). With our tool, you need to enter the respective value for Water Flow, Roughness Coefficient of Conduit Surface & Energy loss and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Inner Diameter?
In this formula, Inner Diameter uses Water Flow, Roughness Coefficient of Conduit Surface & Energy loss. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Inner Diameter = ((Flow Velocity*Roughness Coefficient of Conduit Surface)/(0.59*Energy loss^(1/2)))^(3/2)
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