Discharge through Pipe in Elbowmeter Solution

STEP 0: Pre-Calculation Summary
Formula Used
Discharge of Pipe Through Elbow meter = Coefficient of Discharge*Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height))
q = Cd*A*(sqrt(2*g*helbowmeter))
This formula uses 1 Functions, 5 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Discharge of Pipe Through Elbow meter - (Measured in Cubic Meter per Second) - The Discharge of Pipe through Elbow meter refers to the fluid flowing per second through a channel or section of a pipe.
Coefficient of Discharge - The Coefficient of Discharge is ratio of actual discharge to theoretical discharge.
Cross Sectional Area of Pipe - (Measured in Square Meter) - The Cross sectional Area of Pipe refers to the area of the pipe through which the given liquid is flowing.
Acceleration due to Gravity - (Measured in Meter per Square Second) - Acceleration due to Gravity is acceleration gained by an object because of gravitational force.
Elbowmeter Height - (Measured in Meter) - The Elbowmeter Height refers to the ratio of the pressure difference at inlet and outlet of manometer and specific weight of that liquid.
STEP 1: Convert Input(s) to Base Unit
Coefficient of Discharge: 0.66 --> No Conversion Required
Cross Sectional Area of Pipe: 2 Square Meter --> 2 Square Meter No Conversion Required
Acceleration due to Gravity: 9.8 Meter per Square Second --> 9.8 Meter per Square Second No Conversion Required
Elbowmeter Height: 0.8 Meter --> 0.8 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
q = Cd*A*(sqrt(2*g*helbowmeter)) --> 0.66*2*(sqrt(2*9.8*0.8))
Evaluating ... ...
q = 5.22693332653096
STEP 3: Convert Result to Output's Unit
5.22693332653096 Cubic Meter per Second --> No Conversion Required
FINAL ANSWER
5.22693332653096 5.226933 Cubic Meter per Second <-- Discharge of Pipe Through Elbow meter
(Calculation completed in 00.004 seconds)

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National Institute of Technology Karnataka (NITK), Surathkal
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Elbow Meter Calculators

Coefficient of Discharge of Elbow Meter given Discharge
​ LaTeX ​ Go Coefficient of Discharge = Discharge of Pipe Through Elbow meter/(Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height)))
Cross-Sectional Area of Elbow Meter given Discharge
​ LaTeX ​ Go Cross Sectional Area of Pipe = Discharge of Pipe Through Elbow meter/(Coefficient of Discharge*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height)))
Discharge through Pipe in Elbowmeter
​ LaTeX ​ Go Discharge of Pipe Through Elbow meter = Coefficient of Discharge*Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height))
Differential Pressure Head of Elbow Meter
​ LaTeX ​ Go Difference in Pressure Head = ((Discharge of Pipe Through Elbow meter/(Coefficient of Discharge*Cross Sectional Area of Pipe))^2)/(2*9.81)

Discharge through Pipe in Elbowmeter Formula

​LaTeX ​Go
Discharge of Pipe Through Elbow meter = Coefficient of Discharge*Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height))
q = Cd*A*(sqrt(2*g*helbowmeter))

What is Discharge?

A discharge is a measure of the quantity of any fluid flow over unit time. The area is the cross sectional area across a river and the average velocity across that section needs to be measured for a unit time, commonly a minute.

How to Calculate Discharge through Pipe in Elbowmeter?

Discharge through Pipe in Elbowmeter calculator uses Discharge of Pipe Through Elbow meter = Coefficient of Discharge*Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height)) to calculate the Discharge of Pipe Through Elbow meter, The Discharge through Pipe in Elbowmeter formula is defined as amount of liquid flowing through the pipe measured with respect to manometer. Discharge of Pipe Through Elbow meter is denoted by q symbol.

How to calculate Discharge through Pipe in Elbowmeter using this online calculator? To use this online calculator for Discharge through Pipe in Elbowmeter, enter Coefficient of Discharge (Cd), Cross Sectional Area of Pipe (A), Acceleration due to Gravity (g) & Elbowmeter Height (helbowmeter) and hit the calculate button. Here is how the Discharge through Pipe in Elbowmeter calculation can be explained with given input values -> 5.226933 = 0.66*2*(sqrt(2*9.8*0.8)).

FAQ

What is Discharge through Pipe in Elbowmeter?
The Discharge through Pipe in Elbowmeter formula is defined as amount of liquid flowing through the pipe measured with respect to manometer and is represented as q = Cd*A*(sqrt(2*g*helbowmeter)) or Discharge of Pipe Through Elbow meter = Coefficient of Discharge*Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height)). The Coefficient of Discharge is ratio of actual discharge to theoretical discharge, The Cross sectional Area of Pipe refers to the area of the pipe through which the given liquid is flowing, Acceleration due to Gravity is acceleration gained by an object because of gravitational force & The Elbowmeter Height refers to the ratio of the pressure difference at inlet and outlet of manometer and specific weight of that liquid.
How to calculate Discharge through Pipe in Elbowmeter?
The Discharge through Pipe in Elbowmeter formula is defined as amount of liquid flowing through the pipe measured with respect to manometer is calculated using Discharge of Pipe Through Elbow meter = Coefficient of Discharge*Cross Sectional Area of Pipe*(sqrt(2*Acceleration due to Gravity*Elbowmeter Height)). To calculate Discharge through Pipe in Elbowmeter, you need Coefficient of Discharge (Cd), Cross Sectional Area of Pipe (A), Acceleration due to Gravity (g) & Elbowmeter Height (helbowmeter). With our tool, you need to enter the respective value for Coefficient of Discharge, Cross Sectional Area of Pipe, Acceleration due to Gravity & Elbowmeter Height and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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