Critical Depth given Critical Energy for Rectangular Channel Solution

STEP 0: Pre-Calculation Summary
Formula Used
Critical Depth of Rectangular Channel = Critical Energy of Rectangular Channel/1.5
hr = Er/1.5
This formula uses 2 Variables
Variables Used
Critical Depth of Rectangular Channel - (Measured in Meter) - The Critical Depth of Rectangular Channel is defined as the depth of flow where energy is at a minimum for a particular discharge.
Critical Energy of Rectangular Channel - (Measured in Meter) - Critical energy of rectangular channel is the total energy (both potential and kinetic energy) at the point of jump formation.
STEP 1: Convert Input(s) to Base Unit
Critical Energy of Rectangular Channel: 3.24 Meter --> 3.24 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
hr = Er/1.5 --> 3.24/1.5
Evaluating ... ...
hr = 2.16
STEP 3: Convert Result to Output's Unit
2.16 Meter --> No Conversion Required
FINAL ANSWER
2.16 Meter <-- Critical Depth of Rectangular Channel
(Calculation completed in 00.004 seconds)

Credits

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National Institute of Technology Karnataka (NITK), Surathkal
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16 Critical Flow and its Computation Calculators

Discharge given Critical Depth for Parabolic Channel
Go Discharge of Channel = sqrt((Critical Depth of Parabolic Channel^4)*((Bed Slope)^2)*0.29629629629 *[g])
Discharge given Critical Depth for Triangular Channel
Go Discharge of Channel = sqrt((Critical Depth of Triangular Channnel^5)*((Bed Slope)^2)*0.5*[g])
Side Slope of Channel given Critical Depth for Parabolic Channel
Go Bed Slope = (3.375*((Discharge of Channel)^2)/((Critical Depth of Parabolic Channel^4)*[g]))^(1/2)
Side Slope of Channel given Critical Depth for Triangular Channel
Go Bed Slope = (2*((Discharge of Channel)^2)/((Critical Depth of Triangular Channnel^5)*[g]))^(1/2)
Critical Depth for Parabolic Channel
Go Critical Depth of Parabolic Channel = (3.375*((Discharge of Channel/Bed Slope)^2)/[g])^(1/4)
Critical Depth for Triangular Channel
Go Critical Depth of Triangular Channnel = (2*((Discharge of Channel/Bed Slope)^2)/[g])^(1/5)
Critical Depth for Rectangular Channel
Go Critical Depth of Rectangular Channel = ((Discharge per unit Width^2)/([g]))^(1/3)
Discharge per unit Width given Critical Depth for Rectangular Channel
Go Discharge per unit Width = ((Critical Depth of Rectangular Channel^3)*[g])^(1/2)
Discharge given Critical Section Factor
Go Discharge of Channel = Section Factor*sqrt([g])
Critical Section Factor
Go Section Factor = Discharge of Channel/sqrt([g])
Critical Depth given Critical Energy for Rectangular Channel
Go Critical Depth of Rectangular Channel = Critical Energy of Rectangular Channel/1.5
Critical Depth given Critical Energy for Triangular Channel
Go Critical Depth of Triangular Channnel = Critical Energy of Triangular Channel/1.25
Critical Energy for Rectangular Channel
Go Critical Energy of Rectangular Channel = 1.5*Critical Depth of Rectangular Channel
Critical Energy for Triangular Channel
Go Critical Energy of Triangular Channel = Critical Depth of Triangular Channnel*1.25
Critical Depth of Flow given Critical Energy for Parabolic Channel
Go Critical Depth of Parabolic Channel = Critical energy of Parabolic Channel/(4/3)
Critical Energy for Parabolic Channel
Go Critical energy of Parabolic Channel = (4/3)*Critical Depth of Parabolic Channel

Critical Depth given Critical Energy for Rectangular Channel Formula

Critical Depth of Rectangular Channel = Critical Energy of Rectangular Channel/1.5
hr = Er/1.5

What is Critical Energy of Channel?

In open channel flow, specific energy ( e ) is the energy length, or head, relative to the channel bottom. It is also the fundamental relationship used in the standard step method to calculate how the depth of a flow changes over a reach from the energy gained or lost due to the slope of the channel.

How to Calculate Critical Depth given Critical Energy for Rectangular Channel?

Critical Depth given Critical Energy for Rectangular Channel calculator uses Critical Depth of Rectangular Channel = Critical Energy of Rectangular Channel/1.5 to calculate the Critical Depth of Rectangular Channel, The Critical Depth given Critical Energy for Rectangular Channel is defined as the depth at which minimum energy is obtained. Critical Depth of Rectangular Channel is denoted by hr symbol.

How to calculate Critical Depth given Critical Energy for Rectangular Channel using this online calculator? To use this online calculator for Critical Depth given Critical Energy for Rectangular Channel, enter Critical Energy of Rectangular Channel (Er) and hit the calculate button. Here is how the Critical Depth given Critical Energy for Rectangular Channel calculation can be explained with given input values -> 2.16 = 3.24/1.5.

FAQ

What is Critical Depth given Critical Energy for Rectangular Channel?
The Critical Depth given Critical Energy for Rectangular Channel is defined as the depth at which minimum energy is obtained and is represented as hr = Er/1.5 or Critical Depth of Rectangular Channel = Critical Energy of Rectangular Channel/1.5. Critical energy of rectangular channel is the total energy (both potential and kinetic energy) at the point of jump formation.
How to calculate Critical Depth given Critical Energy for Rectangular Channel?
The Critical Depth given Critical Energy for Rectangular Channel is defined as the depth at which minimum energy is obtained is calculated using Critical Depth of Rectangular Channel = Critical Energy of Rectangular Channel/1.5. To calculate Critical Depth given Critical Energy for Rectangular Channel, you need Critical Energy of Rectangular Channel (Er). With our tool, you need to enter the respective value for Critical Energy of Rectangular Channel 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 Critical Depth of Rectangular Channel?
In this formula, Critical Depth of Rectangular Channel uses Critical Energy of Rectangular Channel. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Critical Depth of Rectangular Channel = ((Discharge per unit Width^2)/([g]))^(1/3)
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