Depth of Flow in Electromagnetic Method Solution

STEP 0: Pre-Calculation Summary
Formula Used
Depth of Flow = (((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)*Current in Coil)/Signal Output
d = (((Qs/k)^(1/nsystem)-K2)*I)/E
This formula uses 7 Variables
Variables Used
Depth of Flow - (Measured in Meter) - Depth of Flow is the distance from the top or surface of the flow to the bottom of a channel or other waterway or Depth of Flow at the Vertical while measuring Sound Weights.
Discharge in Stream - (Measured in Cubic Meter per Second) - Discharge in Stream is the volumetric flow rate of water that is transported through a given cross-sectional area.
System Constant k - System Constant k for measuring the discharge rates in flow-measuring structures.
System Constant n - System Constant n in the discharge rate of streamflow measurement.
System Constant K2 - System Constant K2 in the Electro-Magnetic Method of Stream Flow Measurement.
Current in Coil - (Measured in Ampere) - Current in Coil in the Electro-Magnetic Method of Stream Flow Measurement.
Signal Output - Signal Output will be of the order of millivolts and is related to discharge.
STEP 1: Convert Input(s) to Base Unit
Discharge in Stream: 60 Cubic Meter per Second --> 60 Cubic Meter per Second No Conversion Required
System Constant k: 2 --> No Conversion Required
System Constant n: 2.63 --> No Conversion Required
System Constant K2: 3 --> No Conversion Required
Current in Coil: 50.11 Ampere --> 50.11 Ampere No Conversion Required
Signal Output: 10 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
d = (((Qs/k)^(1/nsystem)-K2)*I)/E --> (((60/2)^(1/2.63)-3)*50.11)/10
Evaluating ... ...
d = 3.22980430141493
STEP 3: Convert Result to Output's Unit
3.22980430141493 Meter --> No Conversion Required
FINAL ANSWER
3.22980430141493 3.229804 Meter <-- Depth of Flow
(Calculation completed in 00.020 seconds)

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Electromagnetic Method Calculators

Depth of Flow in Electromagnetic Method
​ LaTeX ​ Go Depth of Flow = (((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)*Current in Coil)/Signal Output
Current in Coil in Electromagnetic Method
​ LaTeX ​ Go Current in Coil = Signal Output*Depth of Flow/((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)
Measurement for Discharge in Electromagnetic Method
​ LaTeX ​ Go Discharge in Stream = System Constant k*((Signal Output*Depth of Flow/Current in Coil)+System Constant K2)^(System Constant n)

Depth of Flow in Electromagnetic Method Formula

​LaTeX ​Go
Depth of Flow = (((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)*Current in Coil)/Signal Output
d = (((Qs/k)^(1/nsystem)-K2)*I)/E

How does Electromagnetic Method of Streamflow Measurement work?

The Electromagnetic Method measures point velocity of a stream by using an electromagnetic meter. Continuous records of velocity at one point in a cross section and of the stage readings are used to calculate the stream discharge records. This method works according to Faraday’s law of electromagnetic induction, the motion of water flowing in a stream cuts the vertical component of the earth’s magnetic field and an electromotive force (EMF) is induced in the water.

How does a Vertical Magnetic Field is created?

Large coils buried at the bottom of the channel carry a current I to produce a controlled vertical magnetic field. The electrode provided at the sides of the channel section measures the small voltage produced due to the flow of water in the channel.

How to Calculate Depth of Flow in Electromagnetic Method?

Depth of Flow in Electromagnetic Method calculator uses Depth of Flow = (((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)*Current in Coil)/Signal Output to calculate the Depth of Flow, The Depth of Flow in Electromagnetic Method formula is defined as the depth of water that is transported through a given cross-sectional area based on the Electro-Magnetic Method of Faraday's principle. Depth of Flow is denoted by d symbol.

How to calculate Depth of Flow in Electromagnetic Method using this online calculator? To use this online calculator for Depth of Flow in Electromagnetic Method, enter Discharge in Stream (Qs), System Constant k (k), System Constant n (nsystem), System Constant K2 (K2), Current in Coil (I) & Signal Output (E) and hit the calculate button. Here is how the Depth of Flow in Electromagnetic Method calculation can be explained with given input values -> 3.222714 = (((60/2)^(1/2.63)-3)*50.11)/10.

FAQ

What is Depth of Flow in Electromagnetic Method?
The Depth of Flow in Electromagnetic Method formula is defined as the depth of water that is transported through a given cross-sectional area based on the Electro-Magnetic Method of Faraday's principle and is represented as d = (((Qs/k)^(1/nsystem)-K2)*I)/E or Depth of Flow = (((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)*Current in Coil)/Signal Output. Discharge in Stream is the volumetric flow rate of water that is transported through a given cross-sectional area, System Constant k for measuring the discharge rates in flow-measuring structures, System Constant n in the discharge rate of streamflow measurement, System Constant K2 in the Electro-Magnetic Method of Stream Flow Measurement, Current in Coil in the Electro-Magnetic Method of Stream Flow Measurement & Signal Output will be of the order of millivolts and is related to discharge.
How to calculate Depth of Flow in Electromagnetic Method?
The Depth of Flow in Electromagnetic Method formula is defined as the depth of water that is transported through a given cross-sectional area based on the Electro-Magnetic Method of Faraday's principle is calculated using Depth of Flow = (((Discharge in Stream/System Constant k)^(1/System Constant n)-System Constant K2)*Current in Coil)/Signal Output. To calculate Depth of Flow in Electromagnetic Method, you need Discharge in Stream (Qs), System Constant k (k), System Constant n (nsystem), System Constant K2 (K2), Current in Coil (I) & Signal Output (E). With our tool, you need to enter the respective value for Discharge in Stream, System Constant k, System Constant n, System Constant K2, Current in Coil & Signal Output 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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