Velocity at Depth1 when Surge Height is Negligible Solution

STEP 0: Pre-Calculation Summary
Formula Used
Velocity of Fluid at Negative Surges = (Height of Channel*[g]/Celerity of Wave)+Velocity of Fluid at 2
VNegativesurges = (Hch*[g]/Cw)+V2
This formula uses 1 Constants, 4 Variables
Constants Used
[g] - Gravitational acceleration on Earth Value Taken As 9.80665
Variables Used
Velocity of Fluid at Negative Surges - (Measured in Meter per Second) - Velocity of Fluid at Negative Surges is defined as the velocity of the flowing liquid at a Negative Surges.
Height of Channel - (Measured in Meter) - Height of Channel is the distance between the lowest and highest points of a person/ shape/ object standing upright.
Celerity of Wave - (Measured in Meter per Second) - Celerity of Wave is the addition to the normal water velocity of the channels.
Velocity of Fluid at 2 - (Measured in Meter per Second) - Velocity of Fluid at 2 is defined as the velocity of the flowing liquid at point 1.
STEP 1: Convert Input(s) to Base Unit
Height of Channel: 12.01 Meter --> 12.01 Meter No Conversion Required
Celerity of Wave: 5.4 Meter per Second --> 5.4 Meter per Second No Conversion Required
Velocity of Fluid at 2: 5 Meter per Second --> 5 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
VNegativesurges = (Hch*[g]/Cw)+V2 --> (12.01*[g]/5.4)+5
Evaluating ... ...
VNegativesurges = 26.8107160185185
STEP 3: Convert Result to Output's Unit
26.8107160185185 Meter per Second --> No Conversion Required
FINAL ANSWER
26.8107160185185 26.81072 Meter per Second <-- Velocity of Fluid at Negative Surges
(Calculation completed in 00.004 seconds)

Credits

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National Institute of Technology Karnataka (NITK), Surathkal
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9 Negative Surges Calculators

Velocity at Depth given Absolute Velocity of Surge Moving towards Right
Go Velocity of Fluid at Negative Surges = ((Absolute Velocity of Issuing Jet*(Depth of Point 1-Depth of Point 2))+(Velocity of Fluid at 2*Depth of Point 2))/Depth of Point 1
Velocity at Depth1 when Surge Height is Negligible
Go Velocity of Fluid at Negative Surges = (Height of Channel*[g]/Celerity of Wave)+Velocity of Fluid at 2
Depth of Flow given Absolute Velocity of Surges
Go Mean velocity = sqrt([g]*Depth of Point 1)-Absolute Velocity of Issuing Jet
Velocity of Flow given Depth of flow
Go Mean velocity = sqrt([g]*Depth of Point 1)-Absolute Velocity of Issuing Jet
Velocity of Flow given Absolute Velocity of Surges
Go Mean velocity = sqrt([g]*Depth of Flow)-Absolute Velocity of Issuing Jet
Absolute Velocity of Surges
Go Absolute Velocity of Issuing Jet = sqrt([g]*Depth of Flow)-Mean velocity
Celerity of Wave given is Depth
Go Celerity of Wave = sqrt([g]*Depth of Flow)
Absolute Velocity of Surges for given Depth of flow
Go Absolute Velocity of Issuing Jet = Celerity of Wave+Mean velocity
Celerity of Wave Given Absolute Velocity of Surges
Go Celerity of Wave = Absolute Velocity of Issuing Jet-Mean velocity

Velocity at Depth1 when Surge Height is Negligible Formula

Velocity of Fluid at Negative Surges = (Height of Channel*[g]/Celerity of Wave)+Velocity of Fluid at 2
VNegativesurges = (Hch*[g]/Cw)+V2

What are Surges?

Surges, or transients, are brief overvoltage spikes or disturbances on a power waveform that can damage, degrade, or destroy electronic equipment within any home, commercial building, industrial, or manufacturing facility. Transients can reach amplitudes of tens of thousands of volts.

How to Calculate Velocity at Depth1 when Surge Height is Negligible?

Velocity at Depth1 when Surge Height is Negligible calculator uses Velocity of Fluid at Negative Surges = (Height of Channel*[g]/Celerity of Wave)+Velocity of Fluid at 2 to calculate the Velocity of Fluid at Negative Surges, The Velocity at Depth1 when surge height is negligible formula is defined as velocity of flow surge at a point. Velocity of Fluid at Negative Surges is denoted by VNegativesurges symbol.

How to calculate Velocity at Depth1 when Surge Height is Negligible using this online calculator? To use this online calculator for Velocity at Depth1 when Surge Height is Negligible, enter Height of Channel (Hch), Celerity of Wave (Cw) & Velocity of Fluid at 2 (V2) and hit the calculate button. Here is how the Velocity at Depth1 when Surge Height is Negligible calculation can be explained with given input values -> 24.31072 = (12.01*[g]/5.4)+5.

FAQ

What is Velocity at Depth1 when Surge Height is Negligible?
The Velocity at Depth1 when surge height is negligible formula is defined as velocity of flow surge at a point and is represented as VNegativesurges = (Hch*[g]/Cw)+V2 or Velocity of Fluid at Negative Surges = (Height of Channel*[g]/Celerity of Wave)+Velocity of Fluid at 2. Height of Channel is the distance between the lowest and highest points of a person/ shape/ object standing upright, Celerity of Wave is the addition to the normal water velocity of the channels & Velocity of Fluid at 2 is defined as the velocity of the flowing liquid at point 1.
How to calculate Velocity at Depth1 when Surge Height is Negligible?
The Velocity at Depth1 when surge height is negligible formula is defined as velocity of flow surge at a point is calculated using Velocity of Fluid at Negative Surges = (Height of Channel*[g]/Celerity of Wave)+Velocity of Fluid at 2. To calculate Velocity at Depth1 when Surge Height is Negligible, you need Height of Channel (Hch), Celerity of Wave (Cw) & Velocity of Fluid at 2 (V2). With our tool, you need to enter the respective value for Height of Channel, Celerity of Wave & Velocity of Fluid at 2 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 Velocity of Fluid at Negative Surges?
In this formula, Velocity of Fluid at Negative Surges uses Height of Channel, Celerity of Wave & Velocity of Fluid at 2. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Velocity of Fluid at Negative Surges = ((Absolute Velocity of Issuing Jet*(Depth of Point 1-Depth of Point 2))+(Velocity of Fluid at 2*Depth of Point 2))/Depth of Point 1
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