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Depth of Point 1 is the depth of point below the free surface in a static mass of liquid. Check FAQs
h 1=(vabsvabs-VNegativesurges)D2
h 1 - Depth of Point 1?vabs - Absolute Velocity of Issuing Jet?VNegativesurges - Velocity of Fluid at Negative Surges?D2 - Depth of Point 2?

Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped Example

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Here is how the Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped equation looks like with Values.

Here is how the Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped equation looks like with Units.

Here is how the Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped equation looks like.

37.4775Edit=(5.002Edit5.002Edit-3Edit)15Edit
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Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped Solution

Follow our step by step solution on how to calculate Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped?

FIRST Step Consider the formula
h 1=(vabsvabs-VNegativesurges)D2
Next Step Substitute values of Variables
h 1=(5.002m/s5.002m/s-3m/s)15m
Next Step Prepare to Evaluate
h 1=(5.0025.002-3)15
Next Step Evaluate
h 1=37.4775224775225m
LAST Step Rounding Answer
h 1=37.4775m

Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped Formula Elements

Variables
Depth of Point 1
Depth of Point 1 is the depth of point below the free surface in a static mass of liquid.
Symbol: h 1
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Absolute Velocity of Issuing Jet
Absolute Velocity of Issuing Jet is actual velocity of jet used in propeller.
Symbol: vabs
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Velocity of Fluid at Negative Surges
Velocity of Fluid at Negative Surges is defined as the velocity of the flowing liquid at a Negative Surges.
Symbol: VNegativesurges
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Depth of Point 2
Depth of Point 2 is the depth of point below the free surface in a static mass of liquid.
Symbol: D2
Measurement: LengthUnit: m
Note: Value should be greater than 0.

Other Formulas to find Depth of Point 1

​Go Depth of Flow given Absolute Velocity of Surge Moving towards Right
h 1=(vabs+V2vabs+VNegativesurges)D2

Other formulas in Surge due to Sudden Reduction of Flow category

​Go Velocity at Depth1 given Absolute Velocity of Surge Moving toward Right
VNegativesurges=(vabs(D2-h 1))+(V2D2)h 1
​Go Velocity at Depth2 given Absolute Velocity of Surges Moving toward Right
V2=(vabs(h 1-D2))+(VNegativesurgesh 1)D2
​Go Depth of Flow2 given Absolute Velocity of Surge Moving towards Right Direction
D2=h 1vabs-V2vabs-VNegativesurges
​Go Depth of Flow2 when Absolute Velocity of Surge when Flow is Completely Stopped
D2=h 1VNegativesurges+vabsvabs

How to Evaluate Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped?

Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped evaluator uses Depth of Point 1 = ((Absolute Velocity of Issuing Jet)/(Absolute Velocity of Issuing Jet-Velocity of Fluid at Negative Surges))*Depth of Point 2 to evaluate the Depth of Point 1, The Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped is defined as the maximum water level during sudden cessation. Depth of Point 1 is denoted by h 1 symbol.

How to evaluate Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped using this online evaluator? To use this online evaluator for Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped, enter Absolute Velocity of Issuing Jet (vabs), Velocity of Fluid at Negative Surges (VNegativesurges) & Depth of Point 2 (D2) and hit the calculate button.

FAQs on Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped

What is the formula to find Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped?
The formula of Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped is expressed as Depth of Point 1 = ((Absolute Velocity of Issuing Jet)/(Absolute Velocity of Issuing Jet-Velocity of Fluid at Negative Surges))*Depth of Point 2. Here is an example- 37.47752 = ((5.002)/(5.002-3))*15.
How to calculate Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped?
With Absolute Velocity of Issuing Jet (vabs), Velocity of Fluid at Negative Surges (VNegativesurges) & Depth of Point 2 (D2) we can find Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped using the formula - Depth of Point 1 = ((Absolute Velocity of Issuing Jet)/(Absolute Velocity of Issuing Jet-Velocity of Fluid at Negative Surges))*Depth of Point 2.
What are the other ways to Calculate Depth of Point 1?
Here are the different ways to Calculate Depth of Point 1-
  • Depth of Point 1=((Absolute Velocity of Issuing Jet+Velocity of Fluid at 2)/(Absolute Velocity of Issuing Jet+Velocity of Fluid at Negative Surges))*Depth of Point 2OpenImg
Can the Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped be negative?
No, the Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped, measured in Length cannot be negative.
Which unit is used to measure Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped?
Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped is usually measured using the Meter[m] for Length. Millimeter[m], Kilometer[m], Decimeter[m] are the few other units in which Depth of Flow using Absolute Velocity of Surge when Flow is Completely Stopped can be measured.
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