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The Hydraulic Efficiency of Francis Turbine is the measure of the amount of work input that is converted into useful work output. Check FAQs
ηh=Vw1u1-Vw2u2gHf
ηh - Hydraulic Efficiency of Francis Turbine?Vw1 - Whirl Velocity at Inlet of Francis Turbine?u1 - Velocity of Vane at Inlet For Francis Turbine?Vw2 - Whirl Velocity at Outlet of Francis Turbine?u2 - Velocity of Vane at Outlet For Francis Turbine?g - Acceleration Due to Gravity?Hf - Net Francis Turbine Head?

Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade Example

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With units
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Here is how the Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade equation looks like with Values.

Here is how the Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade equation looks like with Units.

Here is how the Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade equation looks like.

0.4114Edit=12.93Edit9.45Edit-6.5Edit5.2Edit9.81Edit21.9Edit
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Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade Solution

Follow our step by step solution on how to calculate Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade?

FIRST Step Consider the formula
ηh=Vw1u1-Vw2u2gHf
Next Step Substitute values of Variables
ηh=12.93m/s9.45m/s-6.5m/s5.2m/s9.81m/s²21.9m
Next Step Prepare to Evaluate
ηh=12.939.45-6.55.29.8121.9
Next Step Evaluate
ηh=0.411417386973501
LAST Step Rounding Answer
ηh=0.4114

Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade Formula Elements

Variables
Hydraulic Efficiency of Francis Turbine
The Hydraulic Efficiency of Francis Turbine is the measure of the amount of work input that is converted into useful work output.
Symbol: ηh
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Whirl Velocity at Inlet of Francis Turbine
Whirl Velocity at Inlet of Francis Turbine is the tangential component of absolute velocity at the blade inlet.
Symbol: Vw1
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Velocity of Vane at Inlet For Francis Turbine
Velocity of Vane at Inlet For Francis Turbine is defined as the velocity of the vane at the inlet of the turbine.
Symbol: u1
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Whirl Velocity at Outlet of Francis Turbine
Whirl Velocity at Outlet of Francis Turbine is defined as the component of velocity of the jet in the direction of motion of the vane at the outlet.
Symbol: Vw2
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Velocity of Vane at Outlet For Francis Turbine
Velocity of Vane at Outlet For Francis Turbine is defined as the tangential velocity of the vane at the jet outlet.
Symbol: u2
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Acceleration Due to Gravity
Acceleration Due to Gravity is acceleration gained by an object because of gravitational force.
Symbol: g
Measurement: AccelerationUnit: m/s²
Note: Value should be greater than 0.
Net Francis Turbine Head
The Net Francis Turbine Head is defined as the net water head in the turbine.
Symbol: Hf
Measurement: LengthUnit: m
Note: Value should be greater than 0.

Other Formulas to find Hydraulic Efficiency of Francis Turbine

​Go Hydraulic Efficiency of Francis Turbine with Acute Angled Outlet Blade
ηh=Vw1u1+Vw2u2gHf
​Go Hydraulic Efficiency of Francis Turbine with Right Angled Outlet Blade
ηh=Vw1u1gHf

Other formulas in Francis Turbine category

​Go Francis Turbine Speed Ratio
Ku=u12gHi
​Go Velocity of Vane at Inlet given Speed Ratio Francis Turbine
u1=Ku2gHi

How to Evaluate Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade?

Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade evaluator uses Hydraulic Efficiency of Francis Turbine = (Whirl Velocity at Inlet of Francis Turbine*Velocity of Vane at Inlet For Francis Turbine-Whirl Velocity at Outlet of Francis Turbine*Velocity of Vane at Outlet For Francis Turbine)/(Acceleration Due to Gravity*Net Francis Turbine Head) to evaluate the Hydraulic Efficiency of Francis Turbine, Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade is the ratio of the hydraulic power (useful power output) to the water power supplied to the turbine. Obtuse-angled outlet blades can lead to increased energy losses due to higher fluid exit velocity and turbulence, potentially reducing the hydraulic efficiency of the turbine compared to blades with more acute angles. Hydraulic Efficiency of Francis Turbine is denoted by ηh symbol.

How to evaluate Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade using this online evaluator? To use this online evaluator for Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade, enter Whirl Velocity at Inlet of Francis Turbine (Vw1), Velocity of Vane at Inlet For Francis Turbine (u1), Whirl Velocity at Outlet of Francis Turbine (Vw2), Velocity of Vane at Outlet For Francis Turbine (u2), Acceleration Due to Gravity (g) & Net Francis Turbine Head (Hf) and hit the calculate button.

FAQs on Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade

What is the formula to find Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade?
The formula of Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade is expressed as Hydraulic Efficiency of Francis Turbine = (Whirl Velocity at Inlet of Francis Turbine*Velocity of Vane at Inlet For Francis Turbine-Whirl Velocity at Outlet of Francis Turbine*Velocity of Vane at Outlet For Francis Turbine)/(Acceleration Due to Gravity*Net Francis Turbine Head). Here is an example- 0.411417 = (12.93*9.45-6.5*5.2)/(9.81*21.9).
How to calculate Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade?
With Whirl Velocity at Inlet of Francis Turbine (Vw1), Velocity of Vane at Inlet For Francis Turbine (u1), Whirl Velocity at Outlet of Francis Turbine (Vw2), Velocity of Vane at Outlet For Francis Turbine (u2), Acceleration Due to Gravity (g) & Net Francis Turbine Head (Hf) we can find Hydraulic Efficiency of Francis Turbine with Obtuse Angled Outlet Blade using the formula - Hydraulic Efficiency of Francis Turbine = (Whirl Velocity at Inlet of Francis Turbine*Velocity of Vane at Inlet For Francis Turbine-Whirl Velocity at Outlet of Francis Turbine*Velocity of Vane at Outlet For Francis Turbine)/(Acceleration Due to Gravity*Net Francis Turbine Head).
What are the other ways to Calculate Hydraulic Efficiency of Francis Turbine?
Here are the different ways to Calculate Hydraulic Efficiency of Francis Turbine-
  • Hydraulic Efficiency of Francis Turbine=(Whirl Velocity at Inlet of Francis Turbine*Velocity of Vane at Inlet For Francis Turbine+Whirl Velocity at Outlet of Francis Turbine*Velocity of Vane at Outlet For Francis Turbine)/(Acceleration Due to Gravity*Net Francis Turbine Head)OpenImg
  • Hydraulic Efficiency of Francis Turbine=(Whirl Velocity at Inlet of Francis Turbine*Velocity of Vane at Inlet For Francis Turbine)/(Acceleration Due to Gravity*Net Francis Turbine Head)OpenImg
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