Impeller radius at inlet given inlet tangential velocity Formula

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The Radius of Impeller at Inlet is the radius of the impeller at the inlet of the pump. Check FAQs
R1=u1ω
R1 - Radius of Impeller at Inlet?u1 - Tangential Velocity of Impeller at Inlet?ω - Angular Velocity?

Impeller radius at inlet given inlet tangential velocity Example

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With units
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Here is how the Impeller radius at inlet given inlet tangential velocity equation looks like with Values.

Here is how the Impeller radius at inlet given inlet tangential velocity equation looks like with Units.

Here is how the Impeller radius at inlet given inlet tangential velocity equation looks like.

0.0955Edit=17.1Edit179.07Edit
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Impeller radius at inlet given inlet tangential velocity Solution

Follow our step by step solution on how to calculate Impeller radius at inlet given inlet tangential velocity?

FIRST Step Consider the formula
R1=u1ω
Next Step Substitute values of Variables
R1=17.1m/s179.07rad/s
Next Step Prepare to Evaluate
R1=17.1179.07
Next Step Evaluate
R1=0.0954933824761267m
LAST Step Rounding Answer
R1=0.0955m

Impeller radius at inlet given inlet tangential velocity Formula Elements

Variables
Radius of Impeller at Inlet
The Radius of Impeller at Inlet is the radius of the impeller at the inlet of the pump.
Symbol: R1
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Tangential Velocity of Impeller at Inlet
The Tangential Velocity of Impeller at Inlet is the velocity at the inlet of fluid flow.
Symbol: u1
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Angular Velocity
The Angular Velocity of Centrifugal Pump refers to how fast the pump impeller rotates.
Symbol: ω
Measurement: Angular VelocityUnit: rad/s
Note: Value should be greater than 0.

Other formulas in Impeller Parameters category

​Go Impeller radius at outlet given outlet tangential velocity
R2=u2ω
​Go Outlet Diameter of Impeller using Speed Ratio, Manometric Head and Impeller Speed
D2=84.6KuHmω
​Go Least diameter of impeller when outlet diameter is twice of inlet diameter
D2=97.68Hmω
​Go Impeller power
IP=wQVw2u21000[g]

How to Evaluate Impeller radius at inlet given inlet tangential velocity?

Impeller radius at inlet given inlet tangential velocity evaluator uses Radius of Impeller at Inlet = Tangential Velocity of Impeller at Inlet/Angular Velocity to evaluate the Radius of Impeller at Inlet, The Impeller radius at inlet given inlet tangential velocity formula is defined as the ratio of tangential velocity of impeller at inlet and angular velocity. Radius of Impeller at Inlet is denoted by R1 symbol.

How to evaluate Impeller radius at inlet given inlet tangential velocity using this online evaluator? To use this online evaluator for Impeller radius at inlet given inlet tangential velocity, enter Tangential Velocity of Impeller at Inlet (u1) & Angular Velocity (ω) and hit the calculate button.

FAQs on Impeller radius at inlet given inlet tangential velocity

What is the formula to find Impeller radius at inlet given inlet tangential velocity?
The formula of Impeller radius at inlet given inlet tangential velocity is expressed as Radius of Impeller at Inlet = Tangential Velocity of Impeller at Inlet/Angular Velocity. Here is an example- 0.095493 = 17.1/179.07.
How to calculate Impeller radius at inlet given inlet tangential velocity?
With Tangential Velocity of Impeller at Inlet (u1) & Angular Velocity (ω) we can find Impeller radius at inlet given inlet tangential velocity using the formula - Radius of Impeller at Inlet = Tangential Velocity of Impeller at Inlet/Angular Velocity.
Can the Impeller radius at inlet given inlet tangential velocity be negative?
No, the Impeller radius at inlet given inlet tangential velocity, measured in Length cannot be negative.
Which unit is used to measure Impeller radius at inlet given inlet tangential velocity?
Impeller radius at inlet given inlet tangential velocity is usually measured using the Meter[m] for Length. Millimeter[m], Kilometer[m], Decimeter[m] are the few other units in which Impeller radius at inlet given inlet tangential velocity can be measured.
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