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Weight Of Fluid When Work Done At Vane Angle Is 90 And Velocity Is Zero Calculator

Weight Of Fluid When Work Done At Vane Angle Is 90 And Velocity Is Zero Formula:

\[ w_f = \frac{w \times G}{v_f \times u} \]

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1. What is the Weight Of Fluid When Work Done At Vane Angle Is 90 And Velocity Is Zero Formula?

The Weight Of Fluid When Work Done At Vane Angle Is 90 And Velocity Is Zero formula calculates the weight of fluid based on work done, specific gravity, and velocity parameters. This formula is particularly useful in fluid mechanics and hydraulic systems analysis.

2. How Does the Calculator Work?

The calculator uses the formula:

\[ w_f = \frac{w \times G}{v_f \times u} \]

Where:

Explanation: The formula calculates the weight of fluid by multiplying the work done with the specific gravity, then dividing by the product of final and initial velocities.

3. Importance of Weight of Fluid Calculation

Details: Accurate calculation of fluid weight is crucial for designing hydraulic systems, analyzing fluid dynamics, and ensuring proper system performance in various engineering applications.

4. Using the Calculator

Tips: Enter work done in joules, specific gravity as a dimensionless value, and velocities in meters per second. All values must be positive numbers.

5. Frequently Asked Questions (FAQ)

Q1: What is specific gravity of fluid?
A: Specific gravity is the ratio of the density of a substance to the density of a reference substance, typically water for liquids.

Q2: Why is the vane angle 90 degrees in this formula?
A: The 90-degree vane angle represents a specific configuration where the fluid impact is perpendicular to the vane surface, simplifying the calculation.

Q3: What does zero velocity refer to in this context?
A: Zero velocity refers to the initial condition where the fluid has no velocity component in the direction being analyzed.

Q4: What are typical applications of this calculation?
A: This calculation is used in hydraulic turbine design, pump analysis, and fluid power systems where vane angles and fluid velocities are critical parameters.

Q5: Are there limitations to this formula?
A: This formula assumes ideal conditions and may need adjustments for real-world factors like friction, turbulence, and non-ideal fluid behavior.

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