Water exits a system through a set of thin, closely spaced blades with a speed of V=5 ft/s from the entire circumference of the outlet as shown below. Determine the mass flow rate through the inlet pipe in slugs/s

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Water exits a system through a set of thin, closely spaced blades with a speed of V=5 ft/s from the entire circumference of the outlet as shown below. Determine the mass flow rate through the inlet pipe in slugs/s.

The image shows a schematic diagram of a component with a radial flow turbine. The key elements in the diagram include:

1. **Inlet Pipe**:
   - Labeled with an arrow indicating the flow entry direction.
   - Diameter of the inlet pipe is specified as 0.08 feet.

2. **Turbine Wheel**:
   - The turbine has a series of blades that guide the flow.
   - A cross-sectional side view shows the height of the wheel as 0.1 feet.
   - An overhead view represents the turbine blades arranged in a circular pattern.

3. **Dimensions**:
   - The radius of the circle formed by the blades is 0.6 feet.
   - The velocity of the fluid entering the turbine is given as 10 feet per second.
   - The angle between the direction of the incoming fluid and a line perpendicular to the surface of the blades is 60 degrees.

This diagram is illustrative of the basic geometry and flow characteristics involved in the operation of a radial flow turbine, which is used to convert fluid flow into rotational energy.
Transcribed Image Text:The image shows a schematic diagram of a component with a radial flow turbine. The key elements in the diagram include: 1. **Inlet Pipe**: - Labeled with an arrow indicating the flow entry direction. - Diameter of the inlet pipe is specified as 0.08 feet. 2. **Turbine Wheel**: - The turbine has a series of blades that guide the flow. - A cross-sectional side view shows the height of the wheel as 0.1 feet. - An overhead view represents the turbine blades arranged in a circular pattern. 3. **Dimensions**: - The radius of the circle formed by the blades is 0.6 feet. - The velocity of the fluid entering the turbine is given as 10 feet per second. - The angle between the direction of the incoming fluid and a line perpendicular to the surface of the blades is 60 degrees. This diagram is illustrative of the basic geometry and flow characteristics involved in the operation of a radial flow turbine, which is used to convert fluid flow into rotational energy.
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