Draw the velocity triangles at the inlet and outlet sections of a centrifugal pump whose impeller curvature is in the clockwise direction and the impeller is rotating in the counterclockwise direction. Assume no swirl flow at the inlet. ii) Figure 2 shows a typical cross-section of a working Francis turbine. The turbine consists of four main parts namely stationary/stay vanes, wicket/adjustable vanes, rotary vanes (impeller), and draft tube. Discuss the purpose and advantages of each component.
Draw the velocity triangles at the inlet and outlet sections of a centrifugal pump whose impeller curvature is in the clockwise direction and the impeller is rotating in the counterclockwise direction. Assume no swirl flow at the inlet. ii) Figure 2 shows a typical cross-section of a working Francis turbine. The turbine consists of four main parts namely stationary/stay vanes, wicket/adjustable vanes, rotary vanes (impeller), and draft tube. Discuss the purpose and advantages of each component.
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter9: Moments And Products Of Inertia Of Areas
Section: Chapter Questions
Problem 9.22P
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i) Draw the velocity triangles at the inlet and outlet sections of a centrifugal pump whose impeller curvature is in the clockwise direction and the impeller is rotating in the counterclockwise direction. Assume no swirl flow at the inlet.
ii) Figure 2 shows a typical cross-section of a working Francis turbine. The turbine consists of four main parts namely stationary/stay vanes, wicket/adjustable vanes, rotary vanes (impeller), and draft tube. Discuss the purpose and advantages of each component.
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