FLOWS parallel to the axis of the rotation of the shaft.A reaction turbine is a turbine in which the head at the inlet is sum of the PRESSURE energy and kinetic energy and during the flow of water through the runner a part of pressure energy is converted into kinetic energy.The shaft of the turbine is VERTICAL in axial flow reaction turbine.There are two important types of axial flow reaction turbine:1. Kaplan Turbine:When the vanes on the HUB are adjustable, then the turbine is KNOWN as Kaplan turbine.2. Propeller Turbine:When the vanes on the hub are not adjustable, then the turbine is known as propeller turbine.

"> FLOWS parallel to the axis of the rotation of the shaft.A reaction turbine is a turbine in which the head at the inlet is sum of the PRESSURE energy and kinetic energy and during the flow of water through the runner a part of pressure energy is converted into kinetic energy.The shaft of the turbine is VERTICAL in axial flow reaction turbine.There are two important types of axial flow reaction turbine:1. Kaplan Turbine:When the vanes on the HUB are adjustable, then the turbine is KNOWN as Kaplan turbine.2. Propeller Turbine:When the vanes on the hub are not adjustable, then the turbine is known as propeller turbine.

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Kaplan turbine is a/an

Fluid Mechanics Turbomachinery in Fluid Mechanics . 7 months ago

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Axial flow reaction turbine:An axial flow turbine is a turbine in which the water FLOWS parallel to the axis of the rotation of the shaft.A reaction turbine is a turbine in which the head at the inlet is sum of the PRESSURE energy and kinetic energy and during the flow of water through the runner a part of pressure energy is converted into kinetic energy.The shaft of the turbine is VERTICAL in axial flow reaction turbine.There are two important types of axial flow reaction turbine:1. Kaplan Turbine:When the vanes on the HUB are adjustable, then the turbine is KNOWN as Kaplan turbine.2. Propeller Turbine:When the vanes on the hub are not adjustable, then the turbine is known as propeller turbine.

Posted on 28 Oct 2024, this text provides information on Fluid Mechanics related to Turbomachinery in Fluid Mechanics. Please note that while accuracy is prioritized, the data presented might not be entirely correct or up-to-date. This information is offered for general knowledge and informational purposes only, and should not be considered as a substitute for professional advice.

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