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Velocity Triangles Diagram For Impeller of Centrifugal Pump | Fluid Mechanics | Shubham Kola
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Subject - Fluid Mechanics and Machinery
Chapter - Inlet and Outlet Velocity Triangles Diagram For Impeller of Centrifugal Pump
Timestamps
0:00 - Start
0:07 - Velocity triangles diagram for impeller of Centrifugal pump
0:24 - Construction and Working of Centrifugal pump
1:35 - Inlet Velocity triangle for impeller of Centrifugal pump
1:51 - Guide Blade Angle at inlet
2:00 - Absolute Velocity of fluid at inlet
2:16 - Tangential Velocity at inlet
2:48 - Relative Velocity of fluid at inlet
3:03 - Blade angle at inlet
3:13 - Outlet Velocity triangle for impeller of Centrifugal pump
3:15 - Absolute Velocity of fluid at Outlet
3:23 - Velocity of whirl at outlet
3:36 - Velocity of flow at outlet
3:45 - Relative Velocity of fluid at outlet
3:50 - Blade angle at exit
3:58 - Tangential Velocity at outlet
4:11 - Work done by impeller of Centrifugal pump
5:18 - Discharge Rate of Centrifugal pump
5:46 - Blade Angle at inlet
5:59 - Blade Angle at Outlet
6:13 - Angle made by Absolute Velocity of fluid at Outlet
6:40 - Various heads connected with Centrifugal Pump installation
6:46 - Suction Lift
6:54 - Delivery Lift
7:03 - Static head
7:19 - Gross head
7:32 - Manometric Head
7:48 - Friction head loss in delivery pipe
8:26 - Relation between Manometric head and work done by impeller on liquid
8:45 - Virtual head
9:06 - Mechanical Efficiency
9:27 - Manometric Efficiency
9:41 - Volumetric Efficiency
9:58 - Overall Efficiency
10:17 - Specific Speed of Centrifugal Pump
#Velocity_Triangles_Diagram
#Impeller
#Centrifugal_Pump
#fluid_mechanics
#Reaction_Turbine
#thermalengineering
#Mechanical_Engineering
#shubhamkola
Your Queries :-
What is inlet and outlet velocity triangles for impeller of centrifugal pump
What is the formula for Work done of centrifugal pump
What is the formula for mechanical efficiency of centrifugal pump
What is the formula for Discharge of centrifugal pump
What are the Various heads connected with Centrifugal Pump installation
What is Gross head
What is the formula for Virtual head
What is Manometric Efficiency
This Video Topic is from Fluid Mechanics Subject, you can also watch below mentioned videos related to Fluid Mechanics Subject:
Faculty - Shubham Kola ( BE Mechanical Engineer )
From - Maharashtra ( India )
Disclaimer -
video is for educational purpose only. Copyright Disclaimer Under Section 107 of the Copyright Act 1976, allowance is made for "fair use" for purposes such as criticism, comment, news reporting, teaching, scholarship, and research. Fair use is a use permitted by copyright statute that might otherwise be infringing. Non-profit, educational or personal use tips the balance in favour of fair use. The content in this video is collected from books, media, internet space etc. This is strictly for educational and information purposes and is not intended to be advice or recommendation of any kind whatsoever. The faculty is not a subject expert. The faculty is sharing his knowledge in the form of videos. The faculty giving small basics information on mechanical engineering topics. We endeavour to keep the information up to date and correct, we make no representations or warranties of any kind, express or implied, about the completeness, accuracy, reliability, suitability or availability with respect to the video or the information, related graphics contained in the video for any purpose. any reliance you place on such information is therefore strictly at your own risk. In no event will we be liable for any loss or damage without limitation, indirect or consequential loss or damage, or any loss or damage whatsoever arising from loss of data or profits arise out of, or in connection with, the use of this video.
Chapter - Inlet and Outlet Velocity Triangles Diagram For Impeller of Centrifugal Pump
Timestamps
0:00 - Start
0:07 - Velocity triangles diagram for impeller of Centrifugal pump
0:24 - Construction and Working of Centrifugal pump
1:35 - Inlet Velocity triangle for impeller of Centrifugal pump
1:51 - Guide Blade Angle at inlet
2:00 - Absolute Velocity of fluid at inlet
2:16 - Tangential Velocity at inlet
2:48 - Relative Velocity of fluid at inlet
3:03 - Blade angle at inlet
3:13 - Outlet Velocity triangle for impeller of Centrifugal pump
3:15 - Absolute Velocity of fluid at Outlet
3:23 - Velocity of whirl at outlet
3:36 - Velocity of flow at outlet
3:45 - Relative Velocity of fluid at outlet
3:50 - Blade angle at exit
3:58 - Tangential Velocity at outlet
4:11 - Work done by impeller of Centrifugal pump
5:18 - Discharge Rate of Centrifugal pump
5:46 - Blade Angle at inlet
5:59 - Blade Angle at Outlet
6:13 - Angle made by Absolute Velocity of fluid at Outlet
6:40 - Various heads connected with Centrifugal Pump installation
6:46 - Suction Lift
6:54 - Delivery Lift
7:03 - Static head
7:19 - Gross head
7:32 - Manometric Head
7:48 - Friction head loss in delivery pipe
8:26 - Relation between Manometric head and work done by impeller on liquid
8:45 - Virtual head
9:06 - Mechanical Efficiency
9:27 - Manometric Efficiency
9:41 - Volumetric Efficiency
9:58 - Overall Efficiency
10:17 - Specific Speed of Centrifugal Pump
#Velocity_Triangles_Diagram
#Impeller
#Centrifugal_Pump
#fluid_mechanics
#Reaction_Turbine
#thermalengineering
#Mechanical_Engineering
#shubhamkola
Your Queries :-
What is inlet and outlet velocity triangles for impeller of centrifugal pump
What is the formula for Work done of centrifugal pump
What is the formula for mechanical efficiency of centrifugal pump
What is the formula for Discharge of centrifugal pump
What are the Various heads connected with Centrifugal Pump installation
What is Gross head
What is the formula for Virtual head
What is Manometric Efficiency
This Video Topic is from Fluid Mechanics Subject, you can also watch below mentioned videos related to Fluid Mechanics Subject:
Faculty - Shubham Kola ( BE Mechanical Engineer )
From - Maharashtra ( India )
Disclaimer -
video is for educational purpose only. Copyright Disclaimer Under Section 107 of the Copyright Act 1976, allowance is made for "fair use" for purposes such as criticism, comment, news reporting, teaching, scholarship, and research. Fair use is a use permitted by copyright statute that might otherwise be infringing. Non-profit, educational or personal use tips the balance in favour of fair use. The content in this video is collected from books, media, internet space etc. This is strictly for educational and information purposes and is not intended to be advice or recommendation of any kind whatsoever. The faculty is not a subject expert. The faculty is sharing his knowledge in the form of videos. The faculty giving small basics information on mechanical engineering topics. We endeavour to keep the information up to date and correct, we make no representations or warranties of any kind, express or implied, about the completeness, accuracy, reliability, suitability or availability with respect to the video or the information, related graphics contained in the video for any purpose. any reliance you place on such information is therefore strictly at your own risk. In no event will we be liable for any loss or damage without limitation, indirect or consequential loss or damage, or any loss or damage whatsoever arising from loss of data or profits arise out of, or in connection with, the use of this video.
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