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PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN

Duration: 25:08:33
Lectures: 31
Level: Beginner

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Principle of operation of hydraulic machines and their system design is important from the perspective
of their huge applications in different industries. Present course introduces the students to the
fundamentals of hydraulic machines. Starting from the operational principle, students will be gradually
familiarized with different concepts like velocity triangle, net head developed, finally leading to the
design of their system. Important topics such as design of pumping system of two dissimilar pumps,
which find practical relevance as well, will also be discussed.

1
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec1-Introduction to hydraulic machines: Classifications and operational principles
1:07:06
2
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec2-Euler equation for turbomachines: Net head developed by the pump/turbines
58:18
3
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec3-Velocity triangles of pumps, effect of inlet swirl on velocity triangles
1:04:48
4
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec4-Pump casing, efficiencies, problems
58:54
5
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec5-H-Q Curve, System resistance Curve
1:05:17
6
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec6-Stodola slip model, problems – I
56:16
7
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec7-Stodola slip model, problems -II
44:00
8
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec8-Stodola slip model, problems – III
26:26
9
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec9-NPSH: Caviation, effect of swirl on the cavitation
34:17
10
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec10-Radial flow pump testing
41:25
11
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec11-Degrees of reaction: velocity triangle
45:01
12
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec12-Radial equlibrium of axial flow machines
57:28
13
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec13-Radial equlibrium of axial flow machines II
15:45
14
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec14-Pumps operation: series and parallel, problems
42:37
15
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec15-Pumps operation: series and parallel, problems-Part 2
24:41
16
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec16-Affinity laws, specific speed
27:42
17
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec17-Affinity laws, specific speed-Part 2
1:00:23
18
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec18-Pumping system design-1
42:33
19
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec19-Pumping system design-2
26:00
20
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec20-Pumping system design-3
25:26
21
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec21-Positive displacement pump, indicator diagram – I
36:03
22
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec22-Positive displacement pump, indicator diagram – II
51:49
23
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec23-Characteristic H-Q curve of positive displacement pump, problems
26:12
24
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec24-Hydraulic Turbine: Classifications
29:33
25
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec25-Impulse Turbine: Pelton wheel – I
37:46
26
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec26-Impulse Turbine: Pelton wheel – II
48:55
27
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec27-Reaction Turbine: Francis Turbine
58:34
28
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec28-Reaction Turbine: Kaplan Turbine
58:24
29
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec29-Degrees of Reaction and Efficiency of Hydraulic Turbine
56:41
30
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec30-Hydraulic Turbine: Specific Speed
28:47
31
PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN-Lec31-Cavitation in Hydraulic Turbine: NPSH
30:17

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PRINCIPLE OF HYDRAULIC MACHINES AND SYSTEM DESIGN
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