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TERMINAL OBJECTIVE - h1012v3_19
ENABLING OBJECTIVES (Cont.) - h1012v3_20
ENABLING OBJECTIVES (Cont.) - h1012v3_21
CONTINUITY EQUATION - h1012v3_23
Properties of Fluids
Relationship Between Depth and Pressure - h1012v3_25
Relationship Between Depth and Pressure - h1012v3_26
Relationship Between Depth and Pressure - h1012v3_27
Relationship Between Depth and Pressure - h1012v3_28
Pascals Law
Control Volume
Volumetric Flow Rate
Conservation of Mass
Continuity Equation - h1012v3_33
Continuity Equation - h1012v3_34
Continuity Equation - h1012v3_35
Figure 4 "Y" Configuration for Example Problem
Summary - h1012v3_37
Continuity Equation Summary
LAMINAR AND TURBULENT FLOW
Flow Velocity Profiles
Average (Bulk) Velocity
Laminar and Turbulent Flow Summary
BERNOULLIS EQUATION
Simplified Bernoulli Equation
Energy Conversions in Fluid Systems - h1012v3_45
Energy Conversions in Fluid Systems - h1012v3_46
Restrictions on the Simplified Bernoulli Equation
Extended Bernoulli
Application of Bernoullis Equation to a Venturi - h1012v3_49
Application of Bernoullis Equation to a Venturi - h1012v3_50
Application of Bernoullis Equation to a Venturi - h1012v3_51
Bernoullis Equation Summary
HEAD LOSS
Darcys Equation - h1012v3_54
Darcys Equation - h1012v3_55
Minor Losses
TABLE 1 Typical Values
Head Loss Summary
NATURAL CIRCULATION
Conditions Required for Natural Circulation
Flow Rate and Temperature Difference
Natural Circulation Flow Summary
TWO-PHASE FLUID FLOW
Flow Instability
Pressure Spike - h1012v3_65
Pressure Spike - h1012v3_66
Operational Considerations
Two-Phase Fluid Flow Summary
CENTRIFUGAL PUMPS - h1012v3_69
Operating Characteristics of a Centrifugal Pump
Net Positive Suction Head - h1012v3_71
Net Positive Suction Head - h1012v3_72
Net Positive Suction Head - h1012v3_73
System Characteristic Curve
System Use of Multiple Centrifugal Pumps
Centrifugal Pumps in Series
Figure 14 Operating Point for Two Centrifugal Pumps in Series
Centrifugal Pumps Summary
Appendix B Fluid Flow
Figure B-1 Moody Chart
CONCLUDING MATERIAL - h1012v3_82