| 1. Flow Measurement through (Venturi, Flow Nozzle, Orifice), Selection Factors.mp4 | 98.7 MB | ||
| 1. Flow Measurement through (Venturi, Flow Nozzle, Orifice), Selection Factors.srt | 25.8 KB | ||
| 1. Fluid Flow Rates, Flow Rates, Continuity Equation, Question Related to Flow Rate.mp4 | 98.8 MB | ||
| 1. Fluid Flow Rates, Flow Rates, Continuity Equation, Question Related to Flow Rate.srt | 28.7 KB | ||
| 1. Fluid Pressure and Hydrostatic Pressure, Calculation of Specific Gravity.mp4 | 103.6 MB | ||
| 1. Fluid Pressure and Hydrostatic Pressure, Calculation of Specific Gravity.srt | 31.4 KB | ||
| 1. General Energy Equation,Mechanical Energy and Efficiency, Nomenclature of Energy.mp4 | 143.2 MB | ||
| 1. General Energy Equation,Mechanical Energy and Efficiency, Nomenclature of Energy.srt | 37.3 KB | ||
| 1. Introduction to Fluid Mechanics, Applications,Importance of Dimensions and Units.mp4 | 84.2 MB | ||
| 1. Introduction to Fluid Mechanics, Applications,Importance of Dimensions and Units.srt | 22.3 KB | ||
| 1. Minor losses, Looses Due to Sudden Enlargements and Numerical.mp4 | 179.3 MB | ||
| 1. Minor losses, Looses Due to Sudden Enlargements and Numerical.srt | 40.1 KB | ||
| 1. Nature of Fluids (The no Slip Condition in Fluid Dynamics).mp4 | 47.2 MB | ||
| 1. Nature of Fluids (The no Slip Condition in Fluid Dynamics).srt | 13.7 KB | ||
| 1. Positive Displacement Pumps, Reciprocating Pumps, Rotary Pump.mp4 | 68.1 MB | ||
| 1. Positive Displacement Pumps, Reciprocating Pumps, Rotary Pump.srt | 20.6 KB | ||
| 1. Reynolds Number and Hydraulic Radius for closed non circular cross sections.mp4 | 84.6 MB | ||
| 1. Reynolds Number and Hydraulic Radius for closed non circular cross sections.srt | 24.2 KB | ||
| 1.1 APPENDIX B Properties of common liquids.pdf | 497.2 KB | ||
| 1.1 Appendices (Pipe and Tubes Dimension).pdf | 704.1 KB | ||
| 1.1 Fluid Mechanics by Yunus A. Cengel, John M. Cimbala.pdf | 94.7 MB | ||
| 1.1 Pump Types.pdf | 584.5 KB | ||
| 1.1 Section 2.pdf | 769.6 KB | ||
| 1.1 Section 4.pdf | 2.1 MB | ||
| 1.1 Section 7.pdf | 1.8 MB | ||
| 1.1 Section 8.pdf | 1.3 MB | ||
| 1.2 Appendix C-Typical Properties of Lubricating Oil.pdf | 611.3 KB | ||
| 1.2 Fundamentals of Fluid Mechanics, 6th Edition By Munson textbook coloured.pdf | 17.3 MB | ||
| 1.2 Gas-Constant-R.pdf | 271.5 KB | ||
| 1.2 Section 9.pdf | 1 MB | ||
| 1.3 Appendix E Properties of Air.pdf | 1.9 MB | ||
| 1.3 PROPERTIES-OF-AREAS.pdf | 660 KB | ||
| 1.3 Section 1.pdf | 1 MB | ||
| 1.4 APPENDIX-D-Variation-of-Viscosity-with-Temperature.pdf | 1.2 MB | ||
| 1.4 PROPERTIES-OF-SOLIDS.pdf | 727.9 KB | ||
| 1.5 Section 5.pdf | 923.3 KB | ||
| 1.5 Section 6.pdf | 1.8 MB | ||
| 1.6 Table 8.2 Pipe Wall Roughness.pdf | 477.2 KB | ||
| 1.7 Table 8.2 Pipe Wall Roughnessb.pdf | 477.2 KB | ||
| 1.8 TABLE-K.-1-Conversion-factors.pdf | 1.3 MB | ||
| 10. Complex Problem related to Bernoulli’s Equation.mp4 | 46.7 MB | ||
| 10. Complex Problem related to Bernoulli’s Equation.srt | 9.7 KB | ||
| 2. All type of Commercially Available Pipe and Tubing, Pipe Selection Aid.mp4 | 168.5 MB | ||
| 2. All type of Commercially Available Pipe and Tubing, Pipe Selection Aid.srt | 31.5 KB | ||
| 2. Calculate energy loss due to Sudden enlargements.mp4 | 19.4 MB | ||
| 2. Calculate energy loss due to Sudden enlargements.srt | 7 KB | ||
| 2. Dimensions, Dimensional Homogeneity and Unity, Example Problem.mp4 | 85.4 MB | ||
| 2. Dimensions, Dimensional Homogeneity and Unity, Example Problem.srt | 28.1 KB | ||
| 2. Kinetic Pump,SelfPriming Pump,Centrifugal Pump,Affinity Law for Centrifugal pump.mp4 | 72.5 MB | ||
| 2. Kinetic Pump,SelfPriming Pump,Centrifugal Pump,Affinity Law for Centrifugal pump.srt | 18.7 KB | ||
| 2. Manometry (Piezometer, U tube manometer, Differential Monometer).mp4 | 95.9 MB | ||
| 2. Manometry (Piezometer, U tube manometer, Differential Monometer).srt | 33.5 KB | ||
| 2. Problems Related to Energy Equation(Pumps, Fluid Motors, Fluid Friction, Valves).mp4 | 108.1 MB | ||
| 2. Problems Related to Energy Equation(Pumps, Fluid Motors, Fluid Friction, Valves).srt | 24.3 KB | ||
| 2. Shear Stress in Moving Fluid (shear stress is proportional to strain rate).mp4 | 69.5 MB | ||
| 2. Shear Stress in Moving Fluid (shear stress is proportional to strain rate).srt | 22.2 KB | ||
| 2. Solving Problems using Moody’s Chart.mp4 | 147 MB | ||
| 2. Solving Problems using Moody’s Chart.srt | 37.7 KB | ||
| 2. Variable Area Flow Meters, Rotameter, Flow Rate and Velocity Measurements.mp4 | 60.2 MB | ||
| 2. Variable Area Flow Meters, Rotameter, Flow Rate and Velocity Measurements.srt | 10.7 KB | ||
| 3. Buoyancy, Steps for solving Buoyancy Problems, Question related to Buoyancy.mp4 | 101.4 MB | ||
| 3. Buoyancy, Steps for solving Buoyancy Problems, Question related to Buoyancy.srt | 31.6 KB | ||
| 3. Exit Loss and Gradual Enlargement and Numericals related to these topics.mp4 | 85 MB | ||
| 3. Exit Loss and Gradual Enlargement and Numericals related to these topics.srt | 26.8 KB | ||
| 3. Flow Measurement through Weirs, Rectangle Notch, Contracted Weir, Triangle Weir.mp4 | 39.2 MB | ||
| 3. Flow Measurement through Weirs, Rectangle Notch, Contracted Weir, Triangle Weir.srt | 12.3 KB | ||
| 3. Numerical using Affinity Law, Manufacture’s data for centrifugal pumps.mp4 | 77.5 MB | ||
| 3. Numerical using Affinity Law, Manufacture’s data for centrifugal pumps.srt | 16.5 KB | ||
| 3. Power Required and Mechanical Efficiency of Pumps, Numerical related to pumps.mp4 | 54 MB | ||
| 3. Power Required and Mechanical Efficiency of Pumps, Numerical related to pumps.srt | 13.8 KB | ||
| 3. Problem Related to Dimensional Analysis, Dimensionless Numbers.mp4 | 40.4 MB | ||
| 3. Problem Related to Dimensional Analysis, Dimensionless Numbers.srt | 12.1 KB | ||
| 3. Problem related to the calculation of Reynolds Number for non-circular pipes.mp4 | 65.8 MB | ||
| 3. Problem related to the calculation of Reynolds Number for non-circular pipes.srt | 20.9 KB | ||
| 3. Problems to Calculate Volume Flow Rate and Pipe and Tube Size from tables..mp4 | 87.8 MB | ||
| 3. Problems to Calculate Volume Flow Rate and Pipe and Tube Size from tables..srt | 16.6 KB | ||
| 3. Viscosity, Fluid Types, Shear Thickening Fluids and Shear Thinning Fluid.mp4 | 93.3 MB | ||
| 3. Viscosity, Fluid Types, Shear Thickening Fluids and Shear Thinning Fluid.srt | 28 KB | ||
| 4. Bernoulli’s Equation, Interpretation and Restriction on Bernoulli’s Equation.mp4 | 58.6 MB | ||
| 4. Bernoulli’s Equation, Interpretation and Restriction on Bernoulli’s Equation.srt | 18.2 KB | ||
| 4. Effect of Impeller Size, power Efficiency, Cavitation,Vapor Pressure NPSH Margin.mp4 | 123.6 MB | ||
| 4. Effect of Impeller Size, power Efficiency, Cavitation,Vapor Pressure NPSH Margin.srt | 25 KB | ||
| 4. Friction Loss in non-circular cross section, Numerical Related to Friction loss.mp4 | 93.6 MB | ||
| 4. Friction Loss in non-circular cross section, Numerical Related to Friction loss.srt | 25.3 KB | ||
| 4. Measure of Fluid Density, Specific WeightSpecific Gravity and relation bw them.mp4 | 27.3 MB | ||
| 4. Measure of Fluid Density, Specific WeightSpecific Gravity and relation bw them.srt | 7.9 KB | ||
| 4. Problem related to Mechanical Efficiency of the Pump.mp4 | 61.5 MB | ||
| 4. Problem related to Mechanical Efficiency of the Pump.srt | 16.9 KB | ||
| 4. Problems Related to Newton Law of Viscosity and calculation of Shear Stresses.mp4 | 69.1 MB | ||
| 4. Problems Related to Newton Law of Viscosity and calculation of Shear Stresses.srt | 21.7 KB | ||
| 4. Problems related to Buoyancy.mp4 | 56 MB | ||
| 4. Problems related to Buoyancy.srt | 16.4 KB | ||
| 4. Sudden Contraction, Calculation of energy loss due to sudden contraction.mp4 | 51.6 MB | ||
| 4. Sudden Contraction, Calculation of energy loss due to sudden contraction.srt | 12.6 KB | ||
| 5. Energy Loss by Friction,Darcy’s Equation, Friction Loss in Laminar and Turbulent.mp4 | 121 MB | ||
| 5. Energy Loss by Friction,Darcy’s Equation, Friction Loss in Laminar and Turbulent.srt | 29.1 KB | ||
| 5. Gradual Contraction, Entrance Loss, Calculation of energy loss due to Entrance.mp4 | 68.3 MB | ||
| 5. Gradual Contraction, Entrance Loss, Calculation of energy loss due to Entrance.srt | 18.4 KB | ||
| 5. Power Delivered and Mechanical Efficiency of Fluid Systems with solve Numerical.mp4 | 62.2 MB | ||
| 5. Power Delivered and Mechanical Efficiency of Fluid Systems with solve Numerical.srt | 16.8 KB | ||
| 5. Problems Related to Bernoulli’s Equation.mp4 | 39.6 MB | ||
| 5. Problems Related to Bernoulli’s Equation.srt | 10.7 KB | ||
| 5. Problems Related to Fluid Analysis, Classification of Fluids.mp4 | 60.5 MB | ||
| 5. Problems Related to Fluid Analysis, Classification of Fluids.srt | 17.1 KB | ||
| 5. Reynolds Number, Calculation of Reynolds Number, Velocity Profiles.mp4 | 85.4 MB | ||
| 5. Reynolds Number, Calculation of Reynolds Number, Velocity Profiles.srt | 27.6 KB | ||
| 6. Calculation of volumetric flow rate through the nozzle using Bernoulli.mp4 | 88.9 MB | ||
| 6. Calculation of volumetric flow rate through the nozzle using Bernoulli.srt | 23 KB | ||
| 6. Minor Losses and Resistant Coefficient through Valves and Fittings.mp4 | 110.2 MB | ||
| 6. Minor Losses and Resistant Coefficient through Valves and Fittings.srt | 29.4 KB | ||
| 6. Problems Related to Reynold, Bingham & Nusselt numbers.mp4 | 54.1 MB | ||
| 6. Problems Related to Reynold, Bingham & Nusselt numbers.srt | 22.5 KB | ||
| 7. Application of Bernoulli’s Equation (Tanks, Reservoirs and Nozzles ).mp4 | 162 MB | ||
| 7. Application of Bernoulli’s Equation (Tanks, Reservoirs and Nozzles ).srt | 37.4 KB | ||
| 7. Numericals for the Calculation of all the Energy Looses.mp4 | 106 MB | ||
| 7. Numericals for the Calculation of all the Energy Looses.srt | 28.2 KB | ||
| 8. Calculation of volumetric flow rate in Venturi Meter, Torricelli’s Theorem.mp4 | 111 MB | ||
| 8. Calculation of volumetric flow rate in Venturi Meter, Torricelli’s Theorem.srt | 29 KB | ||
| 8. Continue to Previous Problems.mp4 | 62 MB | ||
| 8. Continue to Previous Problems.srt | 14.8 KB | ||
| 9. Problems related to Torricelli’s Theorem.mp4 | 48.8 MB | ||
| 9. Problems related to Torricelli’s Theorem.srt | 12.7 KB | ||
| Bonus Resources.txt | 307.2 B | ||
| Get Bonus Downloads Here.url | 204.8 B | ||
| ▲ 124 total files | |||
The Complete Course of Fluid Mechanics for Engineers 2021
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 50 lectures (15h 20m) | Size: 3.81 GB
A very detailed Course for understanding almost every concept of Fluid Mechanics with solving Practice Problems
What you'll learn:
Understand all the basic concepts of fluid mechanics
Understand the dimensions and units for dimensional analysis
Know how calculate the dimensionless numbers (Reynolds , Bingham & Nusselt Number)
Calculate the fluid mass, weight and density and the relation between them
Understand the classification of fluids (Internal and External, Compressible and Incompressible, Laminar and Turbulent, Steady and Unsteady)
Continuity, Darcy's and Bernoulli's Equations and solve practice problems related to these equations
Manometry (Piezometer, U tube manometer, Differential Monometer) for fluid pressure calculation
Understand the Open Channel Flow Measurement (Weirs, Rectangle Notch, Contracted Weir, Triangle Weir)
Calculate energy loses in moving fluid for friction and for many other reasons
Understand how to use Moody’s chart and solve practice problems
And all the other concepts that are important in the course Fluid Mechanics as we cannot discuss all of them here you can find them in course description
Requirements
Basic Knowledge of Physics and Chemistry
Description
This course aims to introduce you to the fundamentals of fluid mechanics and its importance and application in process engineering like (Civil Engineering, Mechanical Engineering, and Chemical Engineering). The focus will be on solving fluid flow problems and the design of pipelines and equipment for fluid transport. Don’t worry if you find this course difficult or just start this course this is very detailed 15 Hours Course which starts from very basic level and can make you expert in this course at your home.
So you can definitely prepare for your Fluid Mechanics Exams and surely can score the highest grades in your class.
https://TutSala.com
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