Udemy - The Complete Course of Fluid Mechanics for Engineers 2021

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Udemy - The Complete Course of Fluid Mechanics for Engineers 2021 (Size: 4.2 GB)
  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

Description


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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