GATE Exam » GATE Videos » Mechanical Engineering » Extensive Fluid Mechanics Videos for GATE & ESE – ME | Devendra Singh Negi

Extensive Fluid Mechanics Videos for GATE & ESE – ME | Devendra Singh Negi

Fluid Mechanics is one of the core and vast subjects of GATE & mechanical engineering describes the behavior of water under static and dynamic forms. Fluid Machinery is the perfect approach to understand other subjects like turbomachinery, heat and mass transfer, etc. and thus carries a decent weightage in GATE. The most important topics from Fluid Mechanics are Fluid Kinematics, Fluid Measurement, Hydraulic Machines, Manometry and Buoyancy, Bernoulli’s Equation, Control-Volume Analysis of Mass, Momentum, and Energy, Boundary Layer, etc. Learners can expect an average of 8 to 10 marks from Fluid Mechanics in GATE Paper.

Lecture NumberTopic NameVideo Link
Lecture-1Fluid & Its Properties | Lec – 1Watch now
Lecture-2Fluid & Its Properties | Lec – 2Watch now
Lecture-3Fluid & Its Properties | Lec – 3Watch now
Lecture-4Fluid & Its Properties | Lec – 4Watch now
Lecture-5Fluid & Its Properties | Lec – 5Watch now
Lecture-6Fluid & Its Properties | Lec – 6Watch now
Lecture-7Fluid & Its Properties | Lec – 7Watch now
Lecture-8Fluid & Its Properties | Lec – 8Watch now
Lecture-9Hydrostatic Forces | Lec – 9Watch now
Lecture-10Hydrostatic Forces | Lec – 10Watch now
Lecture-11Hydrostatic Forces | Lec – 11Watch now
Lecture-12Hydrostatic Forces | Lec – 12Watch now
Lecture-13Hydrostatic Forces | Lec – 13Watch now
Lecture-14Hydrostatic Forces (Various Cases-2) | Lec – 14Watch now
Lecture-15Condition of Flotation | Lec – 15Watch now
Lecture-16Condition of Sinking | Lec – 16Watch now
Lecture-17Fluid Mechanics Revision (Part 1) | Lec – 17Watch now
Lecture-18Velocity & AccelerationWatch now
Lecture-19Problems on Velocity & AccelerationWatch now
Lecture-20Material DerivativeWatch now
Lecture-21Types of Fluid FlowWatch now
Lecture-22Problems on Fluid FlowWatch now
Lecture-23Types of Fluid LinesWatch now
Lecture-24Problems on Fluid LinesWatch now
Lecture-25Concept of Discharge & Mass Flow RateWatch now
Lecture-26Average VelocityWatch now
Lecture-27Continuity Equation – IWatch now
Lecture-28Continuity Equation -2Watch now
Lecture-29Problems on Continuity Equation – IWatch now
Lecture-30Problems on Continuity Equation 2Watch now
Lecture-31Problems on Continuity Equation – 3Watch now
Lecture-32Linear Strain RateWatch now
Lecture-33Shear Strain RateWatch now
Lecture-34Angular Velocity VectorWatch now
Lecture-35Problems on Strain Rate & Angular VelocityWatch now
Lecture-36Problems on Fluid KinematicsWatch now
Lecture-37Strain rate Tensor & VorticityWatch now
Lecture-38CirculationWatch now
Lecture-39Problems on Vorticity & CirculationWatch now
Lecture-40Velocity Potential FunctionWatch now
Lecture-41Stream FunctionWatch now
Lecture-42Problems on Velocity Potential & Stream FunctionWatch now
Lecture-43Flow NetWatch now
Lecture-44Problems on Fluid KinematicsWatch now
Lecture-45ESE PYQs ( Conventional Questions )Watch now
Lecture-46ESE & PSUs Special 50 Questions In 50 MinutesWatch now
Lecture-47Problems on Fluid KinematicsWatch now
Lecture-48Venturimeter – 1Watch now
Lecture-49Venturimeter – 2Watch now
Lecture-50Venturimeter – 3Watch now
Lecture-51OrificemeterWatch now
Lecture-52Linear Momentum EquationWatch now
Lecture-53Angular Momentum EquationWatch now
Lecture-54Reynolds NumberWatch now
Lecture-55Fully Developed flowWatch now
Lecture-56Shear stress Distribution & Velocity DistributionWatch now
Lecture-57Discharge, Mass flow rate, Average velocityWatch now
Lecture-58Pressure Drop & Head LossWatch now
Lecture-59Momentum & Kinetic Energy Correction factorsWatch now
Lecture-60Hydraulic Gradient & Total Energy Line – 1Watch now
Lecture-61Hydraulic Gradient & Total Energy Line – 2Watch now
Lecture-62Turbulent Flow | Lec 1 | Turbulent FlowWatch now
Lecture-63Shear Stress & Velocity Distribution | Lec 2 | Turbulent FlowWatch now
Lecture-64Equations for Smooth & Rough Pipes | Lec 3 | Turbulent FlowWatch now
Lecture-65Friction Factor & Moody’s Diagram | Lec 4 | Turbulent FlowWatch now
Lecture-66Basics & Boundary Layer Thickness| Lec 1 | Boundary Layer Theory,Watch now
Lecture-67Reynolds Number & Velocity Distribution | Lec 2 | Boundary Layer Theory,Watch now
Lecture-68Velocity Distribution & Near Wall Shear Stress | Lec 3 | Boundary Layer Theory,Watch now
Lecture-69Displacement Thickness, Definition & Expression | Lec 4 | Boundary Layer TheoryWatch now
Lecture-70Physical Meaning of Displacement Thickness | Lec 5 | Boundary Layer TheoryWatch now
Lecture-71Momentum Thickness, Definition & Expression | Lec 6 | Boundary Layer TheoryWatch now
Lecture-72Momentum Thickness for Various Velocity Distributions & Shape Factor | Lec 7 | Boundary Layer TheoryWatch now
Lecture-73Energy Thickness, Definition & Expression | Lec 8 | Boundary Layer TheoryWatch now
Lecture-74Von Karman Momentum Integral Equation | Lec 9 | Boundary Layer TheoryWatch now
Lecture-75Local Wall Shear Stress | Lec 10 | Boundary Layer TheoryWatch now
Lecture-76Skin Friction Drag Force | Lec 11 | Boundary Layer TheoryWatch now
Lecture-77Prandtl’s Boundary Layer Equations | Lec 12 | Boundary Layer TheoryWatch now
Lecture-78Blasius Equation & Results | Lec 13 | Boundary Layer TheoryWatch now