A basic course starting from high school physics & mathematics, towards understanding fluid mechanics basis, material & energy conservation laws, and deriving Navier-Stokes Equations including heat and mass transfer modeling. This Online Live Course is an opportunity for all engineers, and experts in fundamental science and biomedical engineering towards conceptual and mathematical modeling of their cases studies. In particular it can be a very helpful course for learning practical CFD Simulation. Registration Form: https://www.world-academies.com/fluid-mechanics-heat-and-mass-transport-phenomena/
Course Content
Lecture 1: Mass & Energy Balance in Nature & Industrial Process: General Concepts & Modeling
Lecture 2: From Basic Newtonian Second Law F=m*a Towards Fluid Mechanics Modeling.
Lecture 3: Mass Conservation Law and Continuity Equation for Fluid Flows.
Lecture 4: Energy Conservation Law and Momentum Balance
Lecture 5: Deriving Navier-Stokes Equations form Base for Different Practical Case Studies
Lecture 6: Full Navier-Stokes Equations for Modeling Natural Phenomena & Technological Process.
Lecture 7: Heat Conduction Transport Mechanism.
Lecture 8: Convective Heat Transfer (Coupled Fluid Flow and Heat Transfer)
Lecture 9: Mass Transfer, Diffusion and Convective Transport Mechanisms
Lecture 10: Practical Examples of Mass Transfer
Lecture 11: Compressible Flows, Combined Thermodynamic Heat and Mass Transfer
Lecture 12: Exact Solutions & Numerical CFD Simulations of Fluid Flow & Heat Transfer
Lecture 13: An Overview on Empirical Modeling for Mechanical Engineering Calculations and Design (Relationships of Euler, Bernoulli, and Navier-Stokes Approaches for Pipelines, Pumps and Turbines Shaft Works, Internal and External Flows)
Lecture 14: Turbulent Flows, Concepts & Modeling (RANS, K-W & K-Epsilon, LES).
Selected references discussed during this course: Transport Phenomena (Bird, including fluid mechanics, heat and mass transfer), Heat Transfer Holman, Fluid Mechanics Cengel, CFD Versteeg.
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