| 1. 2D Airfoils.mp4 | 81.1 MB | ||
| 1. Aerodynamics Software XFOIL.mp4 | 172.2 MB | ||
| 1. Airfoil Performance Background.mp4 | 51.3 MB | ||
| 1. Boundary Layer Performance Method.mp4 | 84.1 MB | ||
| 1. Classification of the Aircrafts.mp4 | 70 MB | ||
| 1. Coordinate Systems.mp4 | 78.2 MB | ||
| 1. Definition of the Word Aerodynamics.mp4 | 99.1 MB | ||
| 1. Flying Principles and Aerostatics Principle.mp4 | 67.5 MB | ||
| 1. What is Transonic Flow.mp4 | 94.2 MB | ||
| 10. Types of shock-induced separation.mp4 | 20.6 MB | ||
| 2. Aerodynamic and Inertial Flying Principles.mp4 | 132.6 MB | ||
| 2. Compressibility Effects for Airfoils.mp4 | 53.7 MB | ||
| 2. Definition of Swept Wing.mp4 | 28.5 MB | ||
| 2. Flight Dynamics Forces and Moments.mp4 | 112.4 MB | ||
| 2. Lift Dependent and Skin Friction Drag Methods.mp4 | 38.8 MB | ||
| 2. Physical Properties of Transonic Fluids.mp4 | 36.3 MB | ||
| 2. Transonic Airfoil Characteristics.mp4 | 44.2 MB | ||
| 3. Advanced Compressibility.mp4 | 33.1 MB | ||
| 3. Airplane Components and Usage.mp4 | 128.1 MB | ||
| 3. Compressibility and Wave Drag.mp4 | 32.5 MB | ||
| 3. General Design Considerations.mp4 | 130.9 MB | ||
| 3. General Information for the Atmosphere.mp4 | 87.3 MB | ||
| 3. Shock Waves on airfoils.mp4 | 92.4 MB | ||
| 3. Swept Wing Flow Separation.mp4 | 39.6 MB | ||
| 4. Aerodynamic Schemes.mp4 | 95.8 MB | ||
| 4. Application of Wing Sweep.mp4 | 76.7 MB | ||
| 4. General Drag Definitions and Prediction.mp4 | 43.8 MB | ||
| 4. Pressure Coefficient.mp4 | 61.7 MB | ||
| 4. Viscosity and Viscous Flows.mp4 | 127.1 MB | ||
| 4. Viscous Flows.mp4 | 45.1 MB | ||
| 5. Air Compressibility and Mach Number.mp4 | 66.1 MB | ||
| 5. Boundary Layers on Airfoils.mp4 | 70.6 MB | ||
| 5. Mach Waves and Shock Waves.mp4 | 82.7 MB | ||
| 5. Swept Wing Design Part 1.mp4 | 85.8 MB | ||
| 5. The Supercritical Airfoil.mp4 | 51.7 MB | ||
| 6. Branches of Aerodynamics.mp4 | 81.5 MB | ||
| 6. Drag Prediction – Near-Field Method.mp4 | 47.5 MB | ||
| 6. Swept Wing Design Part 2.mp4 | 62.9 MB | ||
| 6. Viscous Flow Effects on Airfoils.mp4 | 46.5 MB | ||
| 7. Drag Prediction – Far-Field Method.mp4 | 76.5 MB | ||
| 7. Shock-Induced Separation for Airfoils.mp4 | 102 MB | ||
| 7. Swept Wing Performance.mp4 | 38.8 MB | ||
| 8. Example of Drag Calculation.mp4 | 68 MB | ||
| 8. Military Swept Wing Design.mp4 | 87.3 MB | ||
| 9. Example of Calculation of Shock-Induced Separation.mp4 | 33.9 MB | ||
| Bonus Resources.txt | 409.6 B | ||
| Get Bonus Downloads Here.url | 204.8 B | ||
| ▲ 47 total files | |||
Aerospace Engineering: The Complete Aerodynamics Course
https://FreeCourseWeb.com
Published 12/2023
Created by Petar Dimov
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English | Duration: 45 Lectures ( 7h 39m ) | Size: 3.2 GB
Unlocking Flight Dynamics: Mastering Transonic Aerodynamics and Airfoil Design
What you'll learn
Transonic Aerodynamics Mastery: Understand transonic aerodynamics for aircraft and jets, exploring unique challenges in high-speed flight.
Advanced Air Effects Expertise: Dive deep into air compressibility and viscosity, grasping their impact on aircraft and Formula One cars.
Practical Airfoil Design: Acquire hands-on skills using aerodynamics software for designing functional airfoils, essential for aerospace employment.
Comprehensive Advanced Aerodynamics: Explore advanced concepts in transonic flight, covering pressure coefficient, shock waves, and critical elements for e
Requirements
No prerequisites or prior experience are required to enroll in "Aerospace Engineering: The Complete Aerodynamics Course." This course is designed to accommodate learners of all levels, including beginners with no background in engineering. Whether you're an aspiring aerospace professional or someone interested in aerodynamics for personal enrichment, the content is accessible and structured to guide you through the learning journey. Recommended but Not Required: Basic understanding of physics concepts. Familiarity with mathematical principles (algebra and trigonometry). Tools and Equipment: Access to a computer with an internet connection. Software requirements, if any, will be introduced and explained during the course. By keeping the prerequisites minimal, the course aims to lower barriers for beginners and make aerospace engineering and aerodynamics education accessible to a broader audience. The instructor will provide support for learners at every step, ensuring a smooth and enjoyable learning experience for all participants.
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