An Introduction to Rotorcraft Aerodynamics

A first-principles approach to understanding the physics, design and performance of rotorcraft

4.75 (35 reviews)
Udemy
platform
English
language
Engineering
category
An Introduction to Rotorcraft Aerodynamics
225
students
10.5 hours
content
Dec 2022
last update
$74.99
regular price

What you will learn

Grasp the physics behind the working of a helicopter rotor under a variety of flight conditions

Using models of increasing complexity, derive expressions linking thrust and power of a rotor to flow and geometry variables

Design 'ideal' and 'optimum' rotors using the Blade-Element-Momentum-Theory model

Learn how to estimate important helicopter performance metrics such as climb rates, maximum speed, service ceiling etc

Why take this course?

This is meant to be an exposition of the simple, yet elegant models used to understand the working and performance of rotorcraft like helicopters, autogiros etc. Using first principles, thought experiments and the occasional Hollywood video, learners will understand how to gauge the efficiency of a rotor, and how to predict its performance (even on distant planets!). They will grasp how a rotor operates in climb and how to produce the universal inflow curve. They will gather the necessary tools and techniques to predict the descent rate of a maple seed when it is in an 'autorotative' state. The asymmetries inherent to forward flight will also be covered in detail. Using a hybrid model, they will be learn how to compute the inflow variation across the rotor disk. Students will finally be exposed to the fundamentals of efficient rotor design ('optimum' vs 'ideal' rotors) before an in-depth look into the calculation of typical helicopter performance metrics (maximum speed, service ceiling etc).


The course will cover and use the following three models in a variety of conditions:

(1) Momentum Theory

(2) Blade Element Theory (BET)

(3) Blade Element Momentum Theory (BEMT)


When applicable, lectures will be accompanied with optional Python scripts for interested students to run and extend.


Finally, if you think you'd derive some benefit from this course, but can't afford the price, reach out to me via email and I'll send you a customized free link, no questions asked.

Content

Introduction

Course Overview
Definitions

Momentum Theory

Hover - 1
Hover - 2
Hover - 3
Hover - 4
Profile Power Calculation
Climb/Descent - 1
Climb/Descent - 2
Forward Flight - 1
Forward Flight - 2
Human-Powered Helicopter

Blade Element Theory

BET - 1
BET - 2
BET - 3
Inflow Approximation

Blade Element Momentum Theory

BEMT - 1
BEMT - 2
BEMT - 3
BEMT - 4
Induced Power Losses

Performance

Performance - 1
Performance - 2
Power Sinks

Screenshots

An Introduction to Rotorcraft Aerodynamics - Screenshot_01An Introduction to Rotorcraft Aerodynamics - Screenshot_02An Introduction to Rotorcraft Aerodynamics - Screenshot_03An Introduction to Rotorcraft Aerodynamics - Screenshot_04

Reviews

Bhairavi
June 22, 2023
Hello Seb, Enjoyed the course. I was a beginner in rotordynamics. You have really taught the crust well. Cheers and Regards, Bhairavi
Ben
May 1, 2023
Course material is great, there’s some distracting noise occasionally in the background (barking dogs etc)
Tinotenda
March 3, 2023
I used it to assist my in my 4th year Design project as I was designing a helicopter, from this content I got a better understanding of the helicopter approximation equations.
Muratcan
February 27, 2023
This education series basically helpful and also this course is one of the best starting point for rotorcraft aerodynamic. Course instructor also very kind person...
James
January 4, 2023
The instructor has an obvious passion for the subject matter and does an excellent job breaking down the core concepts.
Abraham
June 22, 2022
Excellent presentation .The thought process and the knowledge on the subject is really amazing and outstanding .I would recommend the course to some of friends .Too.

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Related Topics

4697540
udemy ID
5/21/2022
course created date
1/12/2023
course indexed date
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course submited by