Skip To Contents

My Page

List of Recent Courses

Only active enrolled courses shown.

※ Shows 10 recent courses.

K-MOOC
K-MOOC CB Course

There are no courses currently in progress.

Go to Course Registration →

There are no courses currently in progress.

Go to Course Registration →
한국어
  • 한국어
  • ENGLISH
Discover Courses
Recommended Courses
      Multilingual settings

      Course Introduction
      강좌소개
      • This course covers incompressible inviscid fluid motion and its aerodynamic effects on aircraft wings, turbomachinery, and wind turbines. It introduces theoretical, experimental, and computational methods for aerodynamic system design. Special sessions will help students understand course content, use software tools, and complete design projects.

      학습목표
      • Students will develop a fundamental understanding of incompressible inviscid flows and aerodynamic forces on engineering systems. They will apply theoretical, experimental, and computational techniques to aerodynamic design. The course aims to equip students with practical skills for analyzing and designing aerodynamic systems efficiently.

      홍보영상
       
       
      이수 및 평가기준
      • 주차별 영상 시청 필수

        구분퀴즈(매주)과제 (2,5,7,12,14주차)중간고사기말고사
        반영비율25% 15%30%30%
          60% 이상 점수 획득 시이수증을 발급받을 수 있습니다.
      Syllabus

      주차

      주차명(주제)

      차시

      차시명(학습내용)

      평가방법

      1

      Aerodynamics Basics: Review of Fluid Variables and Operators

      1-1

      Vector Calculus

      퀴즈

      1-2

      Vorticity and Pressure

      1-3

      Governing Equations: Mass

      Conservation

      2

      Aerodynamics Basics: Governing Equations and Flow Kinematics

      2-1

      Governing Equations: Momentum Principles

      퀴즈, 과제

      2-2

      Euler Equations

      2-3

      Flow Kinematics

      3

      Potential Flow: Definition and Elementary Potential Flows

      3-1

      Governing Equations for Potential Flow

      퀴즈

      3-2

      Elementary Potential Flows

      3-3

      Superposition, Rankine Half Body

      4

      Potential Flow: Kutta-Joukowski Theorem and d'Alembert Paradox

      4-1

      Rankine Half Body, Flow Past a Cylinder

      퀴즈

      4-2

      Kutta-Joukowski Theorem, d’Alembert Paradox

      4-3

      Complex Potential

      5

      Potential Flow: Joukowski Transform and Kutta Condition

      5-1

      Conformal Mapping: Concept

      퀴즈, 과제

      5-2

      Conformal Mapping: Joukowski Transform

      5-3

      Joukowski Transform, Kutta Condition

      6

      Airfoil Theory: Airfoil Characteristics and Vortex Sheet

      6-1

      Kutta Condition, Kelvin’s Circulation Theorem

      퀴즈

      6-2

      Airfoil Theory, Airfoil Nomenclature

      6-3

      Airfoil Characteristics, Vortex Sheet

      7

      Airfoil Theory: Thin Airfoil Theory

      7-1

      Thin Airfoil Theory

      퀴즈, 과제

      7-2

      Symmetric Airfoil

      7-3

      Cambered Airfoil: Fundamental Equation

      중간고사

      8

      Airfoil Theory: Cambered Airfoil and High-Lift Devices

      8-1

      Cambered Airfoil 2: Lift Force

      퀴즈

      8-2

      Cambered Airfoil 3: Aerodynamic Center

      8-3

      Airfoil Design, Flow Separation, High-Lift Devices

      8-4

      XFOIL Tutorial

      퀴즈

      9

      Wing Theory: Downwash and Biot-Savart Law

      9-1

      Finite Wing, Downwash 

      퀴즈

      9-2

      Vortex Filament, Helmholtz Theorem

      9-3

      Biot-Savart Law

      10

      Wing Theory: Lifting Line Theory

      10-1

      Lift Distribution Along the Span

      퀴즈

      10-2

      Prandtl’s Lifting Line Theory: Horseshoe Vortices

      10-3

      Prandtl’s Lifting Line Theory: Fundamental Equation

      11

      Wing Theory: Elliptic Lift Distribution

      11-1

      Downwash and Induced Angle of Attack

      퀴즈

      11-2

      Lift and Induced Drag

      11-3

      Wing Planform Shape

      11-4

      Preliminary Design of a Wind Turbine Blade

      12

      Wing Theory: General Lift Distribution

      12-1

      Formulation of General Lift Distribution

      퀴즈, 과제

      12-2

      Downwash and Induced Angle of Attack

      12-3

      Lift and Induced Drag

      12-4

      Optimization of Wind Turbine Blade

      13

      Wing Theory: Aspect Ratio Effects and Numerical Methods

      13-1

      Effects of Wing Aspect Ratio

      퀴즈

      13-2

      Numerical Methods

      13-3

      Delta Wing

      14

      Viscosity Effects

      14-1

      Friction Drag

      퀴즈, 과제

      14-2

      Flow Separation, Form Drag

      14-3

      Performance Evaluation of the Designed Wind Turbine

      기말고사

      Preview
      Course Operators
      • ○ 소속 : 포항공과대학교 기계공학과

        ○ 이메일 : dhyou@postech.ac.kr

        ○ 학력

        • Ph.D. in Mechanical Engineering, Stanford University
        • M.S. in Scientific Computing and Computational Mathematics, Stanford University

        ○  경력

        • Assistant Professor, Carnegie Mellon University (2009-2013)
        • WCU Professor, Yonsei University (2010)
        • Visiting Professor, Stanford University (2010)
        • Senior Research Scientist, NASA-Stanford Center for Turbulence Research (2004-2008)


      • ○    소속 : 포항공과대학교 기계공학과

        ○    이메일 : ktg1007@postech.ac.kr



      Field Engineering (Mechanical & Metallurgical Engineering)

      Difficulty advanced

      Operating Institute POHANG UNIVERSITY OF SCIENCE AND TECHNOLOGY

      Certificate Issuance

      Week 16 Week

      Learning recognition time 25Hour 11Minute (22Hour 37Minute)

      Course Registration Period 26.04.27 ~ 27.01.08

      Course Duration 26.04.27 ~ 27.01.15

      Phone Number 054-279-8107

      Subtitle language 한국어 Others 1ea

      Course language 한국어(ko)

      Recommended Courses
      Same institution course