2024년도 1학기 유체역학 (MECH370-01) 강의계획서

1. 수업정보

학수번호 MECH370 분반 01 학점 3.00
이수구분 전공필수 강좌유형 강의실 강좌 선수과목 MATH200 (미분방정식)
포스테키안 핵심역량
강의시간 월, 수 / 14:00 ~ 15:15 / 제5공학관 강의실 [108/110호] 성적취득 구분 G

2. 강의교수 정보

유동현 이름 유동현 학과(전공) 기계공학과
이메일 주소 dhyou@postech.ac.kr Homepage http://fpe.postech.ac.kr/postech
연구실 기계실험동 201호 전화 054-279-2191
Office Hours

3. 강의목표

This class provides students with an introduction to principal concepts and methods of fluid mechanics. Topics covered in the course include pressure, hydrostatics, and buoy- ancy; open systems and control volume analysis; mass conservation and momentum conservation for moving fluids; viscous fluid flows, flow through pipes; dimensional analysis; boundary layers, and lift and drag on objects. Students will work to formulate the models necessary to study, analyze, and design fluid systems through the application of these concepts, and to develop the problem-solving skills essential to good engineering practice of fluid mechanics in practical applications.

4. 강의선수/수강필수사항

1.Thermodynamics (MECH250).
2.Elementary ordinary differential equation (MATH130).

5. 성적평가

There will be two closed-book midterm exams (40% (20%+ 20%)) and a closed- book final exam (30%). Attendance at regular classes will not be checked. However, three-to-five 10-minute quiz sessions (10%) will be held randomly without a priori notice and a failure taking the quiz will result in reduction of grade points per quiz in lieu of the attendance check (10%). There will be homework sets, but they will not be collected. Instead, about 70% of the problems in the exams and quizzes will be selected from the homework sets. The remaining 10% of your grade will be determined by reports on experiments which will be provided as a part of the schedule of the course.

6. 강의교재

도서명 저자명 출판사 출판년도 ISBN
Fluid Mechanics, 9th edition, SI version Frank M. White and Henry Xue McGraw Hill 2021 1260258319

7. 참고문헌 및 자료

• “Fundamental of Fluid Mechanics” by Bruce R. Munson et al.
• “Fox and McDonald’s Introduction to Fluid Mechanics” by Philip J. Prichard
• “Fluid Flow: A First Course in Fluid Mechanics” by Rolf H. Sabersky et al.

8. 강의진도계획

Topics

• Introduction: Concept of a fluid. Fluid as a continuum, Thermodynamic properties of a fluid, Viscosity, Flow kinematics
• Pressure distribution in a fluid: Pressure and pressure gradient, Hydrostatics, Manome- try, Buoyancy and stability, Rigid-body motion
• Integral relations for a control volume: Basic laws of fluid mechanics, The Reynolds transport theorem, Conservation of mass, The Bernoulli equation, Momentum conservation, Energy conservation
• Differential relations for fluid flow: Acceleration of a fluid, Differential equations of mass conservation, momentum conservation, and energy conservation, Boundary conditions, Stream function, Vorticity, Irrotationality, The Navier-Stokes equations
• Dimensional analysis and similarity: Dimensional homogeneity, Pi theorem, Nondimen- sionalization of the basic equations, Modeling
• Viscous flow in ducts: Reynolds number regimens, Friction factor, Laminar fully developed pipe flow, Turbulence modeling, Turbulent pipe flow, Flow in noncircular ducts, Minor or local losses, Multiple-pipe systems
• Flow past immersed bodies: Reynolds number and geometry effects, Momentum integral estimates, The boundary layer equations, Flat-plate boundary layer, Pressure gradient effects
• Potential flow: Elementary plane flow solutions, Superposition, Plane flow past closed-body shapes, Images

9. 수업운영

Lectures: M 14:00-15:15, W 14:00-15:15 Science Building V, Room 108.
Recitations: To be announced.
Experiments: To be announced.

10. 학습법 소개 및 기타사항

11. 장애학생에 대한 학습지원 사항

- 수강 관련: 문자 통역(청각), 교과목 보조(발달), 노트필기(전 유형) 등

- 시험 관련: 시험시간 연장(필요시 전 유형), 시험지 확대 복사(시각) 등

- 기타 추가 요청사항 발생 시 장애학생지원센터(279-2434)로 요청