課程資訊
課程名稱
流體力學
FLUID MECHANICS 
開課學期
96-2 
授課對象
機械工程學系  
授課教師
潘國隆 
課號
ME2007 
課程識別碼
502E31000 
班次
03 
學分
全/半年
半年 
必/選修
必修 
上課時間
星期二2(9:10~10:00)星期五3,4(10:20~12:10) 
上課地點
新202新404 
備註
本課程以英語授課。本課程以英語授課。本課程以英語授課。本課程以英
限本系所學生(含輔系、雙修生)
總人數上限:65人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/962FluidMech 
課程簡介影片
 
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課程概述

In this course, fundamental concepts of fluid mechanics will be introduced. Specific topics will cover basic properties of fluids, description of fluids at rest and in motion, kinematics of fluid motion, flow analysis using control volumes and differential methods, potential flow, and dimensional analysis and modeling. Furthermore, pipe flow and external flow with boundary layers shall be introduced, with depth being contingent on the time available. Students can study with the aid of various resources such as fluid videos and online materials. 

課程目標
1. Basis properties of
fluids
2. Fluids at rest –
pressure and its effects
3. Kinematics of fluid
motion
4. Fluids in motion –
the Bernoulli equation
5. Flow analysis using
control volumes
6. Flow analysis using
differential methods
7. Dimensional
analysis, modeling, and
similitude
8. Introduction to
specific flows: pipe flow
and external flow past bodies 
課程要求
 
預期每週課後學習時數
 
Office Hours
每週四 15:00~16:00 
指定閱讀
 
參考書目
B. R. Munson, D. F. Young, T. H. Okiishi, Fundamentals of
Fluid Mechanics, 5th Ed., John Wiley & Sons, 2006. 
評量方式
(僅供參考)
   
課程進度
週次
日期
單元主題
Week 1
2/19,2/22  Topic 1: Basic properties of fluids 
Week 2
2/26,2/29  Topic 1; Topic 2: Fluids at rest 
Week 3
3/04,3/07  Topic 2 
Week 4
3/11,3/14  Topic 2 
Week 5
3/18,3/21  Topic 3: Fluids in motion–the Bernoulli equation 
Week 6
3/25,3/28  Topic 3 
Week 7
4/01,4/04  Topic 4: Kinematics of fluid motion 
Week 8
4/08,4/11  Topic 4 
Week 9
4/15,4/18  Topic 4; Midterm exam 
Week 10
4/22,4/25  Topic 4; Topic 5: Flow analysis using control volumes 
Week 11
4/29,5/02  Topic 5 
Week 12
5/06,5/09  Topic 5 
Week 13
5/13,5/16  Topic 6: Flow analysis using differential methods 
Week 14
5/20,5/23  Topic 6 
Week 15
5/27,5/30  Topic 6; Topic 7: Dimensional analysis, modeling, and similitude 
Week 16
6/03,6/06  Topic 7 
Week 17
6/10,6/13  Topic 7; Topic 8: Introduction to pipe flow and external flow past bodies 
Week 18
6/17,6/20  Topic 8; Final exam