2 項進行中

115-1 選課時程

進行中

  • 初選第一階段 6/15 – 6/18
  • 初選第二階段 6/22 – 6/25
  • 校際選修 進行中 8/24 – 9/18
  • 初選第三階段 8/31 – 9/3
  • 開學後加退選 進行中 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
選課資源

加入行事曆

選擇訂閱 Google Calendar,或下載通用的 ICS 檔案。

使用 Google Calendar 時,Google 會收到這份課表的公開連結。

流體力學

Fluid Mechanics

學期
115-1
學分
3 學分
當期課號
516125
永久課號
ENME10017
開課單位
機械工程學系、機械工程學系跨域學程(B)外系學生
授課教師
廖英皓
校區
光復
類別
必修
上課時間表
週二
週三
3
10:10–11:00
流體力學
EE132(光復)
7
15:30–16:20
流體力學
EE132(光復)
2 節連堂
8
16:30–17:20

* 根據陽明交大上課時間表所列

概述

General concepts of fluid dynamics, and engineering approaches to solve fluid-related problems

先修科目

Engineering Mathematics

備註

無備註

教學方式

This course will be taught based on self-prepared lecture notes which will be updated weekly and available on E3.

評分方式

Quiz #1 (group): 15% Midterm: 35% Quiz #2 (group): 15% Final Exam: 35% Practice problems will be distributed regularly and these problems are not graded, but quiz problems are based on these pratice problems. Quizzes are "group" test, but midterm and final exam are individual test.

課程大綱

教師未提供此項資料

週次計畫
週次主題
第 1 週

Introduction

2026-09-08(二),2026-09-09(三)
第 2 週

Fluid Statics: Pressure of Fluid, Measurement of Pressure, Hydrostatic Force, Buoyancy

2026-09-15(二),2026-09-16(三)
第 3 週

Fluid Kinematics: Velocity Field, Acceleration Field, Control Volume & System, The Reynolds Transport Theorem

2026-09-22(二),2026-09-23(三)
第 4 週

Fluid Kinematics: Velocity Field, Acceleration Field, Control Volume & System, The Reynolds Transport Theorem The Bernoulli Equation: Newton's 2nd Law, Physical Interpretations of the Bernoulli Equation, Pressure (Static, Dynamic, Stagnation, Total), Application of the Bernoulli Equation

2026-09-29(二),2026-09-30(三)
第 5 週

The Bernoulli Equation: Newton's 2nd Law, Physical Interpretations of the Bernoulli Equation, Pressure (Static, Dynamic, Stagnation, Total), Application of the Bernoulli Equation

2026-10-06(二),2026-10-07(三)
第 6 週

The Bernoulli Equation: Newton's 2nd Law, Physical Interpretations of the Bernoulli Equation, Pressure (Static, Dynamic, Stagnation, Total), Application of the Bernoulli Equation Finite Control Volume Analysis: Continuity Equation, Momentum Equation, Fixed & amp Moving Nondeforming Control Volume, Deforming Control Volume

2026-10-13(二),2026-10-14(三)
第 7 週

Finite Control Volume Analysis: Continuity Equation, Momentum Equation, Fixed & amp Moving Nondeforming Control Volume, Deforming Control Volume 10/15: Quiz #1

2026-10-20(二),2026-10-21(三)
第 8 週

Midterm (10/21) Differential Analysis of Fluid Flow: Fluid Element Kinematics, Mass & Momentum Conservation, Inviscid Flow, Potential Flow, Viscous Flow

2026-10-27(二),2026-10-28(三)
第 9 週

Differential Analysis of Fluid Flow: Fluid Element Kinematics, Mass & Momentum Conservation, Inviscid Flow, Potential Flow, Viscous Flow

2026-11-03(二),2026-11-04(三)
第 10 週

Differential Analysis of Fluid Flow: Fluid Element Kinematics, Mass & Momentum Conservation, Inviscid Flow, Potential Flow, Viscous Flow Dimensional Analsis: Buckingham Pi Theorem, Determination of Pi Terms, Common Dimensionless Groups in Fluid Mechanics, Correlation of Experimental Data, Modeling & Similitude

2026-11-10(二),2026-11-11(三)
第 11 週

Dimensional Analsis: Buckingham Pi Theorem, Determination of Pi Terms, Common Dimensionless Groups in Fluid Mechanics, Correlation of Experimental Data, Modeling & Similitude

2026-11-17(二),2026-11-18(三)
第 12 週

Viscous Flow in Pipes: General Characteristics of Pipe Flow, Fully Developed Flow, Pipe Flow Losses vis Dimensional Analysis

2026-11-24(二),2026-11-25(三)
第 13 週

Viscous Flow in Pipes: General Characteristics of Pipe Flow, Fully Developed Flow, Pipe Flow Losses vis Dimensional Analysis

2026-12-01(二),2026-12-02(三)
第 14 週

Flow over Immersed Bodies: General Characteristics of Extermal Flow, Boundary Layer Characteristics, Drag & amp Lift

2026-12-08(二),2026-12-09(三)
第 15 週

Flow over Immersed Bodies: General Characteristics of Extermal Flow, Boundary Layer Characteristics, Drag & amp Lift 12/10: Quiz #2

2026-12-15(二),2026-12-16(三)
第 16 週

Final Exam (12/16)

2026-12-22(二),2026-12-23(三)
教科書

1. "Fox and McDonald's Introduction to Fluid Mechanics" by John W. Mitchell, 10/e Asia Edition, Wiley 2020. 2. "Munson, Young, and Okiishi's Fundamentals of Fluid Mechanics" by Andrew L. Gerhart, John I. Hochstein, Philip M. Gerhart, 9th edition, Wiley 2020. 3. "Fluid Mechanics" by R. C. Hibbeler, 2nd Edition, Pearson 2021. The textbook listed above is the primary reference for this course, but other references regarding "Fluid Mechanics" are also recommended. Some are available online (E-book) through NYCU library.

Office Hours
地點
Professor: EE473 TAs: EE320
時間
By appointment or after class
聯絡方式
Professor: liaoyh@nycu.edu.tw; ext55119 TAs: ext55176