Goals and objectives | Course Outcomes | |
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1. | To be able to explain about fluid including fluid definition, difference between fluid and solid, continuity and viscosity |
A-1
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2. | To be able to calculate static forces acting on a solid surface immersed in liquid based on hydrostatic pressure and buoyancy |
A-1
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3. | To be able to explain different types of fluid flows including steady/unsteady flow, compressible/incompressible flow, viscous/invisid flows and laminar/turbulent flow. |
A-1
|
4. | To understand the equations of the conservation laws of fluid (continuity equation, Euler’s equation and Bernoulli’s theorem) |
A-1
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5. | To be able to apply the conservation laws of fluid (continuity equation, Euler's equation of motion and Bernoulli's theorem) |
A-1
|
6. | To be able to find non-dimensional parameters by doing dimensional analysis. To be able to calculate forces acting on a solid body or fluid velocity based on the momentum theorem of fluid flow. |
A-1
|
Class schedule | HW assignments (Including preparation and review of the class.) | Amount of Time Required | |
---|---|---|---|
1. | Course introduction and fluid properties: (1) course introduction (授業の概要), (2) definition of fluid (流体の定義), (3) fluid properties (流体の基本的性質) including density (密度), specific gravity (比重), compressibility (圧縮性) and viscosity (粘性) | Read the syllabus description (preparation & review). シラバスの確認(予習・復習) |
30分 |
Consider the difference between fluid and solid (preparation & review). 流体と固体の違いを考える(予習・復習) |
30分 | ||
Learn basic fluid properties such as density, specific gravity, compressibility and viscosity (preparation & review). 流体の基本的性質(密度、比重、圧縮性、粘性)を学ぶ(予習・復習) |
60分 | ||
2. | fluid properties: (1) Newtonian fluid (ニュートン流体), (2) non-Newtonian fluids (非ニュートン流体) (3) surface tension and wetting (表面張力と濡れ性) | Learn the concept of shear stress and strain rate (preparation & review). せん断の変形速度とせん断応力を学ぶ(予習・復習) |
60分 |
Learn the properties of Newtonian fluid and non-Newtonian fluids (preparation & review). ニュートン流体と非ニュートン流体を学ぶ(予習・復習) |
60分 | ||
Learn the surface tension and wetting (preparation & review). 表面張力と濡れ性を学ぶ(予習・復習) |
60分 | ||
3. | hydrostatics: (1) hydrostatic pressure (静水圧), absolute (絶対圧), gauge pressure (ゲージ圧) (2) pressure head (水頭, 圧力ヘッド) (3) manometers (マノメーター) | Learn the hydrostatic pressure, relation between absolute and gauge pressure (preparation & review). 静水圧、絶対圧、ゲージ圧を学ぶ(予習・復習) |
60分 |
Learn the concept of pressure head (preparation & review). 水頭(圧力ヘッド)を学ぶ(予習・復習) |
60分 | ||
Learn different types of manometers for pressure measurement (preparation & review). 圧力計測のためのマノメーターを学ぶ(予習・復習) |
60分 | ||
4. | hydrostatics (1) Pascal’s law (パスカルの原理), (2) pressure distribution (圧力分布), (3) forces acting on a solid surface immersed in liquid (液体中の固体表面に働く力), (4) buoyancy (浮力) (5) Archimedes' principle (アルキメデスの原理) | Lean the pressure distribution in liquid (preparation & review). 液体中での圧力分布を学ぶ(予習・復習) |
60分 |
Learn the forces acting on a solid surface immersed in liquid (preparation & review). 液体中の固体表面に働く力を学ぶ(予習・復習) |
60分 | ||
Learn the concept of Pascal's law, buoyancy and Archimedes's principle (preparation & review). パスカルの原理、浮力、アルキメデスの原理を学ぶ(予習・復習) |
60分 | ||
5. | hydrodynamics: (1) flow types (流れの様式) including steady/unsteady flows (定常/非定常流), compressible/incompressible flows (圧縮/非圧縮流), viscous/invisid flows (粘性/非粘性流), laminar/turbulent flows (層流/乱流), (2) stream/path/streak lines (流線、流跡線、流脈線), (3) flowrate (流量), (4) continuity equation (連続の式) | Learn different types of flows including steady/unsteady flows, compressible/incompressible flows, viscous/invisid flows,
laminar/turbulent flows (preparation & review). 流れの様式(定常/非定常流、圧縮/非圧縮流、粘性/非粘性流、層流/乱流)を学ぶ(予習・復習) |
60分 |
Learn the three different lines: stream line, path line and streak line, and Consider examples of them, respectively (preparation
& review). 流線、流跡線、流脈線を学び、それぞれの例を考える(予習・復習) |
60分 | ||
Learn flowrate and continuity equation (preparation & review). 流量、連続の式を学ぶ(予習・復習) |
60分 | ||
6. | hydrodynamics: (1) continuity equation (連続の式), (2) Euler’s equation of motion for perfect fluid (オイラーの運動方程式) | Learn the continuity equation of a flow (preparation & review). 連続の式を学ぶ(予習・復習) |
60分 |
Learn the one-dimensional Euler's equation of motion for perfect fluid (preparation & review). オイラーの運動方程式を学ぶ(予習・復習) |
120分 | ||
7. | hydrodynamics: (1) Bernoulli’s theorem (ベルヌーイの定理), (2) Torricelli’s law (トリチェリの定理), (3) Pitot tube (ピトー管) | Learn Bernoulli's theorem (preparation & review). ベルヌーイの定理を学ぶ(予習・復習) |
60分 |
Learn Torricelli's law (preparation & review). トリチェリ―の定理を学ぶ(予習・復習) |
60分 | ||
Learn the principle of Pitot tube (preparation & review). ピトー管の原理を学ぶ |
60分 | ||
8. | intermediate examination (中間試験) and the review of the examination (中間試験の解説) | Review the contents learned before the examination (review). 中間試験の準備勉強(復習) |
360分 |
Review the intermediate examination (review). 中間試験の復習(復習) |
60分 | ||
9. | review of the examination and hydrodynamics (1) review of the intermediate examination (中間試験の講評), hydrodynamics: (2) Venturi nozzle (ベンチュリ管) | Review the intermediate examination (review). 中間試験の復習(復習) |
60分 |
Learn the principle and application of Venturi nozzle (preparation & review) ベンチュリ―管の原理と応用を学ぶ(予習・復習) |
120分 | ||
10. | dimensional analysis: (1) basic (基本単位) and derive quantities (組立単位), (2) Buckingham pi-theorem (バッキンガムのパイ定理) | Learn the basic and derived quantities (preparation & review). 基本単位と組立単位を学ぶ(予習・復習) |
60分 |
Learn Buckingham pi-theorem (preparation & review). バッキンガムのパイ定理を学ぶ(予習・復習) |
120分 | ||
11. | dimensional analysis: (1) similarity parameter (相似パラメーター), (2) procedure of dimensional analysis (次元解析の手順), (3) examples (例題) | Learn similarity parameters obtained in dimensional analysis (preparation & review). 次元解析から得られる相似パラメーターを学ぶ(予習・復習) |
60分 |
Learn the procedure of dimensional analysis (preparation & review). 次元解析の手順を学ぶ(予習・復習) |
60分 | ||
Learn examples of dimensional analysis (preparation & review). 次元解析の例題を学ぶ(予習・復習) |
60分 | ||
12. | hydrodynamics: momentum theorem (運動量の法則) | Learn the momentum theorem of fluid flow (preparation & review). 運動量の法則を学ぶ(予習・復習) |
180分 |
13. | hydrodynamics: application of momentum theorem (運動量の法則の応用) to bending pipes (曲がり管) and impinging jet (衝突噴流) | Learn applications of momentum theorem to bending pipes and impinging jet (preparation & review). 運動量の法則の曲がり管と衝突噴流への応用を学ぶ(予習・復習) |
180分 |
14. | final examination: (1) final examination (期末試験), (2) review (試験の講評) (will be done on the scomb (scomb上で実施)) | Review the contents learned before the examination (review). 期末試験の準備勉強(復習) |
360分 |
Review the intermediate examination (review). 期末試験の復習(復習) |
120分 | ||
Total. | - | - | 3000分 |
practice演習 | homework assignments課題レポート | midterm examination中間試験 | final examination期末試験 | Total. | |
---|---|---|---|---|---|
1. | 1% | 5% | 5% | 2% | 13% |
2. | 1% | 5% | 5% | 2% | 13% |
3. | 1% | 5% | 5% | 2% | 13% |
4. | 2% | 5% | 5% | 5% | 17% |
5. | 2% | 5% | 8% | 15% | |
6. | 3% | 10% | 16% | 29% | |
Total. | 10% | 35% | 20% | 35% | - |
ways of feedback | specific contents about "Other" |
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Feedback in the class | Feedback will be provided in lectures and in the scombZ. |
Work experience | Work experience and relevance to the course content if applicable |
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N/A | 該当しない |