Academic Year |
2024Year |
School/Graduate School |
School of Engineering |
Lecture Code |
K7503030 |
Subject Classification |
Specialized Education |
Subject Name |
流動論 |
Subject Name (Katakana) |
リュウドウロン |
Subject Name in English |
Fluids Engineering |
Instructor |
SHIMADA MANABU |
Instructor (Katakana) |
シマダ マナブ |
Campus |
Higashi-Hiroshima |
Semester/Term |
3rd-Year, First Semester, 1Term |
Days, Periods, and Classrooms |
(1T) Mon3-4,Tues1-2:ENG 114 |
Lesson Style |
Lecture |
Lesson Style (More Details) |
|
Oral lecture (might be partially or fully changed to online class) |
Credits |
2.0 |
Class Hours/Week |
|
Language of Instruction |
B
:
Japanese/English |
Course Level |
3
:
Undergraduate High-Intermediate
|
Course Area(Area) |
25
:
Science and Technology |
Course Area(Discipline) |
08
:
Chemical Engineering |
Eligible Students |
Undergraduate students of Cluster 3 (Applied Chemistry, Biotechnology and Chemical Engineering), Faculty of Engineering |
Keywords |
momentum transport, basic equations for fluid dynamics, viscous flow, energy loss |
Special Subject for Teacher Education |
|
Special Subject |
|
Class Status within Educational Program (Applicable only to targeted subjects for undergraduate students) | |
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Criterion referenced Evaluation (Applicable only to targeted subjects for undergraduate students) | Program of Chemical Engineering (Abilities and Skills) ・Definite learning of basic chemistry and chemical engineering and cultivation of application ability chemical engineering field |
Class Objectives /Class Outline |
Fluid flow phenomena for mainly viscous fluid will be discussed |
Class Schedule |
lesson 1: Guidance, viscous fluid
lesson 2: Laminar flow, turbulent flow, Reynolds number
lesson 3: Viscosity and momentum transfer
lesson 4: Similarity of momentum transfer to heat/mass transfer
lesson 5: Basic equations for viscous flow and mass conservation
lesson 6: Basic equations for momentum conservation
lesson 7: Solution of isothermal laminar flow (1)
lesson 8: Solution of isothermal laminar flow (2)
lesson 9: Intermediate examination
lesson 10: Boundary layer, turbulent flow and Reynolds stress
lesson 11: Velocity distribution in turbulent flow
lesson 12: Friction factor, energy loss
lesson 13: Balance equation of flow system, Bernoulli equation
lesson 14: Energy loss in pipe flow system (1)
lesson 15: Energy loss in pipe flow system (2), Flow measurement device
lesson 16: Final examination
Quizzes are also given |
Text/Reference Books,etc. |
「輸送現象」(水科篤郎・荻野文丸著、産業図書) |
PC or AV used in Class,etc. |
|
(More Details) |
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Learning techniques to be incorporated |
|
Suggestions on Preparation and Review |
For lessons 1-8, 10-15: Preparation of textbook; review of notebook and quizzes; solving exercises in textbook For lessons 9 and 16: Review of notebook, textbook, and quizzes |
Requirements |
|
Grading Method |
Grading will be determined by the evaluation of the examinations and quizzes on a 100-point scale. A score of 60-points or more will pass. |
Practical Experience |
|
Summary of Practical Experience and Class Contents based on it |
|
Message |
Additional information will be provided when this class is changed to online class. |
Other |
https://www.hiroshima-u.ac.jp/prog/program/syusenkou/haipuro_kou/kagakukougaku |
Please fill in the class improvement questionnaire which is carried out on all classes. Instructors will reflect on your feedback and utilize the information for improving their teaching. |