課程介紹
高等熱質量傳遞
Advanced Heat and Mass Transfer — 114-2 Core required course (3.0 credits). English-taught.
✦ Course Information
| Course title | 高等熱質量傳遞 / Advanced Heat and Mass Transfer |
|---|---|
| Semester | 114-2 |
| Designated for | Graduate Institute of Chemical Engineering |
| Curriculum Number | ChemE7006 |
| Curriculum Identity Number | 524EM1200 |
| Class | 02 |
| Credits | 3.0 |
| Full / Half Yr. | Half |
| Required / Elective | 必修 (Required) |
| Remarks | 本課程以英語授課。核心課程。初選不開放大學部選修,欲修本課在開學後找老師索授權碼。限碩士班以上。總人數上限:60 人。 |
為確保您我的權利,請尊重智慧財產權及不得非法影印。
Class Section
| Class | Instructor | Time | Location |
|---|---|---|---|
| 02 | 崔宏瑋 | Monday 2 (9:10–10:00) Wednesday 3, 4 (10:20–12:10) |
慶琅廳 |
Course Description
Heat and mass transport are the core of many manufacturing processes, including semiconductor device fabrications, catalyst syntheses, and pharmaceutical productions. This course will introduce the fundamentals of heat and mass transport in chemical engineering as well as the relevant applications.
Course Objective
Firmly establish the fundamental concepts and principles of heat and mass transfer and their advanced applications in chemical process analysis. Enhance problem-solving skills by applying the basics of transport phenomena to various systems of interest. The course will also integrate fluid mechanics to discuss the three types of transport behavior in an integrated manner.
The syllabus is shown as follows:
- Thermal Conductivity
- Shell Energy Balances-Temperature Distributions in Solids and Laminar Flow
- The Equations of Change for Nonisothermal Systems
- Temperature Distributions-with More than One Independent Variable
- Temperature Distributions in Turbulent Flow
- Interphase Transport in Nonisothermal Systems
- Diffusivity
- Concentration Distributions in Solids and Laminar Flow
- Equations of Change for Multicomponent Systems
- Concentration Distributions- with More than One Independent Variable
- Concentration Distributions in Turbulent Flow
- Interphase Transport in Nonisothermal Mixtures
Course Requirement
The course is the core course of graduate program in chemical engineering. This course will involve fluid dynamics, physical chemistry, and engineering mathematics. Students are expected to have prior knowledge of these subjects.
It is recommended that students have taken Advanced Fluid Dynamics course first.
Students are expected to be familiar with the vector and tensor notations provided in Appendix A
- Student Workload (Expected weekly study hours before and/or after class): 6 小時
- Office Hours: 每週一 10:30~11:30(or by appointment via email)
- Designated reading: Bird, R. B., Stewart, W. E., and Lightfoot, E. N. (2002). Transport Phenomena (2nd revised ed.). John Wiley & Sons. Focus: Appendix A, "Notation and Mathematical Background" (Vector and Tensor operations).
References
Bird, R. B., Stewart, W. E., and Lightfoot, E. N. (2002). Transport Phenomena (2nd revised ed.). John Wiley & Sons.
Grading
| No. | Item | Percentage | Description |
|---|---|---|---|
| 1 | Exam 1 | 30% | — |
| 2 | Exam 2 | 35% | — |
| 3 | Final | 35% | — |
(僅供參考)
Progress
| Week | Date | Topic |
|---|---|---|
| No data | ||