Advanced Heat Transfer

上海交通大学硕士研究生课程教学大纲

 

课程基本信息(Course Information(周五8:55-11:40 A-3012-17

课程代码

Course Code

PE6201

*学时

Credit Hours

48

*学分

Credits

   3

*课程名称

Course Name

(中文)高等传热学

(英文)Advanced Heat Transfer

课程性质

(Course Type)

低碳能源方向研究生核心必修课程

Compulsory core graduate course in Low Carbon Energy

授课语言

(Language of Instruction)

英语

English

*开课院系

School

中英国际低碳学院

China-UK Low Carbon College

先修课程

Prerequisite

工程热力学,传热学,流体力学

Thermodynamics, Heat Transfer, Fluid Mechanics

授课教师

Teacher

任涛

Ren Tao

联系方式

(Email)

tao.ren@sjtu.edu.cn

*课程简介(Description

本课程涉及热传递基本原理及其应用,内容包括:导热基本方程,特殊情况下二维和三维稳态导热问题解析解和数值解。非稳态导热问题的解析解和数值解;对流换热基本方程(质量,动量,能量)的推导,对流换热边界层概念,外部流动强制对流换热的边界层求解,内部流动强制对流换热层流关联式的求解,自然对流、沸腾和凝结中的对流换热问题,湍流基本概念及常用的湍流模型;辐射换热基本概念,面辐射和介质辐射换热计算。

*课程简介(Description

This course is about basic principles of heat transfer and their application. Subjects include: heat conduction equations, analytical and numerical multi-dimensional steady-state heat conduction, analytical and numerical solutions for transient heat conduction systems; boundary layer theory for convective heat transfer, free and forced convection, turbulence and turbulent modeling for convection, boiling, and condensation; fundamental of thermal radiation, surface radiation and radiation in participating media.

课程教学大纲(course syllabus

*学习目标

(Learning Outcomes)

经过本课程学习,学生们将:

  1. 理解日常生活和工程实践中的热传递现象的基本原路
  2. 获得热传递问题的解析和数值求解方法和技能
  3. 获得解决能量传递系统中所遇到的问题的能力
  4. 学会如何开展关于传热研究项目并撰写科学项目报告

After successful completion of this class, the students will:

  1. Understand the fundamentals of heat transfer processes occurring in natural and engineered systems.
  2. Be able to apply analytic procedures and numerical tools in the analysis of heat transfer problems.
  3. Have problem solving abilities applied to energy transfer analysis.
  4. Be able to conduct heat transfer related projects and produce written scientific project reports. 

 

*教学内容、进度安排及要求

(Class Schedule

& Requirements)

教学内容

Topics

授课学时

Hours

考核安排

Assignments

教学大纲和课程简介;导热、对流,辐射基本理论和概念

Syllabus and Introduction, fundamentals of conduction, convection and radiation

3h

Assign HW#1

导热基本方程和多维稳态导热问题分析求解方法

Heat conduction equation and multi-dimensional steady state conduction

6h

HW#1 due

非稳态导热分析方法

Transient heat conduction

6h

HW#2 due

导热问题的传统数值求解方法
Conventional numerical methods in heat conduction

6h

HW#2 due

导热问题的机器学习求解方法

Machine learning applied for heat conduction

3h

 

对流换热基本方程

Fundamental equations for heat convection

4h

HW#3 due,

边界层理论和概念,内部和外部层流流动对流换热边界层分析求解方法

Boundary layer theory, External and Internal convective heat transfer

8h

Midterm

Assign Project

HW#4 due

辐射换热概念和基本方程

Fundamentals of thermal radiation.

3h

HW#5 due

面对面以及腔体内辐射换热的计算, 气体介质辐射光谱计算,介质辐射换热的计算(RTE求解和光谱模型)

Radiative heat exchange between surfaces and in enclosures, Gas spectral calculations, Radiative heat transfer in participating media (radiative transfer equation and spectral models)

9h

HW#6 due

 

Project due

 

Final exam

 

*考核方式

(Grading)

6 作业/Homework, 20% 

1 期中考试/Midterm, 20%          

1 期末考试/Final, 20%  

1 课程设计/Project, 40% report 80%+presentation 20%

*教材或参考资料

(Textbooks & Other Materials)

L.M. Jiji, Heat conduction. 3rd Ed. (2009)

L.M. Jiji, Heat convection. 2ed Ed. (2010)

M.F. Modest, Radiative Heat Transfer, 3rd Ed. (2013)

Faghri, Zhang, Howell; Advanced Heat and Mass Transfer; Global Digital Press; 2010

T.L. Bergman, A.S. Lavine, F.P. Incropera and D.P. Dewitt, Fundamentals of Heat and Mass Transfer, 7th Ed. (2011)

其它

More

上课时间,周五上午8:55-11:40 A-301。每周答疑时间:周五下午1:00-2:00A-405。其它时间如需答疑请提前发邮件预约。
Weekly Lecture Hours: Friday, 8:55-11:40 AM, classroom A-301. Weekly Office Hours: Friday, 1:00-2:00pm, Office A-405. Please make an appointment in advance by Email if you cannot make it during my office hours. 

备注

Notes

和课程相关的所有资料将会上传到上海交大在线教学平台(Canvas 系统)。

All the course related materials will be uploaded to Canvas system: https://oc.sjtu.edu.cn/login/canvas

 

授课教师保留根据课程进度和表现来调整评分政策以及教学大纲的权利,一切调整都会提前和学生沟通好。

The instructor reserves the right to change the grading policy and syllabus depending on the overall course progress, but any changes will be informed in advance to students.