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Thermal 工程
概述
CEA CAPA Partner 机构: Universidad Carlos III de 马德里
地点: 马德里,西班牙
Primary Subject Area: Electrical 工程
Other Subject Area: Energy 工程
指令: 英语
课程代码: 13974
Transcript Source: Partner 机构
课程详细信息: 200级
Recommended Semester Credits: 3
联系时间: 42
先决条件: Calculus I, Calculus II, Physics I
描述
Description of contents: programme
This is a basic course of thermodynamics and an introduction to heat transfer.
The program can be divided in 2 main blocks, one about thermodynamics and another about heat transfer.
FIRST PART (THERMODYNAMICS AND CYCLES):
- Review of previous concepts of thermodynamics acquired by the student, thermodynamic properties, T-s diagram of water, incompressible liquid and ideal gas models.
- Mass, energy and entropy balance for closed systems.
- Mass, energy and entropy balance for open systems.
- Equipments under steady state: nozzles, 扩散器, 泵, 压缩机, 涡轮机, open and closed heat exchangers, 和阀门.
-热力发动机. 卡诺循环.
-朗肯循环.
-布雷顿循环.
- Internal combustion engines.
- Inverse 卡诺循环. Refrigeration cycle.
SECOND PART (HEAT TRANSFER):
- Introduction to heat transfer: Fourier's Law, Newton's Law, Stefan-Boltzmann's Law.
- One-dimensional steady state conduction with and without heat generation. Plane wall, cyclindrical and spherical geometries. Thermal resistances.
- Transient conduction.
- Fins: formulation, design and performance analysis. 翅片表面.
This is a basic course of thermodynamics and an introduction to heat transfer.
The program can be divided in 2 main blocks, one about thermodynamics and another about heat transfer.
FIRST PART (THERMODYNAMICS AND CYCLES):
- Review of previous concepts of thermodynamics acquired by the student, thermodynamic properties, T-s diagram of water, incompressible liquid and ideal gas models.
- Mass, energy and entropy balance for closed systems.
- Mass, energy and entropy balance for open systems.
- Equipments under steady state: nozzles, 扩散器, 泵, 压缩机, 涡轮机, open and closed heat exchangers, 和阀门.
-热力发动机. 卡诺循环.
-朗肯循环.
-布雷顿循环.
- Internal combustion engines.
- Inverse 卡诺循环. Refrigeration cycle.
SECOND PART (HEAT TRANSFER):
- Introduction to heat transfer: Fourier's Law, Newton's Law, Stefan-Boltzmann's Law.
- One-dimensional steady state conduction with and without heat generation. Plane wall, cyclindrical and spherical geometries. Thermal resistances.
- Transient conduction.
- Fins: formulation, design and performance analysis. 翅片表面.
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