能源动力类专业英语
¥28.00定价
作者: 车德勇
出版时间:2011年8月
出版社:中国电力出版社有限公司
- 中国电力出版社有限公司
- 9787512320192
- 175578
- 0047173314-7
- 平装
- 16开
- 2011年8月
- 工学
- 动力工程及工程热物理
- H319.4
- 能源与动力工程
- 本科
内容简介
本书为普通高等教育“十二五”规划教材.全书共8章.前3章为热能与动力工程和建筑环境与设备工程专业的通用内容,分别讲述工程热力学、工程流体力学和传热学这三门基础课的基本概念和理论;第4、5章为热能与动力工程专业课内容,分别讲述火力发电厂锅炉和汽轮机的基本结构和工作原理;第6、7章为建筑环境与设备工程专业课内容,讲述空调用制冷技术和空气调节技术原理及应用;第8章介绍核能及新能源(风能、生物质能、太阳能、水能和地热能)的利用及发展情况。
为了便于读者使用,文中的专业词汇均标记成斜体并加粗,每章后均附有词汇表和阅读材料。阅读材料是该章内容的延伸与补充,为该章主题的扩展知识有助于读者了解和掌握*的发展动态。
本书可作为普通高等院校热能与动力工程专业、建筑环境与设备工程专业本科专业英语教材,也可供能源动力类工程技术人员参考,还可作为研究生相关专业的英语阅读资料.
目录
前言
Chapter 1 Thermodynamics
1.1 Thermodynamics and Energy
1.2 Application Areas of Thermodynamics
1.3 Closed and Open System
1.4 Properties of a System
1.5 State and Equilibrium
1.6 The State Postulate
1.7 Process and Cycle
1.8 The Steady-flow Process
1.9 Forms of Energy
1.10 The First Law of Thermodynamics
1.11 Steady-flow Engineering Devices
1.12 The Second Law of Thermodynamics
Words
Reading Materials
Chapter 2 Fluid Mechanics
2.1 Preliminary Remarks
2.2 Scope of Fluid Mechanics
2.3 The Concept of the Fluid
2.4 Distinction between a Solid and a Fluid
2.5 Distinction between a Gas and a Liquid
2.6 Eulerian and Lagrangian Descriptions
2.7 The Fluid as a Continuum
2.8 Ideal Fluid
2.9 Viscosity
2.10 Types of Flow
2.11 Pathlines Streamlines and Streaklines
2.12 Differential Equation of Continuity
2.13 Continuity in a Pipe or Duct
2.14 Bernoulli Equation and Pressure Variation in Flow
Direction
2.15 Navier-Stokes Equations
Words
Reading Materials
……
Chapter 1 Thermodynamics
1.1 Thermodynamics and Energy
1.2 Application Areas of Thermodynamics
1.3 Closed and Open System
1.4 Properties of a System
1.5 State and Equilibrium
1.6 The State Postulate
1.7 Process and Cycle
1.8 The Steady-flow Process
1.9 Forms of Energy
1.10 The First Law of Thermodynamics
1.11 Steady-flow Engineering Devices
1.12 The Second Law of Thermodynamics
Words
Reading Materials
Chapter 2 Fluid Mechanics
2.1 Preliminary Remarks
2.2 Scope of Fluid Mechanics
2.3 The Concept of the Fluid
2.4 Distinction between a Solid and a Fluid
2.5 Distinction between a Gas and a Liquid
2.6 Eulerian and Lagrangian Descriptions
2.7 The Fluid as a Continuum
2.8 Ideal Fluid
2.9 Viscosity
2.10 Types of Flow
2.11 Pathlines Streamlines and Streaklines
2.12 Differential Equation of Continuity
2.13 Continuity in a Pipe or Duct
2.14 Bernoulli Equation and Pressure Variation in Flow
Direction
2.15 Navier-Stokes Equations
Words
Reading Materials
……