圖書信息
出版社: 中國電力出版社; 第1版 (2011年8月1日)
平裝: 238頁
正文語種: 英語, 簡體中文
開本: 16
ISBN: 9787512320192, 7512320191
條形碼: 9787512320192
尺寸: 25.7 x 17.8 x 1 cm
重量: 363 g
內容簡介
《普通高等教育"十二五"規劃教材:能源動力類專業英語》為普通高等教育“十二五”規劃教材。全書共8章。前3章為熱能與動力工程和建築環境與設備工程專業的通用內容,分別講述工程熱力學、工程流體力學和傳熱學這三門基礎課的基本概念和理論;第4、5章為熱能與動力工程專業課內容,分別講述火力發電廠鍋爐和汽輪機的基本結構和工作原理;第6、7章為建築環境與設備工程專業課內容,講述空調用製冷技術和空氣調節技術原理及套用;第8章介紹核能及新能源(風能、生物質能、太陽能、水能和地熱能)的利用及發展情況。為了便於讀者使用,文中的專業辭彙均標記成斜體並加粗,每章後均附有辭彙表和閱讀材料,閱讀材料是該章內容的延伸與補充,為該章主題的擴展知識,有助於讀者了解和掌握最新的發展動態。《普通高等教育"十二五"規劃教材:能源動力類專業英語》可作為普通高等院校熱能與動力工程專業、建築環境與設備工程專業本科專業英語教材。也可供能源動力類工程技術人員參考,還可作為研究生相關專業的英語閱讀資料。
目錄
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
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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
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Chapter 3 Heat Transfer
3.1 Thermodynamics and Heat Transfer
3.2 Applications of Heat Transfer
3.3 Historical Background
3.4 Engineering Heat Transfer
3.5 Modeling Heat Transfer
3.6 Heat and Energy Transfer
3.7 Heat Conduction
3.8 Convection Heat Transfer
3.9 Physical Mechanism of Convection
3.10 Thermal Radiation
3.11 Blackbody Radiation
3.12 The Overall Heat Transfer Coefficient
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Chapter 4 Steam Boiler
4.1 Basic Components and General Working Processes of a Boiler
4.2 Classifications and Types of Boilers
4.3 The Steam Boiler at a Power Station
4.4 Flow Diagram of Steam Production
4.5 Kinds and Compositions of Fuels
4.6 The Heat Balance and Efficiency of the Steam Boiler
4.7 Evaporative Heat absorbing Surfaces
4.8 Functions and Configurations of Superheater and reheater
4.9 Economizers and Air Heaters
4.10 Operating Conditions and Characteristics
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Chapter 5 Steam Turbine and Thermal Power Plant
5.1 Introduction
5.2 A Simple Rankine-cycle Power Plant
5.3 Deviations from the Ideal - Component Efficiencies
5.4 Reheat and Reheat Cycles
5.5 Regeneration and feedwater Heaters
5.6 Classification of Steam Turbines
5.7 Description of Common Types of Turbines
5.8 Methods of Reducing Wheel or Rotor Speed
5.9 Difference between Impulse and Reaction Turbines
5.10 The Main Components of Steam Turbines
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Chapter 6 Refrigeration
6.1 Refrigerators and Heat Pumps
6.2 The Reversed Carnot Cycle ..
6.3 The Ideal Vapor-compression Refrigeration Cycle
6.4 Actual Vapor-compression Refrigeration Cycle
6.5 Selecting the Right Refrigerant
6.6 Heat Pump Systems
6.7 Innovative Vapor-compression Refrigeration Systems
6.8 Liquefaction of Gases
6.9 Gas Refrigeration Cycles
6.10 Absorption Refrigeration Systems
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Chapter 7 Air-conditioning Systems
7.1 Specific and Relative Humidity of Air
7.2 Dew-point Temperature and Wet-bulb Temperatures
7.3 The Psychometric Chart
7.4 Air-conditioning Processes
7.5 Air Conditioning and Environmental Control
7.6 Heat gain, Cooling Load and Heat Extraction Rate
7.7 Central System Components and Classifications
7.8 All-air Systems
7.9 Air and Water Systems
7.10 All-water Systems
7.11 Unitary Systems
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Chapter 8 New Energy
8.1 Wind Energy
8.2 Biomass Energy
8.3 Nuclear Power
8.4 Solar Energy
8.5 Hydropower
8.6 Geothermal Energy
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References