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Chapter 1 Introduction to Machinery Principles
1.1 Electrical Machines, Transformers, and Daily Lite
1.2 Rotational Motion, Newton's Law, and Power Relationships Angular Position θ / Angular Velocity ω / Angular Acceleration α / Torque τ / Newton's Law of Rotation / Work W/Power P
1.3 The Magnetic Field
Production of a Magnetic Field / Magnetic Circuits / Magnetic Behavior of Ferromagnetic Materials / Energy Losses in a Ferromagnetic Core
1.4 Faraday's Law——Induced Voltage from a Time—Changing Magnetic Field
1.5 Production of Induced Force on a Wire
1.6 Induced Voltage on a Conductor Moving in a Magnetic Field
1.7 Real, Reactive, and Apparent Power in Single—Phase AC Circuits Alternative Forms of the Power Equations / Complex Power / The Relationships between Impedance Angle, Current Angle, and Power / The Power Triangle
1.8 Summary
Questions
Problems
References
Chapter 2 Transformers
2.1 Why Transformers Are Important to Modern Life
2.2 Types and Construction of Transformers
2.3 The Ideal Transformer
Power in an Ideal Transformer/Impedance Transformation through a Transformer / Analysis of Circuits Containing Ideal Transformers
2.4 Theory of Operation of Real Single—Phase Transformers The Voltage Ratio across a Transformer / The Magnetization Current in a Real Transformer / The Current Ratio on a Transformer and the Dot Convention
2.5 The Equivalent Circuit of a Transformer The Exact Equivalent Circuit of a Real Transformer / Approximate Equivalent Circuits of a Transformer / Determining the Values of Components in the Transformer Model
2.6 The Per—Unit System of Measurements
2.7 Transformer Voltage Regulation and Efficiency The Transformer Phasor Diagram / Transformer Efficiency
2.8 Transformer Taps and Voltage Regulation
2.9 The Autotransformer
Voltage and Current Relationships in an Autotransformer / The Apparent Power Rating Advantage of Autotransformers / The Internal Impedance of an Autotransformer
2.10 Three—Phase Transformers
Three—Phase Transformer Connections / The Per— Unit System for Three—Phase Transformers
2.11 Transformer Ratings and Related Problems
The Voltage and Frequency Ratings of a Transformer / The Apparent Power Rating of a Transformer / The Problem of Current Inrush / The Transformer Nameplate
2.12 Instrument Transformers
2.13 Summary
Questions
Problems
References
Chapter 3 AC Machinery Fundamentals
3.1 A Simple Loop in a Uniform Magnetic Field The Voltage Induced in a Simple Rotating Loop / The Torque Induced in a Current—Carrying Loop
3.2 The Rotating Magnetic Field Proof of the Rotating Magnetic Field Concept / The Relationship between Electrical Frequency and the Speed of Magnetic Field Rotation / Reversing the Direction of Magnetic Field Rotation
3.3 Magnetomotive Force and Flux Distribution on AC Machines
3.4 Induced Voltage in AC Machines
The Induced Voltage in a Coil on a Two—Pole Stator / The Induced Voltage in a Three—Phase Set of Coils / The RMS Voltage in a Three—Phase Stator
3.5 Induced Torque in an AC Machine
3.6 Winding Insulation in an AC Machine
3.7 AC Machine Power Flows and Losses
The Losses in AC Machines / The Power—Flow Diagram
3.8 Voltage Regulation and Speed Regulation
3.9 Summary
Questions
Problems
References
Chapter 4 Synchronous Generators and Motors
4.1 Synchronous Generator Construction
4.2 The Speed of Rotation of a Synchronous Generator
4.3 The Internal Generated Voltage of a Synchronous Generator
4.4 The Equivalent Circuit of a Synchronous Generator
4.5 The Phasor Diagram of a Synchronous Generator
4.6 Power and Torque in Synchronous Generators
4.7 Measuring Synchronous Generator Model Parameters
The Short—Circuit Ratio
4.8 Synchronous Generator Ratings
The Voltage, Speed, and Frequency Ratings / Apparent Power and Power—Factor Ratings / Synchronous Generator Capability Curves / Short—Time Operation and Service Factor
4.9 Basic Principles of Motor Operation
The Equivalent Circuit of a Synchronous Motor / The Synchronous Motar from a Magnetic Field Perspective
4.10 Steady—State Synchronous Motor Operation
The Synchronous Motor Torque—Speed Characteristic Curve / The Effect of Load Changes on a Synchronous Motor / The Effect of Field Current Changes on a Synchronous Motor / The Synchronous Motor and Power—Factor Correction / The Synchronous Capacitor or Synchronous Condenser
4.11 Starting Synchronous Motors
Motor Starting by Reducing Electrical Frequency / Motor Starting with an External Prime Mover / Motor Starting by Using Amortisseur Windings / The Effect of Amortisseur Windings on Motor Stability
4.12 Synchronous Generators and Synchronous Motors
4.13 Synchronous Motor Ratings
4.14 Summary
Questions
Problems
References
Chapter 5 Induction Motors
5.1 Induction Motor Construction
5.2 Basic Induction Motor Concepts
The Development of Induced Torque in an Induction Motor / The Concept of Rotor Slip / The Electrical Frequency on the Rotor
5.3 The Equivalent Circuit of an Induction Motor
The Transformer Model of an Induction Motor / The Rotor Circuit Model / The Final Equivalent Circuit
5.4 Power and Torque in Induction Motors
Losses and the Power—Flow Diagram / Power and Torque in an Induction Motor / Separating the Rotor Copper Losses and the Power Converted in an Induction Motor's Equivalent Circuit
5.5 Induction Motor Torque—Speed Characteristics
Induced Torque from a Physical Standpoint/The Derivation of the Induction Motor Induced—Torque Equation / Comments on the Induction Motor Torque—Speed Curve / Maximum (Pullout) Torque in an Induction Motor
5.6 Variations in Induction Motor Torque—Speed Characteristics
Control of Motor Characteristics by Cage Rotor Design / Deep—Bar and Double—Cage Rotor Designs / Induction Motor Design Classes
5.7 Trends in Induction Motor Design
5.8 Starting Induction Motors
Induction Motor Starting Circuits
5.9 Speed Control of Induction Motors
Induction Motor Speed Control by Pole Changing / Speed Control by Changing the Line Frequency / Speed Control by Changing the Line Voltage / Speed Control by Changing the Rotor Resistance
5.10 Solid—State Induction Motor Drives
Frequency (Speed) Adjustment / A Choice of Voltage and Frequency Patterns / Independently Adjustable Acceleration and Deceleration Ramps / Motor Protection
5.11 Determining Circuit Model Parameters
The No—Load Test / The DC Test for Stator Resistance / The Locked—Rotor Test
5.12 The Induction Generator
The Induction Generator Operating Alone / Induction Generator Applications
5.13 Induction Motor Ratings
5.14 Summary
Questions
Problems
References
……
Chapter 6 DC Machinery Fundamentals
Chapter 7 DC Motors and Generators
Chapter 8 Single—Phase and Special—Purpose Motors
Appendix A Tables of Constants and Conversion Factors
Appendix B Glossary
《电机原理及驱动:电机学基础(第5版)》为了便于读者理解,编译者增加了“词汇”和“导读”部分。在“词汇”部分,侧重点是专业词汇,给出了相对应的汉语术语。尽管穿插在书中各节列出了一些词汇,但是,为了读者查阅方便,在最后附录中,还按字母顺序列出了总的汉英对照词汇表。《电机原理及驱动:电机学基础(第5版)》可以作为高等学校电气工程和自动化专业本科生的专业基础课双语教材和研究生教材,也可以作为电气工程和自动化领域工程技术人员的技术参考书。
作者:(美国)查普曼(Stephen J.Chapman) 译者:满永奎
《电机原理及驱动:电机学基础(第4版)》可供各大专院校作为教材使用,也可供从事相关工作的人员作为参考用书使用。
第2版前言第1版前言第1章 土方工程1.1 土的分类与工程性质1.2 场地平整、土方量计算与土方调配1.3 基坑土方开挖准备与降排水1.4 基坑边坡与坑壁支护1.5 土方工程的机械化施工复习思考题第2...
第一篇 个人礼仪1 讲究礼貌 语言文明2 规范姿势 举止优雅3 服饰得体 注重形象第二篇 家庭礼仪1 家庭和睦 尊重长辈2 情同手足 有爱同辈第三篇 校园礼仪1 尊重师长 虚心学习2 团结同学 共同进...
前言第一章 现代设计和现代设计教育现代设计的发展现代设计教育第二章 现代设计的萌芽与“工艺美术”运动工业革命初期的设计发展状况英国“工艺美术”运动第三章 “新艺术”运动“新艺术”运动的背景法国的“新艺...
Chapter 1 Introduction to Machinery Principles
Chapter 2 Transformers
Chapter 3 AC Machinery Fundamentals
Chapter 4 Synchronous Generators and Motors
Chapter 5 Induction Motors
Chapter 6 DC Machinery Fundamentals
Chapter 7 DC Motors and Generators
Chapter 8 Single-Phase and Special-Purpose Motors
Appendix A Three-Phase Circuits
Appendix B Coil Pitch and Distributed Windings
Appendix C Salient-Pole Theory of Synchronous Machines
Appendix D Tables of Constants and Conversion Factors2100433B
电厂图书目录
柜号 序号 G1 1 G1 2 G1 3 G2 4 G2 5 G2 6 G2 7 G2 8 G2 9 G1 10 G2 11 G2 12 G2 13 G2 14 G1 15 G1 16 G1 17 G2 18 G2 19 G2 20 G1 21 G3 22 G3 23 G3 24 G3 25 G3 26 G3 27 G1 28 G1 29 G3 30 G3 31 G2 32 G2 33 G2 34 G2 35 G2 36 G2 37 G2 38 下右 39 下右 40 下右 41 下右 42 下右 43 下右 44 下右 45 下右 46 下右 47 下右 48 下右 49 下右 50 下右 51 下右 52 下右 53 下左 54 下左 55 下左 56 下左 57 下左 58 下左 59 下左 60 下左 61 下左 62 下左 63 下左 64 下左 65 下左 66 下左 67 下
工程常用图书目录
1 工程常用图书目录(电气、给排水、暖通、结构、建筑) 序号 图书编号 图书名称 价格(元) 备注 JTJ-工程 -24 2009JSCS-5 全国民用建筑工程设计技术措施-电气 128 JTJ-工程 -25 2009JSCS-3 全国民用建筑工程设计技术措施-给水排水 136 JTJ-工程 -26 2009JSCS-4 全国民用建筑工程设计技术措施-暖通空调 ?动力 98 JTJ-工程 -27 2009JSCS-2 全国民用建筑工程设计技术措施-结构(结构体系) 48 JTJ-工程 -28 2007JSCS-KR 全国民用建筑工程设计技术措施 节能专篇-暖通空调 ?动力 54 JTJ-工程 -29 11G101-1 混凝土结构施工图平面整体表示方法制图规则和构造详图(现浇混凝土框架、剪力墙、框架 -剪力墙、框 支剪力墙结构、现浇混凝土楼面与屋面板) 69 代替 00G101
《自动化专业系列教材:电机学与拖动基础(第2版)》取材丰富、结构严谨、重点突出、系统性强;各章相对独立,便于读者取舍。每章配有例题,附有足够数量的思考题与习题。
《自动化专业系列教材:电机学与拖动基础(第2版)》第一版是自控、船电类专业本科《电机学与拖动基础》课程用的“九五”规划部委级重点教材。《自动化专业系列教材:电机学与拖动基础(第2版)》为第二版,内容有增删,部分内容的安排作了调整,可供新专业目录的高等学校本科自动化专业、电气工程及其自动化专业、机械电子工程专业和其他相关专业使用,亦可作职业技术学院、专科、成人高等教育同类专业的教材,还可供有关工程技术人员参考。
电工与电机学基础定 价:¥32.00
作 者:林文孚 主编
出 版 社:水利水电出版社
出版时间:2011-8-1
开 本:16开
I S B N:9787508489674
全书共分五章,即直流电机(含直流电动机的拖动) 、变压器、交流旋转电机的共同问题、异步电机(含异步电动机的拖动)和同步电机。每一章分若干节,内容主要是各种电机的原理、结构、特性和应用以及拖动基础,每章分基本知 识点、重点与难点、典型题解析和自我检测题四部分。附录中收录了西安交通大学近年来本科生的电机学期末考试题、硕士研究生入学考试题以及练习题的答案(部分习题有解题过程 )。《电机学(含拖动基础)学习指导典型题解》可作为大学本科生、专科生学习电机学(含拖动)课程的辅导教材;其基本内容作为 高等教育自学考试以及成人高等教育的该课程的自学指导书也很适合;也可作为有关硕士研 究生报考相关专业的复习参考书。