The author of the Electrician Quick Reference and Calculation Manual has been engaged in electrician work for many years and has rich practical and teaching experience. This book is compiled after comprehensive and refinement of the calculation data and materials that the author has often encountered in his work over the years, which are time-consuming, laborious and error-prone when looking for calculations. The Electrician Quick Reference and Calculation Manual mainly introduces the quick reference and calculation materials and appendices of commonly used calculation formulas and tables in electrical engineering, power transmission and transformation, transformers, motors, capacitors and reactive power compensation, selection and calculation of low-voltage electrical appliances, electric welding machines and their selection, fans and air compressors, electric heating, lighting, grounding and zeroing, thyristors and electronic circuits. The selected formulas are verified, and examples are appropriately added to adapt to the learning and application of technicians, skilled workers and students of technical schools in actual work. Electrician Quick Reference and Calculation Manual Contents Chapter 1 Common Calculation Formulas and Tables in Electrical Engineering Section 1 Units and Mathematical Foundations of Electrical Engineering 1. Legal Units of Measurement and Conversion 2. Common Electrical Constants and Coefficients Section 2 Common Tables 1. Important Functions of π 2. Approximate Fractions of π 3. Circumference and Area of a Circle 4. Complex Number Operations 5. Representation of Sinusoidal Quantities Section 3 Basic Laws and Parameter Calculations in Electrical Engineering 1. Ohm\'s Law 2. Joule-Lenz Law 3. Kirchhoff\'s Law 4. Calculation of Resistance 5. Calculation of Impedance 6. Calculation of Inductance 7. Calculation of Capacitance Section 4 Simple AC Circuit Calculation 1. Single-parameter AC Circuit 2. Series Connection of Resistance, Inductance and Capacitance and parallel calculation 3. Calculation of power in AC circuit 4. Rotation factor a and representation of three-phase AC 5. Symmetrical component method 6. Calculation of non-sinusoidal AC Section 5 Calculation methods for complex circuits 1. Branch current method 2. Loop current method 3. Node voltage method 4. Thevenin theorem 5. Superposition principle 6. Resonance of AC circuit Section 6 Magnetic circuit and electromagnetic induction 1. Basic concepts and laws of magnetic circuit 2. Calculation steps for positive problems of magnetic circuit 3. Electromagnetic induction and Lenz\'s law 4. Hysteresis loss and eddy current loss, dielectric loss Section 7 Transition process 1. Switching law 2. Transition process of resistance, capacitance circuit and resistance, inductance circuit Chapter 2 Transmission Power distribution Section 1 Calculation of circuit parameters 1. Calculation of conductor resistance, inductance and capacitance 2. Resistance and reactance of commonly used conductors and cables Section 2 Calculation of line loss and voltage drop 1. Calculation of DC lines 2. Calculation of distribution line losses 3. Calculation of AC line voltage loss 4. Calculation of zero line potential rise in 380/220V system 5. Calculation of the influence of phase sequence on line current Section 3 Calculation of electrical load in residential buildings 1. Unit building area method 2. Household-based method 3. Design standard method Section 4 Calculation of factory power consumption 1. Determination of load calculation for electrical equipment, workshops and the entire factory 2. Calculation of annual power demand for the factory Section 5 Conductors and cables Selection and calculation of 1. Economic current density and calculation 2. Selection of conductor cross section 3. Selection of power cable 4. Determination of cable fault point Chapter 3 Transformer Section 1 Basic principles and calculations 1. Voltage ratio and capacity of transformer 2. Basic parameters and calculation of transformer 3. Voltage change 4. Efficiency 5. Basic calculation of autotransformer 6. Calculation of transformer load factor 7. Calculation of transformer loss 8. Calculation of transformer no-load test and short-circuit test Section 2 Calculation of economic operation of transformer 1. Calculation of transformer parallel operation 2. Calculation of annual power loss of transformer Section 3 Design and calculation of special transformer 1. Basic calculation of dry-type power transformer 2. Rectification Transformer design and calculation 3. Single-phase small transformer design and calculation 4. Small transformer frame production 5. Autotransformer design for motor starting 6. Pulse transformer design 7. Audio transformer design Section 4 Ferro-resonant voltage stabilizer design 1. Design of voltage stabilizer for rectifier in power plant and substation 2. Design of small ferro-resonant voltage stabilizer Section 5 Reactor design and calculation 1. Filter reactor calculation 2. AC reactor calculation 3. Current-sharing reactor calculation 4. Air-core reactor calculation 5. Balancing reactor calculation Chapter 4 Motor Section 1 Basic concepts of three-phase asynchronous motor 1. Nameplate of three-phase asynchronous motor 2. Synchronous speed and slip Rate 3. Potential equation 4. Mechanical characteristics of asynchronous motor Section 2 Working characteristics of asynchronous motor 1. Working characteristic curve 2. The influence of power supply voltage change or frequency change on motor working performance 3. Calculation of rotor resistance of wire-wound asynchronous motor Section 3 Basic formulas of DC motor 1. Armature potential 2. Torque characteristics of DC motor 3. Voltage balance equation 4. Speed characteristics of DC motor 5. Mechanical characteristics of DC motor 6. Power balance equation 6. Calculation of inductance and resistance of armature circuit of DC motor Section 4 Selection procedure of transmission motor 1. Selection procedure of transmission motor 2. Motor overload capacity and average starting Calculation of dynamic torque 3. Calculation of maximum acceleration allowed according to slip conditions 4. Verification of motor power 5. Selection of motor power Section 5 Starting calculation of motor 1. Determination of direct starting power of asynchronous motor 2. Selection of reduced voltage starting method of asynchronous motor 3. Selection of magnetic starter 4. Selection of Y-△ starter 5. Selection and calculation of autotransformer step-down starter 6. Calculation of Yanbian triangle starting method 7. Calculation of starting resistance of three-phase cage asynchronous motor 8. Calculation of starting resistance of winding asynchronous motor Section 6 Braking calculation of asynchronous motor 1. Calculation of reverse braking of asynchronous motor 2. Energy consumption braking calculation of asynchronous motor Calculation 3. Asynchronous motor capacitor 1. Calculation of electromagnetic brake capacitor 4. Calculation of reverse braking of DC separately excited motor 5. Calculation of energy consumption braking of DC separately excited motor Section 7 Calculation of motor speed regulation 1. Calculation of additional resistance adjustment of winding type asynchronous motor rotor 2. Calculation of mechanical feedback cascade speed regulation of winding type asynchronous motor 3. Comparison of different speed regulation methods of DC motor 4. Calculation of resistors and frequency sensitive varistors Chapter 5 Capacitors and unassisted compensation Chapter 6 Selection and calculation of low voltage electrical appliances Chapter 7 Electric welding machines and their selection Chapter 8 Fans and air compressors Chapter 9 Electric heating Chapter 10 Lighting calculation Chapter 11 Grounding and zeroing Chapter 12 Thyristors and electronic circuits
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