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دانلود کتاب Steam Plant Operation دانلود ایبوک عملیات کارخانه بخار ISBN-10: 1259641333ISBN-13: 978-1259641336 by Everett B. Woodruff
دانلود کتاب Steam Plant Operation دانلود ایبوک عملیات کارخانه بخار ISBN-10: 1259641333ISBN-13: 978-1259641336 by Everett B. Woodruff
 Steam Plant Operation, 10th Edition 10th Edition, Kindle Edition
by Everett B. Woodruff (Author), Herbert B. Lammers (Author), Thomas F. Lammers (Author)
Hardcover: 752 pages
Publisher: McGraw-Hill Education; 10 edition (November 3, 2016)
Language: English
ISBN-10: 1259641333
ISBN-13: 978-1259641336
Download Please Contact Us :ایمیل گیگاپیپر دانلود کتاب مقاله پایان نامه
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دانلود کتاب Steam Plant Operation

For more than 80 years, Steam Plant Operation has been an unmatched source of information on steam power plants, including design, operation, and maintenance. The Tenth Edition emphasizes the importance of devising a comprehensive energy plan utilizing all economical sources of energy, including fossil fuels, nuclear power, and renewable energy sources. This trusted classic discusses the important role that steam plays in our power production and identifies the associated risks and potential problems of other energy sources. You will find concise explanations of key concepts, from fundamentals through design and operation.  For energy students, Steam Plant Operation provides a solid introduction to steam power plant technology.

This practical guide includes common power plant calculations such as plant heat rate, boiler efficiency, pump performance, combustion processes, and explains the systems necessary to control plant emissions. Numerous illustrations and clear presentation of the material will prove invaluable for those preparing for an operator’s license exam. Examples throughout show real-world application of the topics discussed.

COVERAGE INCLUDES:

• Steam and Its Importance
• Boilers
• Design and Construction of Boilers
• Combustion of Fuels
• Boiler Settings, Combustion Systems, and Auxiliary Equipment
• Boiler Accessories
• Operation and Maintenance of Boilers
• Pumps
• Steam Turbines, Condensers, and Cooling Towers
• Operating and Maintaining Steam Turbines, Condensers, Cooling Towers, and Auxiliaries
• Auxiliary Steam Plant Equipment
• Environmental Control Systems
• Waste-to-Energy Plants

 

دانلود ایبوک عملیات کارخانه بخار

بیش از 80 سال است که عملیات کارخانه بخار منبع مهمی از اطلاعات در مورد نیروگاه های بخار از جمله طراحی ، بهره برداری و تعمیر و نگهداری بوده است. نسخه دهم بر اهمیت تدوین برنامه جامع انرژی با استفاده از تمام منابع اقتصادی انرژی از جمله سوخت های فسیلی ، انرژی هسته ای و منابع انرژی تجدید پذیر تأکید می کند. این کلاسیک مورد اعتماد در مورد نقش مهمی که بخار در تولید برق ما ایفا می کند و خطرات و مشکلات احتمالی منابع انرژی دیگر را شناسایی می کند ، بحث می کند. توضیحات مختصر در مورد مفاهیم کلیدی ، از اصول اولیه تا طراحی و بهره برداری را خواهید یافت. برای دانشجویان انرژی ، عملیات کارخانه بخار مقدمه ای کاملی از فناوری نیروگاه بخار ارائه می دهد.

این راهنمای عملی شامل محاسبات نیروگاههای متداول از قبیل سرعت گرمایشی گیاه ، راندمان دیگ بخار ، عملکرد پمپ ، فرآیندهای احتراق است و سیستم های لازم برای کنترل انتشار گازهای گیاه را توضیح می دهد. تصاویر بی شماری و ارائه شفاف مطالب برای افرادی که برای آزمون مجوز یک اپراتور آماده می شوند ، بسیار ارزشمند است. نمونه هایی در سراسر برنامه کاربردهای دنیای واقعی موضوعات مورد بحث را نشان می دهد.

شامل پوشش:

• بخار و اهمیت آن
• دیگهای بخار
• طراحی و ساخت دیگهای بخار
• احتراق سوخت
• تنظیمات دیگ بخار ، سیستم های احتراق و تجهیزات کمکی
• لوازم جانبی دیگ بخار
• بهره برداری و نگهداری دیگهای بخار
• پمپ
• توربین های بخار ، کندانسورها و برجهای خنک کننده
• بهره برداری و نگهداری توربین های بخار ، کندانسورها ، برجهای خنک کننده و کمکی
• تجهیزات گیاهی بخار کمکی
• سیستم های کنترل محیط زیست
• گیاهان زباله به انرژی

فهرست مطالب Steam Plant Operation

  1. Cover
  2. Title Page
  3. Copyright Page
  4. Dedication
  5. Contents
  6. Preface
  7. 1 Steam and Its Importance
  8. 1.1 Introduction
  9. 1.2 The Use of Steam
  10. 1.3 The Steam-Plant Cycle
  11. 1.4 The Power Plant
  12. 1.5 Utility Boilers for Electric Power
  13. 1.5.1 Coal-Fired Boilers
  14. 1.5.2 Oil- and Gas-Fired Boilers
  15. 1.5.3 Steam Considerations
  16. 1.5.4 Boiler Feedwater
  17. 1.6 Industrial and Small Power Plants
  18. 1.6.1 Fluidized Bed Boilers
  19. 1.6.2 Combined Cycle and Cogeneration Systems
  20. 1.7 Solar Power
  21. 1.8 Wind Power
  22. 1.9 Power Plant Costs
  23. 1.10 Summary
  24. Questions and Problems
  25. 2 Boilers
  26. 2.1 The Boiler
  27. 2.2 Fundamentals of Steam Generation
  28. 2.2.1 Boiling
  29. 2.2.2 Circulation
  30. 2.2.3 Steam-Water Separation
  31. 2.3 Fire-Tube Boilers
  32. 2.4 Water-Tube Boilers
  33. 2.4.1 High-Temperature Water Boilers
  34. 2.4.2 Comparison of Fire- and Water-Tube Boilers
  35. 2.5 Steam-Water Separation
  36. 2.6 Principles of Heat Transfer
  37. 2.7 Superheaters
  38. 2.8 Superheat Steam Temperature Control
  39. 2.8.1 Attemperation
  40. 2.8.2 Flue Gas Bypass
  41. 2.8.3 Flue Gas Recirculation
  42. 2.9 Heat-Recovery Equipment
  43. 2.10 Furnace Design Considerations
  44. 2.11 Furnace Construction
  45. 2.12 Industrial and Utility Boilers
  46. 2.13 Considerations for Coal Firing
  47. 2.13.1 Spreader Stokers
  48. 2.13.2 Pulverized-Coal Firing
  49. 2.13.3 Stoker versus Pulverized-Coal Firing
  50. 2.14 Pressurized versus Balanced-Draft Boiler Designs
  51. 2.15 Fluidized Bed Boilers
  52. 2.15.1 The Process
  53. 2.15.2 Comparison with Pulverized-Coal and Stoker Firing
  54. 2.15.3 Advantages of Fluidized Bed Combustion
  55. 2.15.4 Descriptions of Fluidized Bed Boilers
  56. 2.15.5 Emissions Control with Fluidized Bed Boilers
  57. 2.15.6 Bed Material
  58. 2.15.7 Heat Transfer
  59. 2.16 Boiler Applications for Biomass Fuels
  60. 2.17 Modern Coal-Fired Plants—Summary
  61. 2.18 Process Steam and Its Application
  62. 2.19 Combined Cycle and Cogeneration Systems
  63. 2.20 Nuclear Steam Generation
  64. Questions and Problems
  65. 3 Design and Construction of Boilers
  66. 3.1 Materials Used in Boiler Construction
  67. 3.2 Stresses in Tubes and Drums
  68. 3.3 Drum Construction
  69. 3.4 Welded Construction
  70. 3.5 Structural Support Components
  71. 3.6 Manholes, Handholes, and Fittings
  72. 3.7 Boiler Assembly
  73. 3.8 Heating Surface and Capacity
  74. 3.9 Boiler Capacity Calculation
  75. Questions and Problems
  76. 4 Combustion of Fuels
  77. 4.1 The Combustion Process
  78. 4.2 The Theory of Combustion
  79. 4.3 The Air Supply
  80. 4.4 Coal
  81. 4.5 Fuel Oil
  82. 4.6 Gas
  83. 4.6.1 Gas Hydrates
  84. 4.6.2 Natural Gas Extraction by Hydraulic Fracturing (Fracking)
  85. 4.7 By-Product Fuels
  86. 4.8 Control of the Combustion Process
  87. Questions and Problems
  88. 5 Boiler Settings, Combustion Systems, and Auxiliary Equipment
  89. 5.1 Boiler Settings
  90. 5.2 Hand Firing
  91. 5.3 Stokers
  92. 5.3.1 Underfeed Stokers
  93. 5.3.2 Overfeed Stokers
  94. 5.4 Pulverized Coal
  95. 5.4.1 Contact Mills
  96. 5.4.2 Ball Mills
  97. 5.4.3 Impact Mills
  98. 5.4.4 Mill Feeders
  99. 5.4.5 Gravimetric Feeders
  100. 5.4.6 Burners
  101. 5.4.7 Lighters
  102. 5.4.8 Flame Safety System
  103. 5.4.9 Operation
  104. 5.5 Fuel Oil
  105. 5.5.1 Steam- or Air-Atomizing Burners
  106. 5.5.2 Pressure-Type Burners
  107. 5.5.3 Oil Burning Characteristics
  108. 5.6 Gas
  109. 5.7 Oil- and Gas-Firing Safety Precautions
  110. 5.8 Automatic Operation of Boilers
  111. 5.9 Stacks
  112. 5.10 Mechanical Draft: Fans
  113. 5.11 Steam and Air Jets
  114. 5.12 Flues and Ducts
  115. 5.13 Ash Handling Systems
  116. Questions and Problems
  117. 6 Boiler Accessories
  118. 6.1 Water Columns
  119. 6.2 Pressure Measurement
  120. 6.3 Temperature Measurement
  121. 6.4 Feedwater Control System
  122. 6.5 Safety Valves
  123. 6.6 Blowdown Equipment
  124. 6.7 Nonreturn Valves
  125. 6.8 Steam Piping
  126. 6.9 Sootblowers
  127. 6.10 Valves
  128. 6.11 Instruments and Power Plant Automation
  129. Questions and Problems
  130. 7 Operation and Maintenance of Boilers
  131. 7.1 Boiler Startup
  132. 7.2 Normal Operation
  133. 7.2.1 Combustion Control
  134. 7.2.2 Ash Handling
  135. 7.2.3 Water Supply
  136. 7.2.4 Boiler Efficiency
  137. 7.2.5 Insulation and Lagging
  138. 7.3 Operating Characteristics of Fluidized Bed Boilers
  139. 7.3.1 Circulating Fluid Bed (CFB) Boilers
  140. 7.3.2 Bubbling Fluid Bed (BFB) Boilers
  141. 7.4 Abnormal Operation
  142. 7.5 Idle Boilers
  143. 7.6 Maintenance
  144. 7.7 Boiler Internal Inspection
  145. 7.8 Evaluating the Condition of a Boiler
  146. 7.9 Making Repairs
  147. 7.10 Inspection and Maintenance Requirements of Heat Recovery Steam Generators (HRSGs)
  148. Questions and Problems
  149. 8 Pumps
  150. 8.1 Pumps
  151. 8.2 Injectors
  152. 8.3 Duplex Pumps
  153. 8.4 Power Pumps
  154. 8.5 Vacuum Pumps
  155. 8.6 Rotary Pumps
  156. 8.7 Centrifugal Pumps
  157. 8.8 Facts about Fluids and Pumping
  158. 8.9 Factors Affecting Pump Operation
  159. 8.10 Considerations for Pump Selection
  160. 8.11 Pump Installation and Operation
  161. 8.12 Pump Testing and Calculations
  162. 8.13 Pump Maintenance
  163. Questions and Problems
  164. 9 Steam Turbines, Condensers, and Cooling Towers
  165. 9.1 Steam Turbines
  166. 9.1.1 Turbine Types and Applications
  167. 9.1.2 Turbine Stage Design
  168. 9.1.3 Major Components of a Turbine
  169. 9.2 Turbine Design and Construction
  170. 9.2.1 Thrust Bearing
  171. 9.2.2 Packing
  172. 9.2.3 Governors
  173. 9.2.4 Lubrication
  174. 9.2.5 Turbine Control
  175. 9.2.6 Erection of the Steam Turbine
  176. 9.2.7 Relief Valves for Turbines
  177. 9.2.8 Turbine Piping
  178. 9.3 Electric Generators
  179. 9.4 Condensers
  180. 9.4.1 Surface Condensers
  181. 9.4.2 Air-Cooled Condensers
  182. 9.4.3 Condenser Materials and Construction
  183. 9.5 Cooling Towers
  184. 9.5.1 Types of Cooling Towers
  185. 9.5.2 Design Considerations
  186. 9.5.3 Materials of Construction
  187. 9.6 Condenser Auxiliaries
  188. Questions and Problems
  189. 10 Operating and Maintaining Steam Turbines, Condensers, Cooling Towers, and Auxiliaries
  190. 10.1 Turbines
  191. 10.1.1 Turbine Operation
  192. 10.1.2 Turbine Maintenance
  193. 10.1.3 Turbine Performance
  194. 10.2 Condensers
  195. 10.2.1 Surface Condenser Operation
  196. 10.2.2 Surface Condenser Maintenance
  197. 10.2.3 Air-Cooled Steam Condenser Operation
  198. 10.3 Cooling Towers
  199. 10.3.1 Operation of Cooling Towers
  200. 10.3.2 Maintenance of Cooling Towers
  201. 10.4 Auxiliaries
  202. 10.4.1 Traveling Screens
  203. 10.4.2 Pumps
  204. 10.4.3 Steam-Jet Ejectors and Vacuum Pumps
  205. 10.4.4 Vacuum Gauges
  206. Questions and Problems
  207. 11 Auxiliary Steam Plant Equipment
  208. 11.1 Condensate System
  209. 11.2 Feedwater Heaters
  210. 11.2.1 Closed Feedwater Heaters
  211. 11.2.2 Open Feedwater Heaters (Deaerators)
  212. 11.2.3 Operation and Maintenance of Feedwater Heaters
  213. 11.3 Condensate Polishing Systems
  214. 11.4 Raw Water Treatment
  215. 11.4.1 Ion-Exchange Water Conditioners
  216. 11.4.2 Evaporators
  217. 11.5 Boiler Blowdown
  218. 11.6 Piping System
  219. 11.7 Steam Traps
  220. 11.8 Pipeline Separators and Strainers
  221. 11.9 Lubricants and Lubricating Devices
  222. Questions and Problems
  223. 12 Environmental Control Systems
  224. 12.1 Introduction
  225. 12.2 Environmental Considerations
  226. 12.3 Sources of Plant Emissions
  227. 12.4 Available Technologies for the Control of Emissions
  228. 12.4.1 SO2 Control
  229. 12.4.2 NOx Control
  230. 12.4.3 Particulate Control
  231. 12.4.4 Control of Carbon Dioxide
  232. 12.5 Regulatory Requirements
  233. 12.6 Particulate and Sulfur Dioxide Removal Requirements
  234. 12.6.1 Particulate Removal
  235. 12.6.2 Sulfur Dioxide Removal
  236. 12.6.3 Industrial Boilers
  237. 12.7 Equipment for Particulate Emission Control
  238. 12.7.1 Mechanical Collectors
  239. 12.7.2 Electrostatic Precipitators
  240. 12.7.3 Bag Filterhouses
  241. 12.8 Equipment for Sulfur Dioxide Scrubber Systems
  242. 12.8.1 Wet Scrubbers
  243. 12.8.2 Dry Scrubbers
  244. 12.9 Systems for Control of Nitrogen Oxides
  245. Questions and Problems
  246. 13 Waste-to-Energy Plants
  247. 13.1 Introduction
  248. 13.2 Waste Disposal—A Worldwide Problem
  249. 13.3 Potential Energy from MSW
  250. 13.4 Landfills
  251. 13.5 Solid Waste Composition
  252. 13.6 Types of Energy-Recovery Technologies
  253. 13.7 Mass Burning
  254. 13.8 Refuse-Derived Fuel Burning
  255. 13.9 Operation and Maintenance of Refuse Boilers
  256. 13.10 Recy cling
  257. 13.10.1 Advantages and Disadvantages of Recycling
  258. 13.10.2 Economics and Quality Products from Recycling
  259. 13.11 Material Recovery Facilities
  260. 13.12 Waste-to-Energy Plants and Recycling
  261. Questions and Problems
  262. A Unit Conversions
  263. B Geometric Formulas
  264. C Steam Tables and Charts
  265. D Answers to Problems
  266. Glossary
  267. Index

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