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太陽(yáng)能熱發(fā)電站設(shè)計(jì)(英文版)

太陽(yáng)能熱發(fā)電站設(shè)計(jì)(英文版)

定 價(jià):¥298.00

作 者: 王志峰 著
出版社: 化學(xué)工業(yè)出版社
叢編項(xiàng):
標(biāo) 簽: 暫缺

ISBN: 9787122344052 出版時(shí)間: 2019-09-01 包裝: 平裝
開本: 16開 頁(yè)數(shù): 475 字?jǐn)?shù):  

內(nèi)容簡(jiǎn)介

  本書介紹了太陽(yáng)能熱發(fā)電站的基本設(shè)計(jì)方法,主要面向從事太陽(yáng)能熱發(fā)電工程的技術(shù)人員。太陽(yáng)能熱發(fā)電站分為聚光、吸熱、儲(chǔ)熱和動(dòng)力四大模塊,本書著重介紹了前三部分的設(shè)計(jì)方法和工藝布置中需要注意的重點(diǎn)。對(duì)太陽(yáng)能熱發(fā)電站中與常規(guī)火電廠相同的部分,如汽輪機(jī)、輔助鍋爐及相關(guān)部分基本沒(méi)有敘述。本書對(duì)太陽(yáng)能聚光和吸熱部分有較深的理論描述,并結(jié)合實(shí)際工程給出了算例,對(duì)太陽(yáng)能熱發(fā)電站的選址也做了較為詳細(xì)的描述。內(nèi)容具有較強(qiáng)的理論和實(shí)用價(jià)值。 本書可供從事太陽(yáng)能熱發(fā)電工程的研究人員和技術(shù)人員使用,也可供能源相關(guān)專業(yè)的高校教師和研究生參考。

作者簡(jiǎn)介

  王志峰博士,中國(guó)科學(xué)院電工研究所研究員,中國(guó)科學(xué)院大學(xué)教授,國(guó)家首批“萬(wàn)人計(jì)劃”獲得者。其研究方向主要包括太陽(yáng)能聚光熱發(fā)電技術(shù),太陽(yáng)能熱利用系統(tǒng)性能評(píng)價(jià),太陽(yáng)能集熱系統(tǒng)中的流動(dòng)與換熱問(wèn)題,換熱器中的流動(dòng)與傳熱過(guò)程數(shù)值模擬,復(fù)雜氣體介質(zhì)中的輻射換熱,復(fù)雜幾何形體傳熱過(guò)程的數(shù)值模擬以及太陽(yáng)能熱利用系統(tǒng)的性能評(píng)價(jià)方法等。

圖書目錄

Preface xi

1. Introduction
1.1 General Principles of Solar Thermal Power Plant Design 3
1.2 Brief Introduction to Solar Thermal Power Generation 7

2. The Solar Resource and Meteorological Parameters
2.1 The Nature of the Solar Resource 47
2.2 The Solar Constant and Radiation Spectrum 48
2.3 Atmospheric Influences on Solar Irradiation 50
2.4 Calculating Methods for Solar Position 52
2.5 Distribution of the Solar Resource in Several Typical Areas of China 60
2.6 Solar Irradiance Prediction Methods 83
2.7 Distribution of Solar Direct Normal Radiation Resources in China 89
2.8 Various Special Climate Conditions in the Plant Area 100
2.9 Measuring Instrument 107
2.10 Global Direct Normal Irradiance Distributions 112

3. General Design of a Solar Thermal Power Plant
3.1 Power Plant Design Point 117
3.2 Heliostat Field Efficiency Analysis for Power Plants 119
3.3 Thermal Performance of Parabolic Trough Collector 150
3.4 Basic Data Required by Power Plant Design 192
3.5 Major Parameters and Principles of Design 193
3.6 Description of General Parameters of the Power Plant 194
3.7 Calculation of Annual Power Generation 194
3.8 Determination of Thermal Storage Reserve 214
3.9 Main Points for Power Plant Site Plan 216
3.10 Notices for Concentration Field Layout 223

4. Design of the Concentration System
4.1 General System Description 225
4.2 Principles for Concentration Field Layout 229
4.3 Design of the Solar Tower Power Plant Concentrating Field 243
4.4 Control Design of the Heliostat Field of a Solar Tower Power Plant 256
4.5 Solar Field Design of Parabolic Trough Power Plant 264
4.6 Description of solar Concentrator 273
4.7 Instantaneous Efficiency 276
4.8 Design of the Parabolic Trough Collector Field 279
4.9 Concentrator Field Control Design of the Parabolic Trough Power Plant 281
4.10 Wind Load Characteristics of the Concentrator 283

5. Design of the Receiver System
5.1 General Receiver System Description 319
5.2 Selection of Materials for the Receiver System 327
5.3 Selection of Pipes and Pumps for Receiver System 330
5.4 Receiver System Control 331
5.5 Design of the Operation Modes of the Receiver System 334
5.6 The Discharge System and Equipment of the Receiver 336
5.7 Vacuum Performance of the Parabolic Trough Receiver Tube 339

6. Thermal Storage Systems
6.1 General System Description 388
6.2 Technical Requirements of Thermal Storage Systems 392
6.3 Thermal Storage Materials and Modes 393
6.4 Categories and Constitutions of Thermal Storage Systems 401
6.5 Selection of Thermal Storage Materials and Tanks 412
6.6 Charging and Discharge Equipment of the Thermal Storage Tank and Respective Process Design 413
6.7 Thermal Storage System Control 414
6.8 Facilities for Thermal Storage System Inspection 415

7. Site Selection, Power Load, and Power Generation Procedures
7.1 Site Selection 417
7.2 Power Load and Power Generation Procedures 423

8. Plant Layout Planning
8.1 Basic Rules 425
8.2 Layout of the Main Buildings and Concentration Field 428
8.3 Communication and Transportation 429
8.4 Vertical Layout 430
8.5 Pipeline Layout 432

9. Main Powerhouse Layout
9.1 Direction of Main Powerhouse 435
9.2 Main Powerhouse and Thermal Storage 435
9.3 Solar Thermal Storage System Layout 435

10. Water Treatment Equipment and System
10.1 Receiver and Evaporator Makeup Water Treatment 437
10.2 Calculation of Water Treatment Equipment 437
10.3 Feed Water and Boiler Water Modification and Thermal System Steam Sampling 438
10.4 Anticorrosion 438

11. Power System
11.1 Power Grid Connection of Power Plant 439
11.2 System Protection 439
11.3 System Communication 439

12. Electrical Equipment and System
12.1 High-Voltage Electrical Installations 441
12.2 Main Electrical Control Room 441
12.3 DC System 441
12.4 Electrical Measuring Instrument 442
12.5 Relay Protection and Automatic Safety Device 442
12.6 Lighting System 442
12.7 Cable Selection and Layout 443
12.8 Overvoltage Protection and Grounding 443
12.9 Electrical Installations in a Dangerous Environment with Potential Explosions and Fire Hazards 443

13. Thermal Automation
13.1 Basic Rules 445
13.2 Control Mode 446
13.3 Thermal Inspection 446
13.4 Automatic Adjustment 446
13.5 Thermal Protection 447
13.6 Interlocking 447
13.7 Power Supply and Steam Supply 447
13.8 Control Room 448
13.9 Cables, Conduits, and Local Equipment Layout 448
13.10 Basic Rules for Building Space Heating 449
13.11 Solar Tower 449
13.12 Heating Network and Heating Station in the Plant Area 450

14. Architecture and Structure
14.1 Basic Rules 451
14.2 Fire Protection 452
14.3 Interior Environment 453

15. Auxiliary and Affiliated Facilities 455

16. Environmental Protection of the Concentrating Solar Power Plant
16.1 Basic Rules 457
16.2 Requirements for Environmental Protection Design 457
16.3 Pollution Prevention and Treatment 458
16.4 Environmental Protection Facilities 458

References 459

Index 463

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