• 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
  • 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
  • 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
  • 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
  • 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
  • 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
  • 【假一罚四】风力发电系统设计安装与运维都志杰//贾彦
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【假一罚四】风力发电系统设计安装与运维都志杰//贾彦

集团直发,全新正版书籍,假一罚四,放心选购。24小时内发货。

104.9 7.6折 138 全新

库存2件

浙江嘉兴
认证卖家担保交易快速发货售后保障

作者都志杰//贾彦

出版社化学工业

ISBN9787122341983

出版时间2019-09

装帧其他

开本16开

定价138元

货号30684542

上书时间2024-10-26

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品相描述:全新
商品描述
目录
绪论
0.1 发展可再生能源的必要性                                                 2
0.1.1 全球变暖                                                           2
0.1.2 化石燃料枯竭                                                       4
0.1.3 环境污染                                                           5
0.1.4 无电与贫困                                                         6
0.2 我国政府应对气候变化的目标和主要可再生能源产业的现状                   7
0.2.1 我国政府应对气候变化的目标                                         7
0.2.2 我国主要可再生能源产业的现状                                       8

第1章 风能和风能资源的测量评估
1.1 风能的描述和特点                                                     13
1.1.1 风能的描述                                                         13
1.1.2 风能的特点                                                         22
1.2 风能的测量与评估                                                     24
1.2.1 风速的测量与描述                                                   24
1.2.2 风向的测量与描述                                                   28
1.3 我国的风能资源                                                       30
1.3.1 我国的风能分布                                                     30
1.3.2 影响我国风能资源的因素                                             31
1.3.3 我国最新四维风能资源大数据                                         35
1.4 风能资源的测量与评估                                                 35
1.4.1 风能资源评估的重要性                                               35
1.4.2 风能资源的评估                                                     36
1.4.3 风能资源评估程序                                                   36
1.4.4 测风步骤                                                           37
1.4.5 小规模项目的风能资源评估                                           38

第2章 风力发电基础和相关理论
2.1 风力发电基础                                                         42
2.1.1 风力发电                                                           42
2.1.2 风力发电基本原理                                                   43
2.2 风能的基础理论                                                       43
2.2.1 风能公式                                                           43
2.2.2 风频分布与Weibull分布特征                                         45
2.3 风力发电的基础理论                                                   48
2.3.1 贝茨(Betz)理论                                                   48
2.3.2 叶素理论                                                           49
2.3.3 动量理论                                                           50
2.3.4 风能利用系数                                                       50
2.3.5 叶尖速比                                                           51
2.3.6 叶片的攻角                                                         51

第3章 风力发电机
3.1 风力发电机及其分类                                                   53
3.2 风力发电机组的构造与特点                                             60
3.2.1 风力发电机的基本构造                                               60
3.2.2 小型风力发电机的主要结构特征                                       61
3.2.3 一般中小型风力发电机组的主要组成部分                               65
3.3 风力发电机组的基本特性参数                                           74
3.3.1 考察风力发电机组性能的最主要技术参数                               74
3.3.2 其他技术指标                                                       76
3.3.3 中小型风力发电机组的评价                                           78

第4章 可再生能源发电技术基础
4.1 可再生能源的定义和特点                                               90
4.2 可再生能源发电的基本形式                                             91
4.2.1 一次能源和二次能源                                                 91
4.2.2 可再生能源发电分类                                                 92
4.3 可再生能源并网发电与离网发电                                         93
4.3.1 并网发电                                                           93
4.3.2 可再生能源离网发电                                                 97
4.4 可再生能源独立供电系统的具体应用和实例                               100
4.4.1 可再生能源独立供电系统的具体应用                                 100
4.4.2 可再生能源发电应用实例                                           104
4.5 可再生能源发电的环保效益                                             107
4.6 可再生能源发电的局限性及可行性研究                                   107

第5章 风力发电系统及其互补系统
5.1 风力发电系统                                                         109
5.2 互补发电系统                                                         115

第6章 充电控制器
6.1 充电控制器及其基本工作原理                                           123
6.2 各类型充电控制器工作原理                                             125
6.2.1 充电控制器分类                                                   125
6.2.2 充电控制器对蓄电池充/放电的机理及其数学模型                       126
6.2.3 各类型充电控制器具体工作原理                                     131
6.3 充电控制器的基本参数与选择                                           135

第7章 储能装置
7.1 储能在可再生能源发电系统中的必要性                                   139
7.1.1 储能装置的作用                                                   139
7.1.2 储能装置的重要性                                                 140
7.2 储能装置分类及其特点                                                 140
7.2.1 机械储能                                                         140
7.2.2 化学储能                                                         143
7.2.3 电磁储能                                                         146
7.2.4 氢能储存                                                         147
7.2.5 其他新型储能装置及其前景——特斯拉“家庭电池能量墙”              148
7.2.6 能源存储设备关键技术参数的比较                                   150
7.3 蓄电池                                                               153
7.3.1 蓄电池分类                                                       153
7.3.2 常用的铅酸蓄电池                                                 154
7.3.3 蓄电池命名                                                       155
7.4 主要蓄电池介绍                                                       156
7.4.1 阀控式密封铅酸蓄电池                                             156
7.4.2 碱性蓄电池                                                       157
7.4.3 胶体电池                                                         157
7.4.4 硅能蓄电池                                                       158
7.4.5 燃料电池                                                         158
7.5 铅酸蓄电池的基本组成结构及工作原理                                   159
7.5.1 铅酸蓄电池的基本组成及工作原理                                   159
7.5.2 阀控式密封铅酸蓄电池的工作原理                                   160
7.5.3 阀控式密封铅酸蓄电池的分类及特点                                 161
7.5.4 使用阀控式密封铅酸蓄电池应遵循的原则                             162
7.6 可再生能源离网发电系统对蓄电池的基本要求                             163
7.7 蓄电池的应用                                                         164
7.7.1 蓄电池的基本技术参数                                             164
7.7.2 影响蓄电池容量的因素                                             166
7.7.3 蓄电池失效模式及其影响因素                                       167
7.7.4 影响免维护蓄电池使用寿命的因素                                   168
7.8 正确使用蓄电池作为储能装置                                           169
7.8.1 蓄电池的工作温度                                                 169
7.8.2 蓄电池寿命的评价方法                                             169
7.8.3 铅酸蓄电池电解液的密度及其检测                                   170
7.8.4 蓄电池的均衡充电及其工作原理                                     171
7.8.5 蓄电池的温度补偿                                                 172
7.9 蓄电池组                                                             172
7.9.1 电池组的串联                                                     172
7.9.2 电池组的并联                                                     172
7.9.3 蓄电池组                                                         173
7.9.4 设计合适的蓄电池组                                               173
7.9.5 合理选择蓄电池组中的单个蓄电池规格                               175
7.9.6 使用蓄电池作为储能装置的注意事项                                 175

第8章 逆变器与并网逆变器
8.1 逆变器、逆变器的组成和工作原理                                       177
8.1.1 逆变器                                                           177
8.1.2 逆变器的基本组成                                                 177
8.1.3 逆变器基本工作原理                                               178
8.2 逆变器的分类                                                         179
8.2.1 逆变器的不同分类方式                                             179
8.2.2 逆变器的主要应用类型                                             182
8.3 逆变器的主要电路原理                                                 183
8.4 逆变器的基本特性参数                                                 186
8.4.1 逆变器常用的技术参数                                             186
8.4.2 并网型可再生能源供电系统对逆变器的技术要求                       188
8.4.3 离网型可再生能源供电系统对逆变器的技术要求                       188
8.5 逆变器的选择与使用                                                   188
8.5.1 选择逆变器的功率                                                 188
8.5.2 考虑系统中的感性负载                                             190
8.5.3 选择逆变器的类型                                                 190
8.5.4 考虑系统内逆变器的配置                                           191
8.5.5 考虑海拔高度的影响                                               191
8.5.6 选择逆变器的一般步骤                                             192
8.5.7 控制逆变一体机                                                   193
8.5.8 UPS与逆变器                                                     194

第9章 支撑结构和地基
9.1 支撑结构及其分类                                                     195
9.1.1 塔架                                                             195
9.1.2 塔架基本分类与特点                                               195
9.1.3 塔架材料                                                         199
9.1.4 塔架的高度                                                       199
9.1.5 塔架的选择与应用                                                 201
9.2 塔架的地基                                                           203
9.2.1 不同塔架类型对地基的要求                                         203
9.2.2 地基作                                    

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