工厂供电毕业设计论文
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学号********
毕业设计说明书石家庄危险废弃物处置中心供电系统设计
学生姓名王东亮
专业名称电气工程及其自动化
指导教师陈建辉
电子与信息工程系
2008年 6月9日
石家庄危险废弃物处置中心供电系统设计
Shijiazhuang hazardous waste disposal center power supply system design
2
摘要
众所周知,电能是现代工业生产的主要能源和动力。电能既易于由其它形式的能量转换而来,又易于转换为其它形式的能量以供应用;电能的输送的分配既简单经济,又便于控制、调节和测量,有利于实现生产过程自动化。因此,电能在现代工业生产及整个国民经济生活中应用极为广泛。
本工程为石家庄危险废弃物处置中心的供电系统设计,该处置中心大部分用电设备属于长期连续负载,全年工作小时数为8760小时,要求不间断供电,主要车间及附属设备均为二级负荷。采用10KV电压等级双回路线路提供电源,单母线分段,放射式接线的设计方案。设计内容包括负荷计算、方案选择、功率补偿计算、短路电流计算、设备选择、二次系统设计、继电器选择、防雷接地设计、照明设计等。由于缺乏经验,设计中有很多不足与疏漏,请老师给予批评指正。
关键词:供电系统;计算负荷;短路电流;设备选择;
ABSTRACT
It is well known, the electrical energy is the modern industry production primary energy and the power. The electrical energy both comes easy by other form's energy conversion, and easy to transform for other form energy supplies the application; Electrical energy transportation's assignment both simple economy, and is advantageous for the control, the adjustment and the survey, is advantageous in realizes the production process automation. Therefore, the electrical energy applies in the modern industry production and the entire national economy life extremely widely.
This project for Shijiazhuang hazardous waste disposal center the power supply system design, the disposal center’s equipment belonging to the majority of long-term continuous load, annual work hours to 8760 hours, uninterrupted power supply requirements, the main workshop and ancillary equipment are 2 load. Use 10 KV double-circuit voltage lines to provide power, sub-bus, radiation-wiring design. Design elements include load calculation, options, power compensation, short-circuit current calculation, equipment selection, the second system design, choice of the relay, mine grounding design, lighting design. Due to lack of experience, there are many inadequacies in the design and oversight, to criticize the teacher corrected.
Key words:Power Supply System; calculated load; short circuit; equipment selection
目录
第1章设计原始依据 (1)
1.1 中心用电设备负荷情况 (1)
1.1.1 负荷类型 (1)
1.1.2 电源情况 (1)
1.1.3 供电电价为两部电价 (2)
1.2 气象及其他资料 (2)
第2章设计概况 (3)
2.1 设计内容和要求 (3)
2.2 设计成果 (3)
2.3 设计步骤 (3)
第3章全厂负荷计算 (5)
3.1 负荷概述 (5)
3.2 全厂各部门负荷计算 (5)
3.3 补偿前计算负荷 (9)
3.3.1 NO1计算负荷 (9)
3.3.2 NO2计算负荷 (9)
3.3.3 NO0计算负荷 (10)
第4章供配电系统方案选择 (11)
4.1 电压的选择 (11)
4.2 变电所主接线 (11)
4.2.1 变电所的构成 (11)
4.2.2 变电所常用主接线 (12)
4.3 配电系统接线方式 (13)
第5章功率补偿及变压器选择 (15)
5.1 功率因数和无功功率补偿 (15)