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工业汽轮机通流部分改造及热力设计毕业论文

时间:2020/10/14 10:26:10  作者:  来源:  查看:0  评论:0
内容摘要: 摘  要本设计为对某发电厂的热力系统计算与通流部分管道的设计,要以最大连续蒸发量为2027t/h的锅炉及一个机组容量为600MW的汽轮机组的初始数据通过原则性热力系统的确定及计算、燃烧系统的计算及绘制,全面性热力系统的确定及计通流部分管道的设计。可行方案的选取上...

 

本设计为对某发电厂的热力系统计算与通流部分管道的设计,要以最大连续蒸发量为2027t/h的锅炉及一个机组容量为600MW的汽轮机组的初始数据通过原则性热力系统的确定及计算、燃烧系统的计算及绘制,全面性热力系统的确定及计通流部分管道的设计。可行方案的选取上从实际工程项目出发,综合考虑安全可靠、经济使用,节省能源,保护环境的建设方针,同时对运行是否稳定可靠,技术是否成熟等方面进行考虑,综合比较确定。
本设计主要是对全厂的热力计算及对管道通流部分的计算及管道的选择,同时要校核相关汽水流量、进气量、发电量。根据原则性计算结果对相关热力管道进行相关基本尺寸计算,根据基本尺寸参照相关标准热力管道选型手册选择相关标准管道,并对所选管道进行相关校核计算,纠正所选管道型号,优化电厂热力系统。
最终得出电厂初步设计的相关系统确定,得出经济性较高,有建设价值的电厂建设方案。
 
关键词:热力系统;热经济性;管道通流部分
 
Abstract
    The design of the power plant for the calculation of the thermal system and flow part of the pipeline design, to the maximum continuous evaporation of 2027t / h boiler and a unit capacity of 600MW steam turbine initial data through the principle of the determination of the thermal system And calculation, calculation and mapping of combustion systems, the determination of comprehensive thermal system and the design of pipelines. The choice of feasible solutions from the actual project, taking into account the safe and reliable, economical use, energy conservation, environmental protection, construction policy, while the operation is stable and reliable, the technology is mature and so on, comprehensive comparison to determine.
    The design is mainly on the whole plant thermal calculation and calculation of the pipeline flow part of the pipeline and the choice of the same time to check the relevant soda water flow, intake capacity, power generation. According to the principle calculation results, the relevant basic dimensions are calculated according to the basic dimensions, and the relevant standard pipelines are selected according to the relevant standard hot pipe selection manual. The relevant pipelines are checked and checked to correct the selected pipeline model and optimize the power plant heat system.
    And finally obtained the preliminary design of the power plant to determine the relevant system, come to a higher economy, the construction value of the power plant construction program.
 
    Key words: thermal system; thermal economy; pipeline flow part
 
 
  


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