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临机加热疏水系统的简化改进分析
引用本文:许朋江,李冬泉,居文平,陈 铭,王永杰,刘晓东. 临机加热疏水系统的简化改进分析[J]. 热能动力工程, 2019, 34(5): 136
作者姓名:许朋江  李冬泉  居文平  陈 铭  王永杰  刘晓东
作者单位:西安热工研究院有限公司,陕西 西安 710054,华能威海发电有限责任公司,山东 威海 264205,西安西热节能技术有限公司,陕西 西安 710054,深能合和电力(河源)有限公司,广东 河源 517000,哈尔滨锅炉厂有限责任公司,黑龙江 哈尔滨 150046,深能合和电力(河源)有限公司,广东 河源 517000
基金项目:国家重点研发计划(2017YFB0902100)
摘    要:为解决临机加热系统复杂和推广困难的问题,对临机加热系统的改进方法进行研究。以660 MW超超临界机组临机加热系统实际运行数据为基础,提出通过取消疏水系统简化临机加热系统的改造方法,并对其进行能耗及技术经济分析。研究表明:临机加热系统取消2号高压加热器至除氧器的正常疏水系统可以使系统大幅简化,示例机组投资减少约48%,能耗提高约7%~14%;示例机组在标煤单价800元/t、全年系统投入运行20次条件下,正常疏水系统的投资回收年限为23.63 a;总体来看,简化系统是一种更为经济可行的系统型式。

关 键 词:临机加热;疏水系统;简化改进;节能;660 MW机组

Analysis of Simplification of the Drainage System of Adjacent Heating System
XU Peng-jiang,LI Dong-quan,JU Wen-ping,CHEN Ming,WANG Yong-jie and LIU Xiao-dong. Analysis of Simplification of the Drainage System of Adjacent Heating System[J]. Journal of Engineering for Thermal Energy and Power, 2019, 34(5): 136
Authors:XU Peng-jiang  LI Dong-quan  JU Wen-ping  CHEN Ming  WANG Yong-jie  LIU Xiao-dong
Abstract:In order to solve the problem of complex and difficult popularization of the adjacent heating system,this paper studies the improvement method of the adjacent heating system.A detailed analysis of the improvement of the adjacent heating system is presented,and the influence on energy consumption and the impact of overall technical and economic is given based on a 660 MW ultra supercritical unit.The elimination of the normal drainage system of No.2 high pressure heater to deaerator can greatly simplify the system.With the example of the unit,the investment is reduced by about 48% and the energy consumption is improved by about 7%~14%.From the technical and economic analysis,the investment recovery period of the normal drainage system is 23.63 years under the condition that the price of the standard coal is 800 Yuan/T and the system is put into operation 20 times a year.Overall,the simplified system is a more economical and feasible system type.
Keywords:adjacent heating system  drainage system  simplification  energy conservation  660 MW unit
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