200MW机组低真空供热改造方案及节能分析  被引量:6

Reconstruction Scheme of Low Vacuum Heating and Energy Saving Analysis for a 200MW Unit

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作  者:陈永辉 李志强 蒋志庆 陈晓利 付强 胡丽敏 CHEN Yong-hui;LI Zhen-qiang;JIANG Zhi-qing;CHEN Xiao-li;FU Qiang;HU Li-min(CPI Northeast Energy Technology Company Limited,Shenyang 110179,China;SPIC Northeast Electric Power Company Limited,Shenyang 110181,China;Fuxin Power Generation Company Limited,Fuxin 123001,China)

机构地区:[1]中电投东北能源科技有限公司,沈阳110179 [2]国家电投东北电力有限公司,沈阳110181 [3]阜新发电有限责任公司,阜新123001

出  处:《汽轮机技术》2019年第6期468-470,420,共4页Turbine Technology

基  金:国家电力投资集团公司科技项目(2018-009-KJ-DBGS)

摘  要:针对某200MW供热机组,通过分析两种低压通流改造方案的技术特征与改造内容,确定了最优改造方案,给出了汽轮机及热网系统的改造技术方案,并对改造前后机组采暖热负荷和性能指标进行对比分析。分析得出采用低压通流部分改造方案更有利于该机组供热节能升级改造,降低投资和运行维护成本。1号机组改造后,全厂的供热能力和发电出力均有提高,节能效果显著。改造后,1号机组供热能力由94MW增至281.6MW,增加了187.6MW;发电煤耗率由改造前的269.2g/(kW·h)降至138.9g/(kW·h),降低了130.3g/(kW·h),全厂年节约标煤量为70 920t。In this paper,aiming at a 200 MW heat supply unit,through analyzing the technical features and contents of two low-pressure through-flow transformation schemes,the optimal transformation scheme is determined,the transformation technical scheme of steam turbine and heat network system is given,and the heating heat load and performance index of the unit before and after transformation are compared and analyzed.The analysis shows that the adoption of low-pressure through-flow part renovation scheme is more conducive to the upgrading of heat supply and energy saving of the unit,and reduces investment and operation and maintenance costs.After the renovation of Unit 1,the heating capacity and power generation output of the whole plant have been improved,and the energy saving effect is remarkable.After renovation,the heating capacity of Unit 1 increased from 94 MW to 281.6 MW,an increase of 187.6 MW.The coal consumption rate for power generation decreased from 269.2 g/(kW·h)before the transformation to 138.9 g/(kW·h),reducing 130.3 g/(kW·h),and the annual standard coal saving of the whole plant was 70920 tons.

关 键 词:200MW供热机组 低真空供热 汽轮机 改造方案 供热能力 

分 类 号:TK267[动力工程及工程热物理—动力机械及工程]

 

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