E. N. Kulakov, Yu. G. Sukhorukov, D. G. Soenko, I. E. Vikharev, S. B. Esin, F. A. Svyatkin, K. A. Grigoriev, A. V. Popov
{"title":"Optimization of Weight and Size Characteristics and Unification of Heaters of the Regeneration System of NPP Turbine Units","authors":"E. N. Kulakov, Yu. G. Sukhorukov, D. G. Soenko, I. E. Vikharev, S. B. Esin, F. A. Svyatkin, K. A. Grigoriev, A. V. Popov","doi":"10.1134/S0040601524050070","DOIUrl":null,"url":null,"abstract":"<p>When designing new nuclear power plants, it is important to ensure cost-effective electricity production while complying with safety, reliability, and environmental protection requirements. One of the directions for solving this problem is to improve the equipment of nuclear power plants, in particular the search for the most suitable technical solutions for regenerative high- and low-pressure heaters (HPH and LPH) of steam turbine units (STU). Optimization of water subcooling to the saturation temperature of the heating steam (hereinafter referred to as subcooling) in the STU regeneration stages makes it possible to increase the power of the power unit or reduce the metal intensity of the heaters, depending on the expected economic indicators of the nuclear power plant, which leads to a reduction in the estimated cost of generated electricity. Unification of heaters will make it possible to simplify the processes of design, manufacturing, repair, and transportation of serially produced heat-transfer equipment, improve the layout of the turbine building, and reduce equipment development costs. The article presents the results of calculations of the technical and economic indicators of the heat-transfer equipment of the STU regeneration system type K-1200-6.8/50 LMZ, and draws conclusions about the possibility of finding a preferable solution based on the criterion of annual economic effect. A special feature of the methodology used is the determination of the most appropriate values of water subcooling in surface heaters of the STU regeneration system depending on operating conditions, the situation on the electricity and equipment market, as well as economic policy. The possibility of increasing the economic efficiency of the power unit by optimizing the weight and size characteristics and unifying the heat-transfer equipment of the regeneration system is shown. An additional economic effect can be obtained by using chamber-type heaters in a horizontal design, combining two heating stages in one housing. A promising layout option is that in which the entire LPH group is represented by unified surface-type devices in a horizontal design located in the condenser hood of a half-speed STU.</p>","PeriodicalId":799,"journal":{"name":"Thermal Engineering","volume":"71 5","pages":"391 - 399"},"PeriodicalIF":0.9000,"publicationDate":"2024-05-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Thermal Engineering","FirstCategoryId":"1085","ListUrlMain":"https://link.springer.com/article/10.1134/S0040601524050070","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"ENERGY & FUELS","Score":null,"Total":0}
引用次数: 0
Abstract
When designing new nuclear power plants, it is important to ensure cost-effective electricity production while complying with safety, reliability, and environmental protection requirements. One of the directions for solving this problem is to improve the equipment of nuclear power plants, in particular the search for the most suitable technical solutions for regenerative high- and low-pressure heaters (HPH and LPH) of steam turbine units (STU). Optimization of water subcooling to the saturation temperature of the heating steam (hereinafter referred to as subcooling) in the STU regeneration stages makes it possible to increase the power of the power unit or reduce the metal intensity of the heaters, depending on the expected economic indicators of the nuclear power plant, which leads to a reduction in the estimated cost of generated electricity. Unification of heaters will make it possible to simplify the processes of design, manufacturing, repair, and transportation of serially produced heat-transfer equipment, improve the layout of the turbine building, and reduce equipment development costs. The article presents the results of calculations of the technical and economic indicators of the heat-transfer equipment of the STU regeneration system type K-1200-6.8/50 LMZ, and draws conclusions about the possibility of finding a preferable solution based on the criterion of annual economic effect. A special feature of the methodology used is the determination of the most appropriate values of water subcooling in surface heaters of the STU regeneration system depending on operating conditions, the situation on the electricity and equipment market, as well as economic policy. The possibility of increasing the economic efficiency of the power unit by optimizing the weight and size characteristics and unifying the heat-transfer equipment of the regeneration system is shown. An additional economic effect can be obtained by using chamber-type heaters in a horizontal design, combining two heating stages in one housing. A promising layout option is that in which the entire LPH group is represented by unified surface-type devices in a horizontal design located in the condenser hood of a half-speed STU.
在设计新的核电站时,重要的是要确保经济高效的电力生产,同时满足安全性、可靠性和环保要求。解决这一问题的方向之一是改进核电站的设备,特别是为蒸汽轮机组(STU)的再生式高压和低压加热器(HPH 和 LPH)寻找最合适的技术解决方案。根据核电厂的预期经济指标,在 STU 再生阶段优化水过冷度,使其达到加热蒸汽的饱和温度(以下简称过冷度),这样就有可能提高机组功率或降低加热器的金属强度,从而降低发电成本。加热器的统一可以简化系列化生产的换热设备的设计、制造、维修和运输过程,改善汽轮机厂房的布局,降低设备开发成本。文章介绍了 K-1200-6.8/50 LMZ 型 STU 再生系统换热设备的技术和经济指标的计算结果,并根据年经济效益标准得出了找到最佳解决方案的可能性结论。所使用方法的一个特点是,根据运行条件、电力和设备市场情况以及经济政策,确定 STU 再生系统表面加热器中水过冷度的最适当值。通过优化重量和尺寸特性以及统一再生系统的传热设备,可以提高动力装置的经济效益。在水平设计中使用箱式加热器,将两个加热阶段合并在一个外壳中,可以获得额外的经济效益。一个很有前景的布局方案是,整个低压换热器组由统一的表面型设备组成,采用水平设计,位于半速 STU 的冷凝器罩内。