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Development of a Thermal Scheme for a Cogeneration Combined-Cycle Unit with an SVBR-100 Reactor

机译:为带有SVBR-100反应器的热电联产联合循环机组开发热方案

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At present, the prospects for development of district heating that can increase the effectiveness of nuclear power stations (NPS), cut down their payback period, and improve protection of the environment against harmful emissions are being examined in the nuclear power industry of Russia. It is noted that the efficiency of nuclear cogeneration power stations (NCPS) is drastically affected by the expenses for heat networks and heat losses during transportation of a heat carrier through them, since NPSs are usually located far away from urban area boundaries as required for radiation safety of the population. The prospects for using cogeneration power units with small or medium power reactors at NPSs, including combined-cycle units and their performance indices, are described. The developed thermal scheme of a cogeneration combined-cycle unit (CCU) with an SBVR-100 nuclear reactor (NCCU) is presented. This NCCU should use a GE 6FA gas-turbine unit (GTU) and a steam-turbine unit (STU) with a two-stage district heating plant. Saturated steam from the nuclear reactor is superheated in a heat-recovery steam generator (HRSG) to 560-580℃ so that a separator-superheater can be excluded from the thermal cycle of the turbine unit. In addition, supplemental fuel firing in HRSG is examined. NCCU effectiveness indices are given as a function of the ambient air temperature. Results of calculations of the thermal cycle performance under condensing operating conditions indicate that the gross electric efficiency of η~(gr)_(el nccU) = 48% and N~(gr)_(cl nccu) = 345 MW can be achieved. This efficiency is at maximum for NCCU with an SVBR-100 reactor. The conclusion is made that the cost of NCCU installed kW should be estimated, and the issue associated with NCCUs siting with reference to urban area boundaries must be solved.
机译:目前,俄罗斯核电行业正在研究可提高核电站(NPS)的效率,缩短其投资回收期并改善对环境的有害排放保护的区域供热的发展前景。应当指出的是,由于热网络的费用和热载体通过它们的运输过程中的热损失,核热电联产电站(NCPS)的效率会受到极大的影响,因为根据辐射的要求,NPS通常位于远离市区边界的位置人口安全。描述了在NPS上将热电联产动力单元与中小型反应堆一起使用的前景,包括联合循环单元及其性能指标。介绍了带有SBVR-100核反应堆(NCCU)的热电联产联合循环机组(CCU)的开发热方案。该NCCU应使用GE 6FA燃气轮机(GTU)和带有两级区域供热装置的蒸汽轮机(STU)。核反应堆中的饱和蒸汽在热回收蒸汽发生器(HRSG)中过热至560-580℃,因此可以将分离器过热器排除在涡轮机的热循环之外。此外,还对HRSG中的辅助燃料点火进行了检查。 NCCU有效性指标是环境空气温度的函数。冷凝工况下热循环性能的计算结果表明,总电效率η〜(gr)_(el nccU)= 48%,N〜(gr)_(cl nccu)= 345 MW。对于带有SVBR-100电抗器的NCCU,此效率最高。得出的结论是,应该估算NCCU安装的kW的成本,并且必须解决与NCCU选址相对于城市边界有关的问题。

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