采用相变材料蓄热器的小功率核电站

V.A. Lebedev, A.S. Deev, A.D. Stupkin
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摘要

核电站的特点是机动性低。当使用核电站作为能源时,这一事实加剧了发电和消耗电力的平衡问题。这个问题与孤立的电力系统特别相关。提高核电站可操作性的方法之一是在核电厂回路中直接使用蓄热器。在NPP回路中安装蓄热器的两种最有吸引力的方案进行了研究:1)与高压加热器并联以加热给水;2)为低压钢瓶产生附加蒸汽。通过对带蓄热器的核电站热方案的计算,确定了各方案的效率。计算了在核电站回路中加入蓄热器时,汽轮机组的功率和发电量。对所得数据的分析表明,在NPP回路中采用蓄热器与高压加热器并联加热给水时,在蓄热器排放方式下,汽轮机组功率提高7.2%,每千克废汽因蓄热而产生的额外发电量为0.63 MJ。当使用蓄热器为低压汽缸产生附加蒸汽时,在蓄热器排出模式下,汽轮机组的功率增加了6.6%,每千克废蒸汽由于蓄热产生的附加功率为0.40 MJ。在核电站回路中应用蓄热器将允许在高需求时段使用积累的热量产生额外的电力。因此,在NPP回路中使用蓄热器是增加核电站可操作性,减少可操作性模式对NPP设备的负面影响,减少液态放射性废物数量的一种方式。在NPP回路中使用蓄热器最有效和最简单的方法是将其与高压加热器并联安装。在未来,计划确定蓄热器的设计,模拟蓄热器中的换热过程
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-power NPP with heat accumulator with phase change material
Nuclear power plants (NPP) are characterized by low maneuverability. This fact exacerbates the problem of the balance of generated and consumed power when nuclear power plants are used as an energy source. This problem is especially relevant for isolated power systems. One of the ways to increase the maneuverability of nuclear power plants is to use heat accumulators directly in the NPP circuit. The study is carried out for two most attractive options of including a heat accumulator in the NPP circuit: 1) parallel to a high-pressure heater to heat feed water; 2) to generate additional steam for a low-pressure cylinder. The efficiency of each of the options is determined based on the calculation of thermal schemes of nuclear power plants with a heat accumulator. The authors have calculated the power of the turbine unit and electricity generation when a heat accumulator is included in the nuclear power plant circuit. The analysis of the data obtained shows that when using a heat accumulator in the NPP circuit in parallel with high pressure heater to heat feed water, the power of the turbine unit is increased by 7,2 % in the accumulator discharge mode, and additional electricity generation due to accumulated heat is 0,63 MJ for each kilogram of waste steam. When using a heat accumulator to generate additional steam for a low-pressure cylinder, the power of the turbine unit is increased by 6,6 % in the accumulator discharge mode, and the additional power generation due to the accumulated heat is 0,40 MJ per kilogram of waste steam. Application of heat accumulators in the NPP circuits will allow using the accumulated heat to generate additional electricity during high demand hours. Thus, the use of heat accumulators in NPP circuits is a way to increase the maneuverability of nuclear power plants, to reduce the negative impact of maneuverable modes on NPP equipment, and to reduce the number of liquid radioactive waste. The most effective and simple way to use the heat accumulator in the NPP circuit is to install it in parallel to the high-pressure heaters. In future, it is planned to determine the design of the heat accumulator, to model heat exchange processes in the heat accumulator
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