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首页> 外文期刊>Journal of nuclear engineering and radiation science >Optimization of the PGV-1000MKO Steam Generator Using Computation Fluid Dynamics
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Optimization of the PGV-1000MKO Steam Generator Using Computation Fluid Dynamics

机译:使用计算流体动力学优化PGV-1000MKO蒸汽发生器

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摘要

This paper presents the work carried out in Experimental and design organization OKB "GIDROPRESS" to justify the separation characteristics of VVER-TOI steam generator (SG) using the STAR-CCM+ CFD-code. In the VVER-TOI project, new layout solutions were applied in the reactor plant as part of which the steam removal system from the SG was changed. Namely, in contrast to the VVER-1000 and VVER-1200 where the steam removal was organized through ten nozzles combined into a steam collector, in the VVER-TOI SG the steam removal was arranged through one nozzle located on the cold collector side. This change leads to the formation of a nonuniform velocity field in the separation volume, between the evaporation surface and the distribution perforated plate (DPP), and can lead to the excessive increase of steam humidity. To ensure the steam separation characteristics of a horizontal SG with one steam nozzle, it was proposed to create a nonuniform resistance on the way of steam motion from the evaporation suiface into steam nozzle applying a nonuniform degree of the DPP perforation. Two computer models of the SG steam volume with different steam removal schemes (through one and ten nozzles) were developed, a set of studies on verification and validation was carried out and a set of calculations were performed. According to the results of the calculations, the necessity of introducing a nonuniform degree of the DPP perforation was justified. Further, to determine the nonuniform degree of DPP perforation, a set of optimization calculations of the SG steam volume with one steam removal nozzle was performed. The nonuniform degree of DPP perforation of the WER-TOI SG was selected, which provide steam velocity distribution as close as possible to the SG with ten steam nozzles. To justify the chosen design, sensitivity analysis was also carried out according to the hole diameters tolerance and steam load profile.
机译:本文介绍了OKB“GIDROPRESS”实验和设计机构利用STAR-CCM+CFD程序验证VVER-TOI蒸汽发生器(SG)分离特性的工作。在VVER-TOI项目中,反应堆厂房采用了新的布局解决方案,作为SG蒸汽排出系统变更的一部分。也就是说,与VVER-1000和VVER-1200相比,VVER-1000和VVER-1200中的蒸汽排出是通过组合到蒸汽收集器中的十个喷嘴进行的,而在VVER-TOI SG中,蒸汽排出是通过位于冷收集器侧的一个喷嘴进行的。这种变化导致在蒸发面和分配多孔板(DPP)之间的分离体积内形成不均匀的速度场,并可能导致蒸汽湿度过度增加。为了确保带有一个蒸汽喷嘴的卧式蒸汽发生器的蒸汽分离特性,建议在蒸汽从蒸发面进入蒸汽喷嘴的过程中,施加不均匀程度的DPP穿孔,以产生不均匀阻力。开发了具有不同蒸汽排出方案(通过一个和十个喷嘴)的SG蒸汽体积的两个计算机模型,进行了一系列验证和验证研究,并进行了一系列计算。根据计算结果,证明了引入DPP射孔不均匀度的必要性。此外,为了确定DPP穿孔的不均匀程度,对带有一个蒸汽排出喷嘴的SG蒸汽体积进行了一组优化计算。WER-TOI蒸汽发生器DPP穿孔的不均匀程度被选中,这使得蒸汽速度分布尽可能接近带有十个蒸汽喷嘴的蒸汽发生器。为了证明所选设计的合理性,还根据孔径公差和蒸汽负荷曲线进行了灵敏度分析。

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