Horizontal Steam Generators: Design Improvement and Experimental-and-Computational Studies (Review)

IF 0.9 Q4 ENERGY & FUELS
V. N. Blinkov, A. V. Dedov, I. V. Elkin, V. I. Melikhov, O. I. Melikhov, S. M. Nikonov, A. S. Nikulin
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Abstract

A review is presented of designs of horizontal steam generators (SG) for nuclear power plants (NPP) with water-moderated water-cooled reactors (VVERs) and of experimental-and-computational studies of thermohydraulic processes running in them. Horizontal SGs are examined from the first commercial design of the PGV-440 SG and the most widely used today PGV-1000M SG to the steam generators developed for the new generation reactor units of types VVER-1200 and VVER-TOI as well as for the high-power VVER-1500 reactor. A comparative analysis was carried out of the experimental facilities developed for the investigation of thermohydraulic processes occurring in a horizontal steam generator. Each of the examined experimental facilities has limitation related to the capabilities for the simulation of a full-scale SG caused by either geometric characteristics or thermohydraulic conditions. Nevertheless, it has been demonstrated that we have at present a sufficiently large experimental database suitable for validating computational codes simulating thermohydraulic characteristics of a horizontal steam generator. A review of the available computational codes is presented. The STEG code in which the two-phase flow is described by multifluid models is examined in more detail. The validation of the STEG code against experimental data on void fraction, pressure drop, and water velocity demonstrated high accuracy of the predictions. One of the problems to be solved in designing horizontal steam generators for new generation reactor units is the improvement of the equalization ability of the submerged and steam-receiving perforated sheets due to the enhanced nonuniformity of the steam load on the evaporation surface and of the steam flow in the steam space. The results are presented of the experimental-and-computational investigation of the equalization ability of perforated sheets, which corroborate the possibility of its improvement by application of a variable perforation ratio. The areas of further experimental investigations into thermohydraulic processes in a horizontal steam generator and ideas for improving the computational codes are formulated.

卧式蒸汽发生器:设计改进和实验与计算研究(综述)
综述了水慢化水冷堆核电站卧式蒸汽发生器的设计,以及在卧式蒸汽发生器中运行的热水力过程的实验和计算研究。从PGV-440 SG的第一个商业设计和今天最广泛使用的PGV-1000M SG到为VVER-1200和VVER-TOI型新一代反应堆单元以及大功率VVER-1500反应堆开发的蒸汽发生器,对水平SGs进行了检查。对为研究卧式蒸汽发生器中发生的热水力过程而研制的实验装置进行了比较分析。由于几何特性或热水力条件的原因,每个被检查的实验设施在模拟全尺寸SG的能力方面都有限制。然而,已经证明,我们目前有一个足够大的实验数据库,适合验证模拟卧式蒸汽发生器热水力特性的计算代码。对现有的计算代码进行了回顾。对用多流体模型描述两相流的STEG代码进行了更详细的研究。通过对孔隙率、压降和水流速等实验数据的验证,证明了STEG程序预测的准确性。新一代反应堆卧式蒸汽发生器设计中需要解决的问题之一是由于蒸发面蒸汽负荷的不均匀性和蒸汽空间内蒸汽流动的不均匀性增强,提高浸没式和受汽式穿孔板的均衡能力。介绍了穿孔板均匀化能力的实验和计算研究结果,证实了应用可变穿孔比可以提高均匀化能力的可能性。提出了进一步研究卧式蒸汽发生器热水力过程的实验领域和改进计算程序的设想。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.30
自引率
20.00%
发文量
94
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