An experimental research of the influence on critical heat flux of a rod bundle under certain inlet temperatures

IF 2.6 4区 工程技术 Q3 ENERGY & FUELS Frontiers in Energy Research Pub Date : 2024-07-29 DOI:10.3389/fenrg.2024.1340675
Minghui Duan, Minfu Zhao, Junhan Wei, Yongwang Xu
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Abstract

Critical heat flux (CHF) is one of the most concerned thermal hydraulic phenomena in reactor safety analysis. It involves complex two-phase flow heat transfer mechanism, and has not been fully understood, so the prediction of critical heat flux mainly depends on CHF correlations obtained under limited experimental conditions. At present, CHF correlations are generally developed with pressure, mass flux and quality as key independent variables. And correspondingly, the test matrix of a CHF test consists of the above parameters. However, it is impossible to perform CHF tests accurately according to the predetermined quality. In CIAE, a CHF experimental research of a 5 × 5 uniformly heated rod bundle has been carried out. In the experiment, the inlet temperature of the test section was directly taken as a parameter in the test matrix. The CHF data were achieved by stepwise increasing the heating power. The test conditions covered the pressure of 2.8–15.5 MPa, the mass flux of 845–3533 kg/(m2·s), and the inlet temperature of 100°C–300°C. The test data have been analyzed to obtain the thermal-hydraulic parameter influences on CHF by taking the inlet temperature as a variable. The results indicated that, within the test condition range, under the same inlet temperatures, CHF was hardly affected by pressure, and linearly increased with the increasing mass flux. With the increase of inlet temperature, the enhancement of CHF with the increasing mass flux gradually weakens. And CHF was linearly decreased with the increasing inlet temperature under the same mass flux. By contrast, the parameter influences on CHF were more complex by taking the local quality as a variable. According to the research, it can be concluded that, it has an advantage of simplifying the CHF correlation form to take the inlet temperature of the test section as a variable parameter. The research can provide new ideas for CHF experiment, data analysis and correlation development.
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特定入口温度下杆束临界热通量影响的实验研究
临界热通量(CHF)是反应堆安全分析中最受关注的热工水力现象之一。它涉及复杂的两相流传热机理,尚未被完全理解,因此临界热通量的预测主要依赖于在有限实验条件下获得的 CHF 相关性。目前,CHF 相关性一般以压力、质量通量和质量作为关键自变量。相应地,CHF 试验的试验矩阵也由上述参数组成。然而,CHF 试验不可能按照预定的质量精确进行。CIAE 对 5 × 5 均匀加热棒束进行了 CHF 试验研究。在实验中,测试部分的入口温度被直接作为测试矩阵中的一个参数。通过逐步提高加热功率获得了 CHF 数据。试验条件包括压力为 2.8-15.5 MPa,质量通量为 845-3533 kg/(m2-s),入口温度为 100°C-300°C。以入口温度为变量,对试验数据进行了分析,以获得热液参数对 CHF 的影响。结果表明,在试验条件范围内,相同的入口温度下,CHF 几乎不受压力的影响,并且随着质量通量的增加而线性增加。随着入口温度的升高,CHF 随质量通量增加而增强的趋势逐渐减弱。在相同的质量通量下,CHF 随入口温度的升高呈线性下降。相比之下,以局部质量为变量的参数对 CHF 的影响更为复杂。研究结果表明,将试验段入口温度作为变量参数具有简化 CHF 关联形式的优点。该研究可为 CHF 实验、数据分析和相关性开发提供新思路。
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来源期刊
Frontiers in Energy Research
Frontiers in Energy Research Economics, Econometrics and Finance-Economics and Econometrics
CiteScore
3.90
自引率
11.80%
发文量
1727
审稿时长
12 weeks
期刊介绍: Frontiers in Energy Research makes use of the unique Frontiers platform for open-access publishing and research networking for scientists, which provides an equal opportunity to seek, share and create knowledge. The mission of Frontiers is to place publishing back in the hands of working scientists and to promote an interactive, fair, and efficient review process. Articles are peer-reviewed according to the Frontiers review guidelines, which evaluate manuscripts on objective editorial criteria
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