Preliminary Research on the Oxidation Effect of the Carbon Steel Plate of Downward Facing Pool Boiling by Two-Dimensional Image

Kai Wang, N. Erkan, K. Okamoto
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引用次数: 3

Abstract

When considering the safety of the reactor after the core melted, the external reactor vessel cooling (IVR-ERVC) is regarded as one of the most prominent method and is now widely being studied. And in order to apply this method more efficiently, CHF is the utmost part because it limits the upper threshold of the cooling effect. There has already been a large number of investigation on the CHF both by experiment and simulation. But for the experiment, most of them used the copper for its high thermal conductivity. However, the lower plenum is actually composed of the carbon steel instead of copper since the reactor pressure vessel and some core catchers in nuclear power plants are made of this material. This CHF experiment here used carbon steel plate on a downward face. The carbon steel plate was attached to the copper base by solder. The results of the carbon steel plate experiment were then analyzed. After polishing the surface by sandpapers, the heat flux is being increased until CHF was reached. We found that the surface is somehow changed during the heating process. This process was repeated several times, and the growing tendency of the CHF was found. Detailed images of the heating surface acquired by high speed camera under different heat fluxes were also obtained and analyzed. It was found that the more the oxidization was, the fewer bubbles were generated and the bigger the CHF was. Finally some theories of the CHF mechanism were also analyzed. The authors hope that study could shed some light on surface effect on causing different CHF.
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用二维图像初步研究碳钢板的向下池沸腾氧化效果
在考虑堆芯熔毁后反应堆的安全性时,堆外容器冷却(IVR-ERVC)被认为是最重要的冷却方法之一,目前得到了广泛的研究。为了更有效地应用该方法,CHF是最重要的部分,因为它限制了冷却效果的上限。对CHF的实验和模拟已经有了大量的研究。但在实验中,大多数人都使用了铜,因为它的高导热性。然而,由于核电站的反应堆压力容器和一些堆芯收集器是由碳钢制成的,因此,下静压室实际上是由碳钢而不是铜组成的。这个CHF实验在一个向下的表面上使用了碳钢板。碳钢板通过焊料连接到铜底座上。对碳钢板的实验结果进行了分析。用砂纸抛光表面后,热流密度不断增加,直至达到CHF。我们发现在加热过程中表面发生了某种变化。这个过程重复了几次,发现了CHF的增长趋势。并对高速摄像机在不同热流密度下的受热面图像进行了详细分析。结果表明,氧化程度越高,气泡生成越少,CHF越大。最后对CHF机理的一些理论进行了分析。作者希望这项研究能够揭示表面效应对不同CHF产生的影响。
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