Effect of Water Jet Behavior on the Operating Range in Supersonic Steam Injector

Yukiya Minamizono, A. Kaneko
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Abstract

In the case of a severe accident, such as a loss of power supply, it is necessary to keep the nuclear power plant in a safe condition. Therefore, steam-water injectors (SI) have been attracting attention as a device that can cool the plant without power supply in the event of a severe accident. In a SI, the steam condenses by direct contact between steam and water interface. As the steam condenses, negative pressure is generated, and a force that attracts water is generated. The SI can process a large amount of cooling water with this force. It can also function as a reactor condenser for nuclear reactors due to its high condensation performance. There are some characteristics of SI that the discharge pressure is expected to exceed the inlet pressure after being accelerated at the throat, and it has a very simple structure with converging-diverging part, which is expected to reduce the cost of installation and maintenance. Previous studies have indicated that GROLMES et al. (1968) inferred the flow in the reduced test section by measuring the void fraction and MIWA et al. (2018) suggested a relationship between internal flow and the operating range of SI, referring to the results inferred by GROLMES et al. (1968). Although these existing studies have suggested some relationship between the internal flow and the operating range, the relationship between the stability of the water jet and the behavior of the SI has not been clarified. Therefore, the aim of this study is to clarify the effect of water jet behavior on the operating range of SI. The taper angle of the water jet outlet was varied and the relationship between the water jet behavior and the operating range was investigated. In this study, experiments were conducted using two types of taper angles at the water jet outlet: 20 and 7 degrees. As a result of detailed observation inside the SI, it was confirmed that the water jet with the taper angle of 7 degrees was less spreading than that with the taper angle of 20 degrees. In the operating range of this experiment, no significant difference was observed when the taper angle of the water jet was changed. However, it is suggested that the water jet with a certain degree of dispersion might be better in terms of heat exchange due to large surface area. These results suggest that the stability of the water jet is a necessary but not a sufficient condition for operation.
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水射流行为对超音速蒸汽喷射器工作范围的影响
在发生严重事故(如失去电力供应)的情况下,有必要使核电站处于安全状态。因此,蒸汽-水喷射器(SI)作为一种能在发生严重事故时在没有电力供应的情况下冷却核电站的装置,一直备受关注。在蒸汽-水喷射器中,蒸汽通过与水界面的直接接触而冷凝。蒸汽冷凝时会产生负压,并产生吸引水的力。利用这种力量,SI 可以处理大量冷却水。由于冷凝性能高,它还可用作核反应堆的冷凝器。SI 的一些特点是,在喉部加速后,排出压力有望超过入口压力,而且它的汇流-分流部分结构非常简单,有望降低安装和维护成本。以往的研究表明,GROLMES 等人(1968 年)通过测量空隙率推断出缩小试验段的流量,MIWA 等人(2018 年)参考 GROLMES 等人(1968 年)推断的结果,提出了内部流量与 SI 工作范围之间的关系。虽然这些现有研究提出了内部流动与工作范围之间的某种关系,但水射流的稳定性与 SI 行为之间的关系尚未明确。因此,本研究旨在阐明水射流行为对 SI 工作范围的影响。我们改变了水射流出口的锥角,并研究了水射流行为与工作范围之间的关系。在这项研究中,实验使用了两种类型的水射流出口锥角:20 度和 7 度。通过对 SI 内部的详细观察,证实锥角为 7 度的水射流比锥角为 20 度的水射流的扩散性要小。在本实验的工作范围内,改变水射流的锥角没有观察到明显的差异。不过,有观点认为,具有一定分散度的水射流由于表面积大,热交换效果可能更好。这些结果表明,水射流的稳定性是运行的必要条件,但不是充分条件。
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