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EFFECTS OF HEATER MATERIAL AND SURFACE ORIENTATION ON HEAT TRANSFER COEFFICIENT AND CRITICAL HEAT FLUX OF NUCLEATE BOILING

机译:加热器材料与表面取向对核心沸腾传热系数和临界热通量的影响

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External reactor vessel cooling (ERVC) is the key technology for In-Vessel Retention (IVR) to ensure the safety of a nuclear power plant (NPP) under severe accident conditions. The thermal margin of nucleate boiling heat transfer on the reactor pressure vessel (RPV) lower head is important for ERVC and of wide concern to researchers. In such boiling heat transfer processes, the reactor vessel wall inclination effect on the heat transfer coefficient (HTC) and critical heat flux (CHF) should be considered. In this study, experiments were performed to investigate the effects of heater material and surface orientation on the HTC and CHF of nucleate boiling. Copper and stainless steel (SS) surfaces were used to perform boiling tests under atmosphere pressure. The orientation angle of both boiling surfaces were varied between 0° (upward) and 180° (downward). The experimental results show that the surface orientation effects on the HTC is slight for both the copper surface and the SS surface. In addition, the relationship of measured CHF values with the inclination angles was obtained and it shows that the CHF value changes little as the inclination angle increases from 0° to 120°, but it decreases rapidly as the orientation angle increases towards 180° for both boiling surfaces. The material effect on CHF is also observed and the copper surface has higher CHF value than the SS surface. Based on the experimental data, a correlation for CHF prediction is developed which includes both the surface orientation effect and the heater material effect.
机译:外部反应堆血管冷却(ERVC)是用于血管保留(IVR)的关键技术,以确保核电厂(NPP)在严重事故条件下的安全性。反应器压力容器(RPV)下部头上的核心沸腾热传递的热裕度对于ERVC来说是重要的,以及研究人员的广泛关注。在这种沸腾的传热过程中,应考虑对热传递系数(HTC)和临界热通量(CHF)的反应器血管壁倾斜效应。在该研究中,进行实验以研究加热器材料和表面取向对核心沸腾HTC和CHF的影响。铜和不锈钢(SS)表面用于在大气压力下进行沸腾试验。沸点的方向角在0°(向上)和180°(向下)之间变化。实验结果表明,对于铜表面和SS表面,HTC对HTC的表面取向效果是轻微的。此外,获得了测量的CHF值与倾斜角的关系,并且表明CHF值几乎随着倾斜角从0°增加到120°而变化,但随着方向角度增加到两个°的方向角度增加,它迅速降低沸腾表面。还观察到对CHF的材料效应,并且铜表面具有比SS表面更高的CHF值。基于实验数据,开发了对CHF预测的相关性,其包括表面取向效果和加热器材料效果。

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