首页> 外文会议>10th International Conference on Nuclear Engineering, Vol.3, Apr 14-18, 2002, Arlington, Virginia >STUDY ON EX-VESSEL COOLING OF RPV (MODEL ANALYSIS OF CRITICAL HEAT FLUX ON INCLINED PLATE FACING DOWNWARD AND DEVELOPMENT TO HEMISPHERICAL SURFACE)
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STUDY ON EX-VESSEL COOLING OF RPV (MODEL ANALYSIS OF CRITICAL HEAT FLUX ON INCLINED PLATE FACING DOWNWARD AND DEVELOPMENT TO HEMISPHERICAL SURFACE)

机译:RPV的容器外冷却研究(斜板向下向下并向半球形表面发展的临界热通量模型分析)

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The cooling of the Ex-vessel in Light-Water-Reactors has been proposed to maintain reactor vessel integrity during a severe accident. The critical heat flux -CHF- from the underside of down-facing convex surfaces, like hemispheres, is important to the assessment of the cooling. The authors examined CHFs on inclined plates under saturated boiling experimentally, focusing on the effect of the inclination angle on the CHF and characteristic length and velocity of coalesced bubbles near the heater at the CHF. In this study, the critical heat fluxes on the inclined plates in saturated boiling were investigated analytically by using the macrolayer model and the Kelvin-Helmholtz instability, based on our previous experimental report. Furthermore, the present model was developed for the CHF on a hemispheric surface. In the present model, the most dangerous wavelength and propagative velocity of the wave in the Kelvin-Helmholtz instability for ideal fluid with vapor flow of finite thickness and surface tension on liquid-vapor interface were calculated to determine the length and the velocity of the coalesced bubble on the heating surface at CHF. The time covered over the heater with the bubble was estimated as the calculated value with the length divided by the velocity. The predictions of the present CHF model by using the macrolayer model for CHF and the Kelvin-Helmholtz instability for the characteristic values of the coalesced bubble agree well with previous experimental data for CHF on inclined plates with 30 to 180 degree in orientation. Furthermore, the present model given as a function of the inclination angle relative to the horizontal downward plate was extended to CHF on a hemispheric surface. The CHFs obtained by the present model are in qualitative agreement with experimental data on hemispheres reported by some investigators.
机译:有人建议在轻水反应堆中对防爆容器进行冷却,以在发生严重事故时保持反应堆容器的完整性。来自下表面的凸面(如半球)的底面的临界热通量-CHF-对冷却评估很重要。作者通过饱和沸腾实验对倾斜板上的CHF进行了实验,重点研究了倾斜角对CHF的影响以及加热器附近在CHF处聚结气泡的特征长度和速度。在这项研究中,基于我们以前的实验报告,通过使用宏观层模型和开尔文-亥姆霍兹不稳定性,对饱和沸腾斜板上的临界热通量进行了分析研究。此外,本模型是针对半球形表面上的CHF开发的。在本模型中,计算了具有有限厚度的蒸气流和液-气界面上的表面张力的理想流体在Kelvin-Helmholtz不稳定性中的最危险的波长和传播速度,以确定聚结的长度和速度CHF加热表面上的气泡。加热器在气泡上所覆盖的时间被估算为计算值,其长度除以速度。通过使用CHF宏观模型和聚结气泡特征值的Kelvin-Helmholtz不稳定性对当前CHF模型进行的预测与先前在取向为30至180度的倾斜板上进行CHF的实验数据非常吻合。此外,根据相对于水平向下板的倾斜角给出的本模型在半球面上扩展到了CHF。通过本模型获得的瑞士法郎与一些研究者报道的关于半球的实验数据在质量上吻合。

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