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Multi-dimensional void fraction measurement of transient boiling two-phase flow in a heated rod bundle

机译:加热棒束中瞬态沸腾两相流的多维空隙率测量

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A subchannel void sensor (SCVS) was developed to measure the cross-sectional distribution of void fraction in a 5×5 heated rod bundle with o.d. 10 mm and heated length 2000 mm, and applied to a boiling two-phase flow experiment under the atmospheric pressure condition assuming at an accident or in a spent fuel pool in a boiling water reactor (BWR). The SCVS comprises 6-wire by 6-wire and 5-rod by 5-rod electrodes. The wire electrodes of 0.2 mm in diameter are arranged in lattice patterns between the rod bundle, while the electric conductance value in a region near one wire and another corresponds to local void fraction in the central-subchannel region. The local void fractions at 32 points (= 6×6-4) can be obtained as a cross-sectional distribution. The local void fractions near the rod surface at 100 points (= 4×25) can be also estimated by the conductance value in a region between one wire and one rod. The devised sensors are installed at five height levels along the axis to acquire two-phase flow behavior. A pair of SCVS is mounted at each level and placed 30 mm apart to estimate the one-dimensional phasic velocity distribution based on the cross-correlation analysis of both layers. The temporal resolution of void fraction measurement is 1600 frames (cross-sections) per second. The axial and radial power profile of the heated rod bundle are uniform, and eight pairs of sheath thermocouples are embedded on the heated rod to monitor its surface temperature distribution. The boiling two-phase flow experiment, which simulated a boil-off process, was conducted with the devised SCVS and experimental data was acquired under various inlet flow velocity, rod bundle power and inlet subcooling conditions. The experimental results were presented by the axial and cross-sectional distributions of void fraction, phasic velocity and bubble-chord length.
机译:开发了子通道空隙传感器(SCVS)以测量5×5加热棒束中o.d的空隙率的横截面分布。 10 mm,加热长度2000 mm,并在大气压条件下(假设发生事故或在沸水反应堆(BWR)中的乏燃料池中)用于沸腾两相流实验。 SCVS包括6线乘6线和5杆乘5杆的电极。直径0.2mm的线电极以格子图案布置在棒束之间,而一根线和另一根线附近的区域中的电导率值对应于中央子通道区域中的局部空隙率。可获得32点(= 6×6-4)的局部空隙率作为截面分布。还可以通过一根导线和一根杆之间的区域中的电导值来估计杆表面附近100点(= 4×25)处的局部空隙率。设计的传感器沿轴安装在五个高度级别,以获取两相流动特性。一对SCVS安装在每个高度上,并相距30 mm,以基于两层的互相关分析来估计一维相速度分布。空隙率测量的时间分辨率为每秒1600帧(横截面)。加热棒束的轴向和径向功率分布是均匀的,并且在加热棒上嵌入了八对护套热电偶以监测其表面温度分布。利用设计的SCVS进行了沸腾两相流实验,模拟了沸腾过程,并在各种入口流速,棒束功率和入口过冷条件下获得了实验数据。实验结果由空隙率的轴向和横截面分布,相速度和气泡弦长度表示。

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