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The Experimental Study on Mixing Characteristics in a Square Subchannel Geometry with Typical Flow Deflectors

机译:具有典型导流板的方形子通道几何形状混合特性的实验研究

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The lateral flow structures in a subchannel geometry were carefully examined in an enlarged 5 × 5 rod bundle array by using a two-color LDA system. The detailed measurement data of lateral velocities in subchannels have been obtained as fabricating the rod bundle array 2.6 times larger than the real bundle size. Two types of flow deflectors were selected for the test: a conventional split-type mixing vane and a swirl-type vane that had been designed to enhance the swirling flow in a subchannel. Experiments were performed in a cold test loop facility at KAERI. The experimental conditions were normal pressure (1.5 bar) and temperature (35℃). The average axial velocity was maintained at 1.5 m/s and was equivalent to Re = 50,000. From the experimental results, specific flow characteristics for each vane types were observed.
机译:通过使用双色LDA系统,在放大的5×5杆束阵列中仔细检查了子通道几何结构中的横向流动结构。通过制造比实际束尺寸大2.6倍的杆束阵列,可以获得子通道中横向速度的详细测量数据。测试中选择了两种类型的导流板:传统的分流式混合叶片和涡流式叶片,其设计用于增强子通道中的涡流。实验是在KAERI的冷试循环设备中进行的。实验条件为常压(1.5 bar)和温度(35℃)。平均轴向速度保持在1.5 m / s,相当于Re = 50,000。从实验结果,观察到每种叶片类型的特定流动特性。

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