首页> 外文期刊>International Journal of Heat and Mass Transfer >Flow visualization study at the interface of alternating pitch tube bundles in a model helical coil steam generator using particle image velocimetry
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Flow visualization study at the interface of alternating pitch tube bundles in a model helical coil steam generator using particle image velocimetry

机译:模型粒子螺旋测速法在模型螺旋线圈蒸汽发生器中交替节距管束界面的流动可视化研究

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A simplified Helical Coil Steam Generator (HCSG) model was constructed to study the flow on the shell side of rod bundles that coil against one another, using a 12-degree single rod bundle interface. The test section maintained a transverse pitch-to-diameter ratio of 2.98 while lateral pitch-to-diameter ratio constantly changed. To resolve optical distortions, experiments used para-cymene to match the refractive index of the test section. Three equally spaced regions of interest along the length of the model each have unique lateral rod pitch ratios. Experiments focused to capture the flow fields at each section between the adjacent coils at Reynolds number of 9,000. Particle image velocimetry is used for velocity measurements. The flow velocity in both the stream-wise (y-axis) and transverse (x-axis) directions for each plane, vorticity and streamline plots, used Reynolds Stresses for u′u′, v′v′ and u′v′ for different geometric coordinates are presented. The wake and center streamline regions between the rod bundles demonstrate the complex flow structures and interactions between local adjacent rods that the changing geometry of the helical coil steam generator produces throughout its configuration. Previous studies on straight tube heat exchanger models identify the formation of vortices behind rods that form dependent on an in-line or staggered tube bundle reliant on the pitch ratios. Averaged flow visualization data for the tested model HCSG suggest that flow characteristics follow their relative location to bundle formations instead of pitch-ratio.
机译:构建了一个简化的螺旋线圈蒸汽发生器(HCSG)模型,以使用12度单杆束接口研究彼此缠绕的杆束的壳侧流动。测试部分保持横向螺距与直径之比为2.98,而横向螺距与直径之比不断变化。为了解决光学畸变,实验使用对苯异丙基苯甲醚来匹配测试部分的折射率。沿着模型长度的三个等距的关注区域每个都有独特的横向杆螺距比。实验的重点是捕获雷诺数为9,000的相邻线圈之间每个部分的流场。粒子图像测速仪用于速度测量。每个平面的流向(y轴)和横向(x轴)方向上的流速,涡度图和流线图,用于u'u',v'v'和u'v'的雷诺应力用于提出了不同的几何坐标。棒束之间的尾流和中心流线区域显示出复杂的流动结构和局部相邻棒之间的相互作用,螺旋形线圈蒸汽发生器的不断变化的几何形状在其整个结构中产生。以前对直管式换热器模型的研究确定了棒后的涡流,这些涡流的形成依赖于取决于节距比的直列或交错管束。被测模型HCSG的平均流量可视化数据表明,流量特性遵循其相对位置的成束形式,而不是螺距比。

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