首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >PARTICLE IMAGE VELOCIMETRY MEASUREMENTS IN A REPRESENTATIVE GAS- COOLED PRISMATIC REACTOR CORE MODEL: FLOW IN THE COOLANT CHANNELS AND INTERSTITIAL BYPASS GAPS
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PARTICLE IMAGE VELOCIMETRY MEASUREMENTS IN A REPRESENTATIVE GAS- COOLED PRISMATIC REACTOR CORE MODEL: FLOW IN THE COOLANT CHANNELS AND INTERSTITIAL BYPASS GAPS

机译:代表性气冷棱镜反应器核心模型中的粒子图像速度测量测量:冷却剂通道中的流动和间隙旁路间隙

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Core bypass flow is one of the key issues with the prismatic Gas Turbine-Modular Helium Reactor, and it refers to the coolant that navigates through the interstitial passages between the graphite fuel blocks instead of traveling through the designated coolant channels. To determine the bypass flow, a double scale representative model was manufactured and installed in the Matched Index-of-Refraction flow facility; after which, stereo Particle Image Velocimetry (PIV) was employed to measure the flow field within. PIV images were analyzed to produce vector maps, and flow rates were calculated by numerically integrating the velocity field. It was found that the bypass flow varied between 6.9-15.8% for channel Reynolds numbers of 1,746 and 4,618 with a 6mm gap. The results were compared to computational fluid dynamic (CFD) pre-test simulations. When compared to these pretest calculations, the CFD analysis appeared to under predict the flow through the gap.
机译:核心旁路流是棱柱形燃气轮机 - 模块化氦反应器的关键问题之一,它是指通过石墨燃料块之间的间隙通道导航的冷却剂而不是通过指定的冷却剂通道行进。为了确定旁路流,在匹配的折射率流动设施中制造并安装了双模代表模型;之后,采用立体声粒子图像速度(PIV)测量内部的流场。分析PIV图像以产生矢量图,通过数值整合速度场来计算流速。发现旁通流量在6mm间隙的频道雷诺数为1,746和4,618之间的6.9-15.8%之间变化。将结果与计算流体动态(CFD)预测试模拟进行了比较。与这些预测的计算相比,CFD分析似乎在预测流过间隙的情况下。

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