首页> 外文会议>International conference on the physics of reactors;PHYSOR 2012 >PACKING MICROSTRUCTURE AND LOCAL DENSITY VARIATIONS OF EXPERIMENTAL AND COMPUTATIONAL PEBBLE BEDS
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PACKING MICROSTRUCTURE AND LOCAL DENSITY VARIATIONS OF EXPERIMENTAL AND COMPUTATIONAL PEBBLE BEDS

机译:实验性和计算性卵子的包装微观结构和局部密度变化

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In pebble bed type nuclear reactors the fuel is contained in graphite pebbles, which form a randomly stacked bed with a non-uniform packing density. These variations can influence local coolant flow and power density and are a possible cause of hotspots. To analyse local density variations computational methods are needed that can generate randomly stacked pebble beds with a realistic packing structure on a pebble-to-pebble level. We first compare various properties of the local packing structure of a computed bed with those of an image made using computer aided X-ray tomography, looking at properties in the bulk of the bed and near the wall separately. Especially for the bulk of the bed, properties of the computed bed show good comparison with the scanned bed and with literature, giving confidence our method generates beds with realistic packing microstructure. Results also show the packing structure is different near the wall than in the bulk of the bed, with pebbles near the wall forming ordered layers similar to hexagonal close packing. Next, variations in the local packing density are investigated by comparing probability density functions of the packing fraction of small clusters of pebbles throughout the bed. Especially near the wall large variations in local packing fractions exists, with a higher probability for both clusters of pebbles with low (<0.6) and high (>0.65) packing fraction, which could significantly affect flow rates and, together with higher power densities, could result in hotspots.
机译:在卵石床型核反应堆中,燃料包含在石墨卵石中,石墨卵石形成堆积密度不均匀的无规堆积床。这些变化会影响局部冷却剂流量和功率密度,并且可能是引起热点的原因。为了分析局部密度变化,需要一种计算方法,该方法可以生成在卵石到卵石水平上具有逼真的堆积结构的随机堆叠的卵石床。我们首先将计算机床的局部堆积结​​构的各种特性与使用计算机辅助X射线断层扫描所生成图像的特性进行比较,分别查看床的主体和壁附近的特性。特别是对于大部分床而言,计算床的性能与扫描床和文献均显示出良好的对比,这使我们的方法产生具有逼真的填充微观结构的床充满信心。结果还表明,壁附近的填充结构不同于床的大部分,壁附近的卵石形成类似于六角形紧密填充的有序层。接下来,通过比较整个河床中小卵石簇的堆积分数的概率密度函数来研究局部堆积密度的变化。尤其是在墙附近,局部填充率存在很大变化,对于低填充率(<0.6)和高填充率(> 0.65)的鹅卵石簇来说,概率更高,这可能会显着影响流量,并伴随更高的功率密度,可能会导致热点。

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