首页> 外文会议>International conference on environmental remediation and radioactive waste management;ICEM2010 >ALPHA RADIOACTIVITY MONITOR USING IONIZED AIR TRANSPORT TECHNOLOGY FOR LARGE SIZE URANIUM WASTE (2)
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ALPHA RADIOACTIVITY MONITOR USING IONIZED AIR TRANSPORT TECHNOLOGY FOR LARGE SIZE URANIUM WASTE (2)

机译:利用电离空气传输技术处理大尺寸铀废料的Alpha放射性监测仪(2)

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In alpha radioactivity measurement using ionized air transportation (AMAT), conversion from ion currents to radioactivity accurate is required. An ion transport simulation provides ways of complementarily determining conversion factors. We have developed an ion transport simulation model. Simulation results were compared with experiments with air speeds, faster than 1 m/s, achieving good agreement.In a practical AMAT apparatus, the air-flow at the alpha source may be slower than 1 m/s, and ion loss is likely to be large. Reinforcement of the ion transport model to cover the lower air speed region is effective.Ions are generated by an alpha particle in a very thin column. Since the ion density at this temporal stage is high, the recombination loss, proportional to the square of ion density, is dominant within a few milli-seconds. The spatial and temporal scales of this columnar recombination are too small for CFD simulation.We solve an ion transport equation during the period of columnar recombination with diffusion and recombination terms and incorporated the relation between ion loss and turbulent parameters into CFD. Using this model, simulations have been done for various air speeds and targets. Those for simulation results agree with experiments, showing improvement of simulation accuracy.
机译:在使用电离空气传输(AMAT)的α放射性测量中,需要将离子流转换为准确的放射性。离子迁移模拟提供了互补确定转化因子的方法。我们已经开发了离子迁移模拟模型。将模拟结果与风速高于1 m / s的实验进行了比较,取得了很好的一致性。 在实际的AMAT设备中,α源处的气流可能会慢于1 m / s,并且离子损失可能会很大。增强离子传输模型以覆盖较低的空气速度区域是有效的。 离子是由很细的色谱柱中的α粒子产生的。由于在此阶段的离子密度很高,因此与离子密度的平方成正比的复合损失在几毫秒内占主导地位。对于CFD模拟而言,这种柱状重组的时空尺度太小。 我们用扩散和重组项求解柱状重组期间的离子输运方程,并将离子损失和湍流参数之间的关系纳入到CFD中。使用该模型,已经针对各种空气速度和目标进行了仿真。仿真结果与实验吻合,表明仿真精度有所提高。

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