首页> 外文期刊>Journal of Aerosol Science >DEPOSITION OF CESIUM IODIDE PARTICLES IN BENDS AND SECTIONS OF VERTICAL PIPE UNDER SEVERE ACCIDENT CONDITIONS
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DEPOSITION OF CESIUM IODIDE PARTICLES IN BENDS AND SECTIONS OF VERTICAL PIPE UNDER SEVERE ACCIDENT CONDITIONS

机译:严重事故条件下弯管和垂直管段中碘化铯颗粒的沉积

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摘要

A relativelhy small-scale aerosol deposition experiment (called WAVE) in a quartz glass pipe with a 90deg bend followed by a short straight section was performed at Japan Atomic Energy Research Institute to investigate the effect of pipe orientation on the cesium iodide (CsI) aerosol deposition. In these basic configurations, the section after the bend was either horizontal, upward and downward, respectively. The upward case showed 5 and 10 times larger CsI mass deposition in the vertical section of pipe than the horizontal and downward configurations, respectivley. The experiments were analyzed by coupling a three-dimensional fluid-dynamic and an aerosol behavior codes. The calculations were in reasonable agreement with the measured aerosol mass deposition except for the upward case because the principal CsI deposition mechanism is thermophoresis which depends on the thermal gradient in gas and the gradient was well predicted by the fluid-dynamic code. In order to better predict the deposited mass in vertical section of upward case, Nusselt number which is used for thermophoretic deposition alculation had to be reevaluated carefully by considering the effect fo secondary free convection in the vertical pipe which flowed opposite to the main stream.
机译:在日本原子能研究所进行了90度弯曲石英玻璃管,然后进行短笔直截面的相对小型气溶胶沉积实验(称为WAVE),以研究管道取向对碘化铯(CsI)气溶胶的影响沉积。在这些基本配置中,弯曲后的截面分别为水平,向上和向下。向上的情况表明,在管道的垂直部分中,CsI质量沉积比水平和向下结构分别大5到10倍。通过耦合三维流体动力学和气溶胶行为代码对实验进行了分析。除了向上的情况外,计算与测得的气溶胶质量沉积合理地吻合,因为主要的CsI沉积机理是热泳,这取决于气体中的热梯度,并且通过流体动力学代码可以很好地预测该梯度。为了更好地预测向上情况的垂直截面中的沉积质量,必须仔细考虑用于垂直热流的垂直对流中二次自由对流的影响,重新评估用于热泳沉积法的Nusselt数。

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