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Aerosol Characterization and Particle Scrubbing Efficiency of Underwater Operations during Laser Cutting of Steel Components for Dismantling of Nuclear Facilities

机译:核设施拆除钢构件的激光切割过程中水下操作的气溶胶特性和颗粒洗涤效率

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The goal of this article is to provide results on aerosol particles emissions of a laser Nd:YAG cutting technique used for the decommissioning of nuclear facilities. In particular, the study aims at characterizing the aerosol emitted during the cutting of steel specimens of different thicknesses and to study particulate emissions for cuts in air and under water. To do so, we calculate the emitted aerosol mass per unit area of cut. Overall, it was found that the mass of aerosol per unit area of cut by laser cutting decreases when the laser power and cutting speed increase. We also examine the performance of the height of the water column above the cut on the particle collection efficiency. We found that the driving phenomenon for particle collection is the scrubbing of particles by bubbles present in the water column. When cuts are realized under water, the production of aerosol particles mass per unit area of cut is reduced by a factor of 10 and limited below 70 g m–2.
机译:本文的目的是提供用于核设施退役的激光Nd:YAG切割技术产生的气溶胶颗粒排放的结果。尤其是,该研究旨在表征在切割不同厚度的钢样本时释放的气溶胶,并研究空气和水下切割产生的颗粒物排放。为此,我们计算每单位切割面积排放的气溶胶质量。总的来说,发现当激光功率和切割速度增加时,通过激光切割切割的每单位面积的气溶胶质量降低。我们还检查了水柱高度在切口上方的性能对颗粒收集效率的影响。我们发现,颗粒收集的驱动现象是水柱中存在的气泡擦洗颗粒。当在水下实现切割时,每单位切割面积产生的气溶胶颗粒质量减少了10倍,并限制在70 g m–2以下。

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