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EXPERIMENTAL STUDY OF THE BUBBLE-BURST PHENOMENON AT THE SURFACE OF A LIQUID STEEL BATH

机译:液体钢浴表面气泡突发现象的实验研究

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We have developed an experimental device for studying the main mechanism of dust formation in electric arc furnace steelmaking: the burst of gas bubbles at the liquid steel surface. As in the case of the air-water system, the bubble-burst process takes place in three steps: breaking of the film cap, projection of film drops, and projection of jet drops. The film break and the jet drop formation are observed with high-speed video. The film drop aerosol enters a particle counter, which characterizes the drops in size and number. Results are presented and discussed. The quantification of both types of projections leads to the conclusion that the film drop projections represent the major source of dust. We currently are investigating the influence of the bubble size on the amount of film drop projections, with the aim of checking the theoretical existence of an optimal bubble size that minimizes dust emission.
机译:我们开发了一种实验装置,用于研究电弧炉炼钢中灰尘形成的主要机理:液钢表面的气泡爆发。如在空气系统的情况下,气泡突发过程发生在三个步骤:破碎薄膜盖,膜滴的投影,并投射喷射滴。用高速视频观察到膜断裂和喷射滴形成。薄膜滴气溶胶进入粒子计数器,其表征尺寸和数量的液滴。提出和讨论了结果。两种类型的投影的量化导致薄膜下降投影代表灰尘主要来源的结论。我们目前正在调查气泡尺寸对薄膜下降投影量的影响,目的是检查最大限度地消除粉尘排放的最佳气泡尺寸的理论存在。

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