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提釩用旋流氧槍噴頭的數值模擬

Numerical simulation of swirl-type lances in vanadium extraction process

  • 摘要: 利用Fluent軟件模擬旋流氧槍的氣體射流和提釩轉爐內部的鋼液流速,研究常規氧槍以及旋流角分別為5°、8°、10°和13°的旋流氧槍對熔池的攪拌效果和沖擊特性.研究發現旋流氧槍射流分布相對分散,流股之間干擾少.增加熔池沖擊面積,熔池內部等速線所包圍的面積變大.10°旋流氧槍噴頭噴吹時,等速線所包圍面積最大,其面積約為熔池縱切面面積的75%,鋼液的流動速度最大,有利于促進轉爐提釩過程釩元素的擴散,從而提高提釩效率.

     

    Abstract: The gas jet of swirl-type oxygen lances and the liquid steel velocity in vanadium extraction converters were simulated using Fluent software. The stirring effects and impact characteristics of conventional oxygen lances and various swirl-type oxygen lances (swirl angles of 5o, 8o, 10o and 13o) on the molten pool were studied on the basis of simulated results. It is found that the gas jet of swirl-type oxygen lances has a relative dispersed distribution and the flows have a less disturbance. When the injecting area of swirl-type oxygen lances increases, the area surrounded by isovelocity is larger in the molten pool. Injecting with the 10o swirl-type oxygen lance makes the area surrounded by isovelocity get the largest, about 75% of the longitudinal section of the molten pool, and the liquid steel velocity is the highest. This is helpful to promote vanadium dispersion in the vanadium extraction converter and improve the vanadium extraction efficiency.

     

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