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Circumferential Distribution Characteristics of Airflow in Blast Furnace Hot Blast Systems

机译:高炉热风系统中气流的圆周分布特性

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The circumferential distribution characteristics of airflow in bustle pipe and each tuyere have been simulated and researched through establishing mathematical model of blast furnace (BF) hot blast systems. The disputes on the circumferential distribution characteristics of airflow in bustle pipe at home and abroad were settled. The results show that, under the premise of uniform pressure distribution in hearth and tuyere section area, except that of the nearest ones, the velocity of airflow in these tuyeres which are near to the main pipe is lower than those far away from the main pipe because of the existence of vortex. However, both the fluctuation range of all tuyeres' air velocity and its influence on tuyere raceway depth are small and can be ignored.
机译:通过建立高炉(BF)热爆炸系统的数学模型来模拟和研究颠覆管和每个Tuyere的气流的圆周分布特性。解决了国内外喧嚣管道气流周圆周分布特征的争议。结果表明,在炉膛和风口截面区域的均匀压力分布的前提下,除了最接近的区内面积之外,这些靠近主管附近的这些传簇中的气流的速度低于远离主管的那些因为存在漩涡。然而,所有Tuyeres的空气速度的波动范围和其对Tuyere滚道深度的影响很小,并且可以忽略。

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