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Study on Pressure Coefficient in Process of Double Slot Nozzle Jet Impingement on Sinusoidal Colliding Strip

机译:正弦碰撞带双槽喷嘴喷射冲击过程中压力系数研究

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摘要

Air cushion furnace is widely used in the heat treatment process of aluminum strip, copper strip and silicon steel, and the double slot nozzle is the core part of the air cushion furnace device. Studying the distribution characteristics of the surface pressure coefficient of the strip during the suspension process could provide important theoretical references for the high-efficiency and high-value production of the air-cushion furnace. In this paper, the distribution of pressure coefficients is studied under the conditions of Re=48 194~12 048, high H/D=1~3, spacing L/D=17.2 and sinusoidal amplitude A=0~30 mm. The results show that with the decrease of L/D, the position of the main stop point moves to the center line of the nozzle, and the value of the second stop point increases gradually, and with the increase of the sinusoidal amplitude A, the position of the main stop point moves gradually to x/D=0. The pressure coefficient Cp decreases with the increase of sinusoidal amplitude A, the pressure coefficient Cp decreases with the increase of H/D, and the difference between the pressure coefficient at the stationary point of the double-slot nozzle and the pressure coefficient at the non-stationary point increases with the increase of H/D. This study provides an important theoretical basis for the design of double slot nozzles in air cushion furnace.
机译:空气缓冲炉广泛用于铝带,铜带和硅钢的热处理过程中,双槽喷嘴是气垫炉装置的芯部。研究悬架过程中条带的表面压力系数的分布特性可以为空腹垫炉的高效率和高价值生产提供重要的理论参考。在本文中,压力系数分布被重新条件= 48 194〜12 048,高H / d = 1〜3,间距L / d = 17.2和正弦振幅A = 0〜30毫米下研究。结果表明,随着L / D的降低,主止动点的位置移动到喷嘴的中心线,第二个停止点的值逐渐增加,并且随着正弦幅度A的增加,主止挡点的位置逐渐移动到X / D = 0。随着正弦幅度A的增加,压力系数Cp减小,压力系数Cp随着H / D的增加而降低,以及双槽喷嘴的固定点处的压力系数与非负压系数之间的压力系数之间的差 - 随着H / D的增加, - 展开点增加。本研究为空腹炉中的双槽喷嘴设计提供了重要的理论依据。

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