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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Numerical Investigation on Granular Flow from a Wedge-Shaped Feed Hopper Using the Discrete Element Method
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Numerical Investigation on Granular Flow from a Wedge-Shaped Feed Hopper Using the Discrete Element Method

机译:不同元素法从楔形饲料料斗中粒状流动的数值研究

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The discharge process of granular material from a wedge-shaped feed hopper was numerically simulated using a 3D discrete element method. The effects of particle size, feed pipe, side and rear wedge angle on the discharge performance were investigated in terms of flow pattern, discharge rate, and stability. The results show that with larger particle size the granular flow pattern gradually transforms from mass flow to edge flow where the flow rate decreases and the discharging integrity and stability become worse. The presence of the feed pipe reduces the discharge rate and stability. The increase of the feed pipe diameter will diminish the discharge rate and enhance the discharge stability. Both the side and the rear wedge angle have a certain effect on the discharge performance. The effects of feed pipe, side and rear wedge angle on the discharge stability become more significant with larger particle size.
机译:使用3D离散元件法在数值模拟来自楔形进料料斗的颗粒材料的放电过程。 在流动模式,放电速率和稳定性方面研究了粒度,进料管,侧和后楔角对放电性能的影响。 结果表明,具有较大粒度的粒度,粒状流动模式从质量流向边缘流动逐渐变换,其中流速降低,放电完整性和稳定性变差。 进料管的存在降低了放电速率和稳定性。 进料管直径的增加将减少放电速率并增强放电稳定性。 侧面和后楔角都对放电性能有一定的影响。 进料管,侧和后楔角对放电稳定性的影响变得更大,粒径较大。

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