首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Contact force model including the liquid-bridge force for wet-particle simulation using the discrete element method
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Contact force model including the liquid-bridge force for wet-particle simulation using the discrete element method

机译:接触力模型,包括使用离散元方法进行湿粒子模拟的液桥力

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The handling of wet particles in chemical engineering is often difficult because cohesive forces acting on wet particles cause particulate aggregation and the adherence of devices, unlike what occurs under a dry condition. The liquid-bridge force is introduced to the discrete element method in the investigation of the behavior of wet particles. However, existing numerical modeling has problems from the viewpoint of the effect of cohesion in contact states. Specifically, the cohesive force is treated as a constant value for contact states. This means the effect of the cohesive force is not only dependent on the spring constant in the discrete element simulation but is also frequently overestimated. To solve this problem, the present study developed a numerical contact model considering quantitatively the effect of the cohesive force in contact states and validated the model for a pan pelletizer. The behaviors and cascading angles of wet particles in simulation and experiments were in good agreement and the validity of the contact model was thus demonstrated. The present numerical contact model is thus a promising model for the numerical simulation of wet particles. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在化学工程中处理湿颗粒通常很困难,因为作用在湿颗粒上的内聚力会导致颗粒聚集和设备粘附,这与干燥条件下的情况不同。在研究湿颗粒的行为时,将液桥力引入到离散元法中。然而,从接触状态中的内聚效应的角度来看,现有的数值建模存在问题。具体地,内聚力被视为接触状态的恒定值。这意味着内聚力的影响不仅取决于离散元素模拟中的弹簧常数,而且经常被高估。为了解决这个问题,本研究开发了一种数值接触模型,该模型定量考虑了内聚力在接触状态下的影响,并验证了锅式造粒机的模型。在模拟和实验中,湿颗粒的行为和级联角吻合得很好,从而证明了接触模型的有效性。因此,本数值接触模型是用于湿颗粒数值模拟的有前途的模型。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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