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首页> 外文期刊>International Journal of Mechanical Sciences >A coupled DEM-SPH model for moisture migration in unsaturated granular material under oscillation
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A coupled DEM-SPH model for moisture migration in unsaturated granular material under oscillation

机译:振动下不饱和颗粒材料中水分迁移的耦合DEM-SPH模型

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摘要

Granular materials, such as mineral products, soil and chemical fertilizer, normally contain unsaturated free moisture. This unsaturated moisture could migrate in the granular material and its processing, resulting in handling and safety concerns due to a change in the material properties. In this work, a method of coupling the Discrete Element Method (DEM) and the Smoothed Particle Hydrodynamics (SPH) was proposed to investigate moisture migration in unsaturated granular materials under oscillation. The particles and water were simulated through DEM and SPH, respectively and a python coupling framework was programmed to perform the exchange of particle-fluid interaction forces. Subsequently, experiments with plastic pellets and a coal sample were used to calibrate the models, with DEM calibrated by an angle of repose experiment and draining experiments calibrating the coupled model. Finally, the coupled model was validated by comparing the results to those of experiments involving moisture migration under oscillation. It was found that, compared to measurements, the coupled SPH-DEM model predicted the same moisture migration trend and also provided good agreement for the prediction of the mass of drained water.
机译:粒状材料,如矿物产品,土壤和化肥,通常含有不饱和的自由水分。这种不饱和水分可以在颗粒材料中迁移及其加工,导致由于材料特性的变化导致处理和安全问题。在这项工作中,提出了一种耦合离散元素法(DEM)和平滑粒子流体动力学(SPH)的方法,以研究振动下不饱和颗粒材料的水分迁移。通过DEM和SPH模拟颗粒和水,分别编程了Python耦合框架以进行颗粒流体相互作用力的交换。随后,使用塑料颗粒和煤样的实验来校准模型,DEM通过校准耦合模型的休息实验和排水实验而校准。最后,通过将结果与振荡下涉及水分迁移的实验比较来验证耦合模型。结果发现,与测量相比,耦合的SPH-DEM模型预测了相同的水分迁移趋势,并为预测排水水的质量提供了良好的协议。

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