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首页> 外文期刊>Chemical Engineering Science >Life after computer simulations: towards establishing bulk evolution rules based on discrete granular dynamics
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Life after computer simulations: towards establishing bulk evolution rules based on discrete granular dynamics

机译:计算机模拟后的寿命:基于离散的颗粒动力学建立体进化规则

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摘要

Today, parallel processing supercomputers allow simulations of up to 10(6) discrete elements. and advances in processing power should allow 10(9)-10(10) discrete elements. The availability of such large data sets offers real scope for statistically accurate calculations to describe the long-range evolution of the bulk flow and stress fields during industrial handling and processing of material in granular and powder states. We show that careful post-processing analysis of granular dynamics simulation results in terms of time series/signal processing can lead to a greater understanding of the micro-dynamics of granular systems and the defining events in the evolution of such systems. In particular, we apply the Fourier transform to investigate periodicity throughout the duration of the simulation and the wavelet transform to investigate disturbances which are localised in time and which are much more difficult to model with Fourier methods. Whilst we are essentially pointing to post-simulation/experiment techniques which are generic, we illustrate their importance for the investigation of segregation phenomena in poured binary granular heaps, with a particular focus on the diffusive mechanism of kinetic sieving. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 15]
机译:如今,并行处理超级计算机最多可以仿真10(6)个离散元素。并且处理能力的提高应允许10(9)-10(10)个离散元素。如此大的数据集的可用性为统计上精确的计算提供了真实的范围,以描述颗粒状和粉末状材料在工业处理和加工过程中整体流动和应力场的长期演变。我们表明,按照时间序列/信号处理对颗粒动力学模拟结果进行仔细的后处理分析,可以使人们对颗粒系统的微观动力学以及此类系统的发展过程中的定义事件有更深入的了解。特别是,我们应用傅立叶变换来研究整个仿真过程中的周期性,而小波变换则用于研究在时间上局域化并且很难用傅立叶方法建模的干扰。虽然我们本质上是指通用的后模拟/实验技术,但我们说明了它们对于研究浇注的二元颗粒堆中的偏析现象的重要性,尤其着重于动力学筛分的扩散机理。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:15]

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