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Chaotic liquid shaker: Design, implementation and application

机译:混沌液体激振器:设计,实现和应用

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摘要

It has been argued that chaotic vibration provides the best possibility for achieving efficient and thorough mixing of fluids, by evoking complex and abundant perturbations into the original steady flows. In the last two decades, advances in the understanding of chaos theory and nonlinear-circuit technologies have led to favorable prospects to capitalize some features of chaos in liquid mixing applications. In this paper, a liquid mixing apparatus (an electromechanical shaker) based on the commonly used stirred tank model is introduced. The design and implementation of this liquid shaker, capable of working under the control of different kinds of signals, are reported. Constant-voltage signals, periodic signals and chaotic/hyperchaotic signals are applied to the impeller/tank velocity control mechanisms, exploring the efficacy of different perturbation schemes for liquid mixing. Comparable experiments are carried out to investigate the time consumption in sucrose dissolving processes and the dye dispersion homogeneity in visualizable mixing flows. The results of these experiments reveal that chaotic and hyperchaotic perturbations help enhance the liquid mixing efficiency and homogeneity quite significantly, yielding faster and more uniform results than all nonchaotic counterparts.
机译:有人认为,通过将复杂而丰富的扰动引入到原始的稳定流中,混沌振动为实现流体的有效和彻底混合提供了最佳可能性。在过去的二十年中,对混沌理论和非线性电路技术的理解的进步,为在液体​​混合应用中利用混沌的某些特征创造了有利的前景。本文介绍了一种基于常用搅拌罐模型的液体混合装置(机电振动器)。据报道,这种液体振动筛的设计和实现能够在各种信号的控制下工作。将恒定电压信号,周期性信号和混沌/超混沌信号应用于叶轮/容器速度控制机制,以探索不同扰动方案对液体混合的功效。进行了可比的实验来研究蔗糖溶解过程中的时间消耗和可视化混合流中的染料分散均匀性。这些实验的结果表明,混沌和超混沌扰动可以显着提高液体混合效率和均匀性,比所有非混沌方法更快,更均匀地产生结果。

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