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Finite element simulation of a long narrow workload immersed in an ultrasonic cleaning bath - practical comparisons and implications for cleaning efficacy.

机译:超声波清洗浴中沉浸在超声波清洗浴中的长窄工作量的有限元模拟 - 用于清洁功效的实际比较和含义。

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Ultrasonic vessels are widely utilised in medical and industrialsettings for cleaning a wide variety of soiled objects and as a crucial part of sterilization cycles. A paper is presented in which the role of boundary reflections on cavitation in an ultrasonic vessel is discussed. A two-dimensional finite element model of such a bath containing a long flat workload is developed and simulated with and without reflection of the radiated sound wave from the tank boundaries by using a time harmonic Helmholtz solution to the wave equation. This specific problem relates to the positioning of items on trays within ultrasonic baths and is part of a wider project on the generic 3D modelling for ultrasonic bath design. Unlike many previous studies this paper concentrates on the steady state standing wave field caused by the continuous time harmonic variation in pressure amplitude and reflections. Reflections from the vessel geometry are found to have a positive impact on the pressure profile presented to the upper side of the work piece and hence the cavitation of the vessel. Practical validation of the model is conducted via the foil ablation test and data from a commercially available cavitation probe. Practical results are found to be in reasonable agreement with the simulation output with the location of standing waves within the vessel giving rise to areas of higher cavitational density. Limitations of the current model are discussed along with directions for future development.
机译:超声波容器广泛用于医疗和工业供应,用于清洁各种污染的物体和作为灭菌循环的关键部分。提出了一种论文,其中讨论了边界反射对超声波容器中的空化的作用。通过使用时间谐波Helmholtz解决方案的时间谐波亥姆霍兹解决方案,开发和模拟含有长扁平工作负荷的这种浴的这种浴的二维有限元模型,并且通过从罐边界的反射到波浪方程。该具体问题涉及超声波浴缸内托盘上的物品的定位,并且是超声浴设计的通用3D建模的更广泛项目的一部分。与以前的许多研究不同,本文集中在由压力幅度和反射的连续时间谐波变化引起的稳态站立波场上。发现来自血管几何形状的反射对呈现给工件的上侧的压力轮廓并因此对容器的空化物具有积极的影响。通过来自市售空化探针的箔消融试验和数据进行模型的实际验证。发现实际结果与仿真输出有合理的协议,该仿真输出具有驻留在船舶内的驻斗的位置,从而产生更高的空分密度。随着未来发展的指示讨论了当前模型的局限。

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