通过数学建模优化了超声对各种工艺介质的影响模式和条件

V. Khmelev, R. Golykh, A. Shalunov
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引用次数: 10

摘要

本文提出了基于数学建模的超声影响方式和条件优化的新方法,以提高工艺流程的效率。对于过程的分析,一般的超声波工艺过程方案考虑到主要的物理效应,这些物理效应决定了过程的过程,这取决于相对于被处理的被动保护的活性介质的物理状态和位置,这限制了活性介质。超声过程数学模型的特点是考虑了气体和液体活性介质中的粘性效应,这是以前没有研究过的。考虑它们的影响,计算了超声处理的最佳模式和条件。确定的最佳模式和条件将以最高效率为工业应用提供专用超声设备的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of these modes and conditions of ultrasonic influence on various technological mediums by mathematical modeling
This paper proposes new approach based on mathematical modeling to optimization modes and conditions of ultrasonic influence to increase efficiency of technological processes. For the analysis of processes, a general ultrasonic technological processes scheme taking into account the main physical effects that determine the course of processes depending on the physical state and location of the active medium with respect to the treated passive protection, which limits the active medium. The feature of the mathematical model of ultrasonic process is accounting for viscous effects in gas and liquid active medium that have not been previously investigated. Taking into account their impact the optimal modes and conditions of ultrasonic treatment were calculated. Determined optimal modes and conditions will provide the development of specialized ultrasound equipment for industrial applications with maximum efficiency.
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