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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Numerical modeling, calibration, and validation of an ultrasonic separator
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Numerical modeling, calibration, and validation of an ultrasonic separator

机译:超声波分离器的数值建模,校准和验证

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摘要

Our overall goal is to apply acoustic separation technology for the recovery of valuable particulate matter from wastewater in industry. Such large-scale separator systems require detailed design and evaluation to optimize the system performance at the earliest stage possible. Numerical models can facilitate and accelerate the design of this application; therefore, a finite element (FE) model of an ultrasonic particle separator is a prerequisite. In our application, the particle separator consists of a glass resonator chamber with a piezoelectric transducer attached to the glass by means of epoxy adhesive. Separation occurs most efficiently when the system is operated at its main eigenfrequency. The goal of the paper is to calibrate and validate a model of a demonstrator ultrasonic separator, preserving known physical parameters and estimating the remaining unknown or less-certain parameters to allow extrapolation of the model beyond the measured system. A two-step approach was applied to obtain a validated model of the separator. The first step involved the calibration of the piezoelectric transducer. The second step, the subject of this paper, involves the calibration and validation of the entire separator using nonlinear optimization techniques. The results show that the approach lead to a fully calibrated 2-D model of the empty separator, which was validated with experiments on a filled separator chamber. The large sensitivity of the separator to small variations indicated that such a system should either be made and operated within tight specifications to obtain the required performance or the operation of the system should be adaptable to cope with a slightly off-spec system, requiring a feedback controller.
机译:我们的总体目标是应用声学分离技术从工业废水中回收有价值的颗粒物。这样的大型分离器系统需要详细的设计和评估,以尽可能早地优化系统性能。数值模型可以促进并加快该应用程序的设计;因此,超声颗粒分离器的有限元(FE)模型是前提。在我们的应用中,颗粒分离器由玻璃谐振腔组成,该谐振腔带有通过环氧胶粘剂附着在玻璃上的压电换能器。当系统以其主要特征频率运行时,分离最有效。本文的目标是校准和验证演示器超声波分离器的模型,保留已知的物理参数,并估计剩余的未知或不确定性参数,以允许将模型外推到被测系统之外。应用了两步法来获得分离器的验证模型。第一步涉及压电换能器的校准。第二步是本文的主题,涉及使用非线性优化技术对整个分离器进行校准和验证。结果表明,该方法可对空分离器进行完全校准的二维模型,该模型已在填充的分离器腔上进行了实验验证。分离器对小变化的大灵敏度表明,该系统应在严格的规格范围内进行制造和操作以获得所需的性能,或者该系统的操作应适应于稍微超出规格的系统,需要反馈控制器。

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