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Multiphysics modeling of mesh piezoelectric atomizers

机译:Mesh压电雾化器的多体模型

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An ultrasonic clothes dryer was developed by researchers at Oak Ridge National Laboratory based on a novel approach of using high-frequency mechanical vibration instead of heat to extract moisture as a cold mist. This technology is based on direct mechanical coupling between mesh piezoelectric (PZT) transducers and wet fabric. The vibration introduces sufficient momentum to the droplets trapped in the fabric pores to atomize them and leave the garment in a cold state. In the vibrating transducer, deformation followed by the effects of boundary layer acoustic streaming results in ejection of the atomized droplets. The research presented bridges the vibration of a PZT mesh transducer to the induced acoustic field and to capillary-wave theory. Mathematical modeling studies free and forced vibrations of a mesh-like PZT structure, using the structural parameters identified by actuation testing in several case studies. Computational fluid-structure interaction modeling is performed to couple the vibrations of a PZT transducer with an in-contact droplet. The results obtained are used to investigate (1) the transverse deformation of the vibrating mesh transducer in contact with a droplet, (2) the resultant boundary layer acoustic streaming in the fluid surrounding the vibrating surface, and (3) the droplet deformation and fluid ejection. The physics of atomization are linked to the level of the near-wall droplet vibrations induced by the surface deformation of the transducer. Then the surface deformation is linked to the properties of the PZT mesh transducer and input actuation frequency and power.
机译:超声干衣机由橡树岭国家实验室的研究人员开发,基于使用高频机械振动而不是热量来提取水分作为冷雾的新方法。该技术基于网格压电(PZT)换能器和湿织物之间的直接机械耦合。振动引入足够的动力到捕集在织物孔中的液滴以雾化它们并将衣服留在寒冷状态。在振动换能器中,变形,然后是边界层声流的影响导致喷射雾化液滴。该研究介绍了PZT网格换能器的振动诱导的声场和毛细波理论。数学建模使用在几种情况研究中使用致动测试的结构参数进行网状PZT结构的自由和强制振动。进行计算流体结构相互作用建模,以将PZT换能器的振动与互联网液滴耦合。所获得的结果用于研究(1)振动网格换能器与液滴接触的横向变形,(2)在围绕振动表面的流体中的所得边界层声学流,以及(3)液滴变形和流体弹出。雾化物理学与通过换能器的表面变形引起的近壁液滴振动的水平连接。然后,表面变形与PZT网格换能器的性质连接和输入致动频率和功率。

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