首页> 外文会议>Conference on industrial and commercial applications of smart structures technologies >Development of piezoelectric-based membranes for synthetic jet actuators: experiments and modeling
【24h】

Development of piezoelectric-based membranes for synthetic jet actuators: experiments and modeling

机译:用于合成射流执行器的压电膜的开发:实验和建模

获取原文

摘要

A mathematical model was developed to represent the behavior of circular piezoelectric bimorphs in a synthetic jet actuator. Synthetic jet actuators are popular active flow control devices whose application is being widely explored in aerodynamics. The material properties were matched to those of PZT-5A mounted on a substrate. The actuator's geometry consisted of a cylindrical cavity of low height to diameter aspect ratio. A bimorph formed one of the cylinder's bases. The ingestion/expulsion orifice for the synthetic jet actuator was placed in the edge of the cavity so as to allow for either the present single bimorph or future dual bimorph configurations. Simply supported and rigidly supported boundary conditions were assessed around the circumference of the bimorph. The potential of alternate mode shapes occurring in the bimorphs during operation of the synthetic jet was evaluated. A limited parametric study was conducted varying the thickness of the piezoelectric wafers used in the bimorphs and the geometry of the cavity and orifice. Results were obtained for the displacement of the center of the bimorph's surface and the peak velocity of the air being ingested and expulsed through the orifice. These results were compared to values obtained through a mathematical model. Experimental data present in literature were also compared. The mathematical model was seen to have considerable potential for predicting the performance of synthetic jet actuators and their resonant frequencies but failed to capture the effects of acoustic coupling with the cavity, which is a topic of future research.
机译:建立了数学模型来表示圆形压电双压电晶片在合成射流致动器中的行为。合成射流执行器是流行的主动流量控制装置,其应用在空气动力学中得到了广泛的探索。材料特性与安装在基板上的PZT-5A的材料特性相匹配。执行器的几何形状由高度和直径纵横比低的圆柱腔组成。一个双压电晶片形成了圆柱的底面之一。用于合成射流致动器的摄取/排出孔口被放置在腔体的边缘中,以允许当前的单双压电晶片构造或将来的双双压电晶片构造。围绕双压电晶片的圆周评估了简单支撑和刚性支撑的边界条件。评估了在合成射流运行期间双晶型中出现的交替模式形状的可能性。进行了有限的参数研究,改变了双压电晶片中使用的压电晶片的厚度以及腔和孔的几何形状。获得了双压电晶片表面中心的位移以及通过孔口吸入和排出的空气的峰值速度的结果。将这些结果与通过数学模型获得的值进行比较。还比较了文献中存在的实验数据。该数学模型被认为具有预测合成射流致动器的性能及其共振频率的巨大潜力,但未能捕捉到与腔体声学耦合的影响,这是未来研究的主题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号