基于延迟相位角和PIV测量的双合成射流作动器实验技术

Zhen-bing Luo, Xiong Deng, Lin Wang, Z. Xia
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引用次数: 4

摘要

压电陶瓷作动器的位移信号与电压信号之间存在一个延时相角。驱动频率越高,PZT振子的延迟相位角越大。基于PZT振子的延迟相位角,提出了一种转移相次频(TPSF)技术来捕获双合成射流的任意相位,并提出了一种转移相等(TPE)技术来确定双合成射流的相位。利用该技术对压电陶瓷驱动的双合成射流作动器进行了测试。结果表明,TPSF和TPE技术是有效的。双合成射流一圈分为“左”级和“右”级。在“左”阶段,双合成射流流场以左射流为主;在“右”阶段,双合成射流流场以右射流为主。在双合成射流执行器下游近场,两射流夹带流体绕流并相互作用,流场较为复杂,双合成射流之间存在“自支撑”现象。在双合成射流执行器的远场下游,两个射流合并成一个更稳定的合成射流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental technique based on delay phase angle and PIV measurements of a dual synthetic jets actuator
There is a delay phase angle between the displacement signal and voltage signal of PZT-driven actuator. The higher the driving frequency, the larger delay phase angle of the PZT vibrator will be. Based on the delay phase angle of the PZT vibrator, a transfer-phase and sub-frequency (TPSF) technique was provided to capture the arbitrary phase of the dual synthetic jets, and a transfer-phase to equal (TPE) technique was provided to determine the phase of the dual synthetic jets. A PZT-driven dual synthetic jets actuator was measured based on the technique. The results demonstrate the TPSF and TPE techniques are effective. And a circle of the dual synthetic jets is divided into “left” stage and “right” stage. In the “left” stage, the dual synthetic jets flow-field is dominated by the left jet; and in the “right” stage, the dual synthetic jets flow-field is dominated by the right jet. In the near field downstream of the dual synthetic jets actuator, the two jets entrain fluid around them and interact with each other, and the flow-field is more complex and there is a phenomenon of “self-support” between the dual synthetic jets. In the far field downstream of the dual synthetic jets actuator, the two jets merge a single, more stable synthetic jet.
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