TY - JOUR
T1 - Acoustofluidics at Audible Frequencies—A Review
AU - Zhang, Chuanyu
AU - Brunet, Philippe
AU - Liu, Shuo
AU - Guo, Xiaofeng
AU - Royon, Laurent
AU - Qin, Xianming
AU - Wei, Xueyong
N1 - Publisher Copyright:
© 2024 THE AUTHORS
PY - 2025/1
Y1 - 2025/1
N2 - Acoustofluidics is a term describing the class of phenomena in which mechanical or acoustic vibrations induce a deformation or a flow in a fluid. Many deficiencies in our understanding of these phenomena remain to be addressed, with respect to the fundamental theoretical framework as well as in numerous applications. In this regard, the frequency of external forcing is a key parameter. Owing to the low cost, substantial magnitude, and versatility associated with acoustofluidic phenomena at audible frequencies, studies of these phenomena in the audible range have emerged with increasing amount in recent years and have attracted considerable attention. However, compared with studies focusing on the ultrasonic frequency domain, critical features and information specific to audible acoustofluidics remain dispersed across many independent publications, and a systematic integration of the literature on this topic is necessary. Accordingly, this review summarizes the basic theory and methods for generating vibrations in the audible range, presents various applications thereof in biology, chemistry, and other fields, and provides a high-level overview of the current status of the topic to motivate developing interesting proposals for further research in this field of study.
AB - Acoustofluidics is a term describing the class of phenomena in which mechanical or acoustic vibrations induce a deformation or a flow in a fluid. Many deficiencies in our understanding of these phenomena remain to be addressed, with respect to the fundamental theoretical framework as well as in numerous applications. In this regard, the frequency of external forcing is a key parameter. Owing to the low cost, substantial magnitude, and versatility associated with acoustofluidic phenomena at audible frequencies, studies of these phenomena in the audible range have emerged with increasing amount in recent years and have attracted considerable attention. However, compared with studies focusing on the ultrasonic frequency domain, critical features and information specific to audible acoustofluidics remain dispersed across many independent publications, and a systematic integration of the literature on this topic is necessary. Accordingly, this review summarizes the basic theory and methods for generating vibrations in the audible range, presents various applications thereof in biology, chemistry, and other fields, and provides a high-level overview of the current status of the topic to motivate developing interesting proposals for further research in this field of study.
KW - Acoustofluidics
KW - Audible frequency
KW - Biological detection
KW - Chemical reaction
KW - Heat transfer
KW - Micropumping
KW - Mixing
KW - Particle manipulation
KW - Vibration generation
UR - https://www.scopus.com/pages/publications/85214258997
U2 - 10.1016/j.eng.2024.03.020
DO - 10.1016/j.eng.2024.03.020
M3 - 文献综述
AN - SCOPUS:85214258997
SN - 2095-8099
VL - 44
SP - 51
EP - 72
JO - Engineering
JF - Engineering
ER -