A review of acoustic compressors and pumps from fluidics perspective

A review of acoustic compressors and pumps from fluidics perspective
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DOI:
10.1016/j.sna.2018.09.031
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发表时间:
2018-11
期刊:
Sensors and Actuators A: Physical
影响因子:
--
通讯作者:
Sonu K. Thomas;T. Muruganandam
Sonu K. Thomas;T. Muruganandam
中科院分区:
其他
文献类型:
--
作者:
Sonu K. Thomas;T. Muruganandam

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流体学的优点是使用非移动部件来管理流体运动。声学压缩机/泵作为一种无移动部件泵送技术,已成为流体学领域的最新产品。尽管使用非移动部件具有优势,但迄今为止只有少数声学流体泵经过物理构建和测试。然而,在声学领域,有许多采用运动部件整流器构建的声泵。流体学领域可以从声学压缩技术的最新进展中受益匪浅,而声学领域可以从流体学中已有的大量工作中受益。尽管研究人员在过去几十年中对这一主题进行了广泛的研究,但没有任何单一资源列出、检查、组合和推断有关它的大量信息。这篇综述提供了一个集体资源,在理解、预测和应用方面追溯了声学压缩机/泵从其发明到最新进展的发展过程。这篇简短的评论(a)为各个领域(特别是声学和流体学领域)的研究人员提供了文献资源,(b)提供了对现有技术的批判性评估,(c)为未来的设计提供了建议。
Fluidics has the advantage of using no-moving-parts to manage fluid motion. Acoustic compressor/pump has become the latest entry into the field of fluidics as a no-moving-part pumping technology. Despite the advantage of using no-moving-parts, there are only a few acoustic fluidic pumps that have been physically built and tested to date. However, in the acoustics field, there are many acoustic pumps built employing moving-parts rectifiers. The fluidics field can benefit immensely from the recent advances made in acoustic compression technology, while the acoustic field can benefit from the plethora of work that already exists in fluidics. Although researchers have conducted extensive studies on this topic during the last few decades, no single resource lists, examines, combines and infers the immense information about it. This review offers a collective resource, tracing the development of the acoustic compressor/pump from its invention to recent advances, in terms of understanding, prediction, and application. This brief review (a) serves as a literature resource for researchers from various areas (especially from the field of acoustics and fluidics) (b) provides a critical assessment of the state of the art, and (c) provides suggestions for future designs.