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The compact acoustic liquid sensor based on the circumferential modes of a cylindrical shell

机译:基于圆柱形外壳的圆周模式的紧凑型声学液体传感器

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Liquid sensing is achieved by using a resonant cylindrical shell. The sensing mechanism is based on the fact that the localized circumferential waves confined around the cylindrical shell interact intensively with the liquid sample inside the shell, with the resonant transmission of the cylindrical shell being strongly dependent on the acoustic properties of the liquid in the shell, especially the density of the liquid. Numerical simulations and experimental measurements show that the transmission dip varies with the concentration of a sodium iodide (NaI) and water mixture in the shell. The advantages of a liquid sensor based on the circumferential modes of a cylindrical shell are numerous. For example, a minimal liquid sample is required, the cylindrical shell is disposable, and the sensor is compatible with other microfluidic components, thereby allowing the liquid sensor to be integrated with lab-on-a-chip devices for various microfluidic sensing applications. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过使用谐振圆柱形壳来实现液体传感。感测机构基于圆柱壳周围限制的局部圆周波与壳体内部的液体样品相互作用,具有圆柱形壳体的谐振传动,圆柱形壳体强烈取决于壳体中液体的声学特性,特别是液体的密度。数值模拟和实验测量表明,透射率随壳中碘化钠(NAI)和水混合物的浓度而变化。基于圆柱形壳体的圆周模式的液体传感器的优点是多数。例如,需要最小的液体样品,圆柱形壳体是一次性的,并且传感器与其他微流体部件兼容,从而允许液体传感器与用于各种微流体传感应用的实验室装置集成。 (c)2020 Elsevier B.v.保留所有权利。

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