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通过毛细波阻尼进行粘度的无创测量。

Noninvasive measurement of viscosity from damping of capillary waves.

作者信息

Behroozi F, Lambert B, Buhrow B

机构信息

Department of Physics, University of Northern Iowa, Cedar Falls, IA 50614, USA.

出版信息

ISA Trans. 2003 Jan;42(1):3-8. doi: 10.1016/s0019-0578(07)60108-6.

Abstract

Capillary waves are surface waves on fluids with wavelengths in the millimeter range. The determination of viscosity from the damping of capillary waves is of great practical importance as it affords the possibility of measuring the viscosity of fluids noninvasively. In this paper a noncontact method for generation and detection of capillary waves on fluid is described. A miniature laser interferometer is employed to measure noninvasively the wave amplitude and its attenuation with a resolution of about 10 nm. As a test case, the attenuation data for capillary waves on pure water are used to obtain the kinematic viscosity of water as a function of temperature. The results compare favorably with the most reliable published data on the subject.

摘要

毛细波是波长在毫米范围内的流体表面波。通过毛细波的衰减来确定粘度具有重要的实际意义,因为它提供了非侵入性测量流体粘度的可能性。本文描述了一种用于在流体上产生和检测毛细波的非接触方法。采用微型激光干涉仪以约10纳米的分辨率非侵入性地测量波幅及其衰减。作为一个测试案例,利用纯水表面毛细波的衰减数据来获取水的运动粘度随温度的变化关系。结果与该主题最可靠的已发表数据相比非常有利。

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