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The calming effect of oil on water

机译:油对水的镇静作用

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The calming effect of oil on water has been known since ancient times. Benjamin Franklin was the first to investigate the effect, but the underlying mechanism for this striking phenomenon remains elusive. We used a miniature laser interferometer to measure the amplitude of surface waves to a resolution of +/- 5 nm, making it possible to determine the effect of an oil monolayer on the attenuation of capillary waves and the surface dilational modulus of the monolayer. We present attenuation data on pure water, water covered by olive oil, water covered by a fatty acid, and a water-acetone mixture for comparison. From the attenuation data at frequencies between 251 and 551 Hz, we conclude that the calming effect of oil on surface waves is principally due to the dissipation of wave energy caused by the Gibbs surface elasticity of the monolayer, with only a secondary contribution from the reduction in surface tension.. Our data also indicate that the surface-dilational viscosity of the oil monolayer is negligible and plays an insignificant role in calming the waves. (C) 2007 American Association of Physics Teachers.
机译:自古以来,人们就知道油对水的镇静作用。本杰明·富兰克林(Benjamin Franklin)是第一个研究这种影响的人,但是这种惊人现象的潜在机制仍然难以捉摸。我们使用微型激光干涉仪测量表面波的幅度,分辨率为+/- 5 nm,从而可以确定油单层对毛细管波衰减和单层表面膨胀模量的影响。为了比较,我们提供了纯水,橄榄油所覆盖的水,脂肪酸所覆盖的水以及水-丙酮混合物的衰减数据。从频率在251和551 Hz之间的衰减数据中,我们得出结论,油对表面波的镇静作用主要是由于单层的吉布斯表面弹性引起的波能耗散,而减少的贡献仅是次要的。我们的数据还表明,单层油的表面膨胀粘度可以忽略不计,并且在使波浪平静中起着微不足道的作用。 (C)2007年美国物理教师协会。

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