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VELOCITY DISPERSION AND VISCOUS RELAXATION IN SUPERCOOLED WATER

机译:过冷水中的速度分散和粘性松弛

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Brillouin scattering spectra of water from T = 30 degrees C down to supercooling temperatures of about T = -26 degrees C have been measured, at different scattering angles and for different exciting wavelengths, covering exchanged wave vector values from 0.0137 to 0.0351 nm(-1). A fit of the spectra using the hydrodynamic line shape for a simple fluid confirms the existence of a relevant dispersion in the wave vector dependence of the hypersonic sound velocity. The parameters obtained fitting the data with a relaxing hydrodynamic model indicate the ratio between volume and shear viscosity is almost temperature independent also in the supercooled regime and that a single relaxation process, involving almost entirely both shear and volume viscosities, accounts for the observed dispersion. The infinite frequency sound velocity is found to be of about 2150 m/s almost independently on temperature. The temperature dependence of the relaxation time is discussed and compared with that of other relaxation times available in the literature. Predictions are made for the temperature and wave vector values at which the dispersion of sound velocity should be best observed. (C) 1996 American Institute of Physics. [References: 38]
机译:在不同的散射角和不同的激发波长下,测量了从T = 30摄氏度到大约T = -26摄氏度的过冷温度的水的布里渊散射光谱,涵盖了从0.0137到0.0351 nm(-1)的交换波矢量值)。使用流体动力学线形对简单流体进行光谱拟合,证实了高超声速与波矢量相关性中存在相关的色散。将数据与松弛流体力学模型拟合得到的参数表明,体积和剪切粘度之间的比率在过冷状态下也几乎与温度无关,并且单个松弛过程(几乎全部包含剪切粘度和体积粘度)构成了观察到的分散。发现无限频率声速几乎与温度无关地为约2150m / s。讨论了弛豫时间的温度依赖性,并将其与文献中提供的其他弛豫时间的温度依赖性进行了比较。对温度和波矢值进行了预测,应在该温度和波矢值处最佳观察声速的分散。 (C)1996年美国物理研究所。 [参考:38]

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