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稀释乳液的热涨落

The thermal fluctuations of diluted emulsion.

作者信息

Tchesskaya T Yu, Zatovsky A V

机构信息

Information Technology Department, Odessa State Environmental University, Lvovskaya 15, Odessa 65016, Ukraine.

出版信息

Adv Colloid Interface Sci. 2004 May 20;108-109:23-7. doi: 10.1016/j.cis.2003.10.001.

Abstract

The collective excitations of the compressible diluted emulsion are studied. The diluted emulsion is consisted of molecules with intrinsic momentum. The motion equation for fluctuation fields of the velocity, density, intrinsic momentum and pressure were chosen here in the form of linearized Navier-Stokes equations with constant shear and volume viscosity, and diffusion coefficient of momentum, spontaneous stresses. For simplicity in the calculations, temperature fluctuations were not taken into account. We assume that the emulsion possesses constant surface tension. For hydrodynamic fields excited by spontaneous sources, continuity conditions on the surface tangents of the velocity and stress tensor components should be satisfied at the interface. The boundary conditions for the normal force components comprise the excess Laplace pressure and the random surface force determined by the difference of the radial values of the spontaneous volume stress densities. Because of the smallness of the surface displacements, all the boundary conditions should be applied on sphere. To construct the spectral densities of the thermal fields caused by random surface forces, we used the fluctuation-dissipate theorem. The spectral densities of the thermal amplitude fluctuations of the hydrodynamic currents are expressed in terms of susceptibilities. The spectrum of fluctuations contains all the collective excitations of the emulsion associated with fluctuating motions of the surface and with the properties of near-surface currents. Their analysis, based on strict inequalities between the drop's emulsion size, the penetration depth of a viscous wave, and the wavelength of sound, essentially depends on the order of magnitude of the boundary transitions.

摘要

研究了可压缩稀释乳液的集体激发。稀释乳液由具有固有动量的分子组成。这里选择速度、密度、固有动量和压力的涨落场的运动方程为具有恒定剪切和体粘度以及动量扩散系数、自发应力的线性化纳维 - 斯托克斯方程的形式。为了计算简便,未考虑温度涨落。我们假设乳液具有恒定的表面张力。对于由自发源激发的流体动力学场,在界面处应满足速度和应力张量分量的表面切线的连续性条件。法向力分量的边界条件包括过量的拉普拉斯压力和由自发体应力密度的径向值之差确定的随机表面力。由于表面位移很小,所有边界条件都应应用于球体上。为了构建由随机表面力引起的热场的谱密度,我们使用了涨落 - 耗散定理。流体动力学电流的热振幅涨落的谱密度用磁化率表示。涨落谱包含与表面的波动运动以及近表面电流的性质相关的乳液的所有集体激发。基于液滴乳液尺寸、粘性波穿透深度和声波长之间的严格不等式对它们进行分析,本质上取决于边界跃迁的量级。

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