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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Theoretical analyses and numerical simulations of the torsional mode for two acoustic viscometers with preliminary experimental tests
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Theoretical analyses and numerical simulations of the torsional mode for two acoustic viscometers with preliminary experimental tests

机译:两种声学粘度计的扭转模式的理论分析和数值模拟,并进行了初步的实验测试

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A rigorous analysis of the torsional modes in both a cylindrical wave guide and the associated static viscous fluid field has been conducted from the solid and the fluid wave equations and the coupled boundary conditions. As a result, two acoustic viscometer models, along with four independent equations connecting the density and the viscosity of the fluid with the attenuation and the phase velocity of the torsional wave in the wave guide, have been developed. The analysis shows that the product of the viscosity and the density of the fluid can be measured from the end reflection coefficient of the torsional wave in the wave guide and that both the viscosity and the density can be determined simultaneously from either the phase velocity or the attenuation of the torsional wave in a single cylindrical wave guide. For the simultaneous measurements of the viscosity and the density, the independent equations have to be solved numerically, for example, using Matlab (The MathWorks, Natick, MA), given either the attenuation or the phase velocity in the wave guide that is surrounded by the fluid. To demonstrate the technical feasibility, numerical simulations have been conducted to discern viscosity, phase velocity, and density, all versus attenuation, at different frequencies, and with variable dimension of a molybdenum rod, so that both the advantages and the disadvantages of the simultaneous measurements can be explored. In the end, to test the two models, preliminary experiments on two viscous standards were conducted at 23degC, and good agreements have been achieved between the viscosities measured from both models and for both standards.
机译:从固体和流体波方程以及耦合的边界条件出发,已经对圆柱波导和相关的静态粘性流场中的扭转模式进行了严格的分析。结果,开发了两个声学粘度计模型,以及四个独立的方程,将流体的密度和粘度与波导中扭转波的衰减和相速度联系起来。分析表明,可以从波导中扭转波的末端反射系数来测量流体的粘度和密度的乘积,并且可以从相速度或相位角同时确定粘度和密度。单个圆柱波导中扭转波的衰减。为了同时测量粘度和密度,必须在数值上求解独立的方程式,例如,使用Matlab(MathWorks,Natick,MA),给定衰减或相速度,将其包围起来。流体。为了证明技术可行性,已经进行了数值模拟,以识别粘度,相速度和密度在不同频率下以及衰减的钼棒尺寸与衰减之间的关系,因此,同时进行测量的优缺点可以探索。最后,为了测试这两种模型,在23°C下对两种粘性标准品进行了初步实验,并且从这两种模型以及两种标准品测得的粘度之间都取得了良好的一致性。

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