悬浮液的运输特性:关于均匀球形粒子的牛顿悬浮液粘度的注释

David G Thomas
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引用次数: 1009

摘要

对均匀球形颗粒悬浮液的相对粘度进行了大量的实验分析。通过适当的外推技术,非牛顿、惯性和非均匀悬浮效应被最小化。结果表明,当固体体积分数为0.50时,数据的散射度从±75%降低到±13%。采用非线性最小二乘法确定了固体相对粘度和体积分数的幂级数系数。结果表明,一个包含三个由理论分析确定系数的幂级数和一个包含两个可调常数的指数项的新表达式既适合于数据,也适合于一个包含六个项(其中三个或四个为可调常数,其余系数为理论值)的幂级数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transport characteristics of suspension: VIII. A note on the viscosity of Newtonian suspensions of uniform spherical particles

A critical analysis was made of the extensive experimental data on the relative viscosity of suspensions of uniform spherical particles. By appropriate extrapolation techniques, non-Newtonian, inertial, and nonhomogeneous suspension effects were minimized. As a result, the scatter of the data was reduced from ±75% to ±13% at a volume fraction solids of 0.50. The coefficients of different power series relating relative viscosity and volume fraction solids were determined using a nonlinear least squares procedure. It was shown that a new expression containing three terms of a power series with coefficients determined from previous theoretical analyses and an exponential term with two adjustable constants fit the data as well as a power series with six terms, either three or four of which were adjustable constants with the remaining coefficients being theoretical values.

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