首页> 外文期刊>Physics of fluids >Ensemble-average versus suspension-scale Cauchy continuum-mechanical definitions of stress in polarized suspensions: Global homogenization of a dilute suspension of dipolar spherical particles
【24h】

Ensemble-average versus suspension-scale Cauchy continuum-mechanical definitions of stress in polarized suspensions: Global homogenization of a dilute suspension of dipolar spherical particles

机译:极化平均悬浮液中应力的整体平均与悬浮液规模的柯西连续力学定义:偶极球形颗粒稀悬浮液的整体均质化

获取原文
获取原文并翻译 | 示例
           

摘要

The macroscale rheological properties of a dilute suspension exposed to a uniform external field and composed of identical, rigid, inhomogeneous, dipolar, spherical particles dispersed in an incompressible Newtonian fluid and possessing the same mean density as the latter fluid are derived from knowledge of its microscale properties by applying a global ensemble-averaging technique. Each dipole, which is permanently embedded in the particle, is assumed to be generated by the presence of an inhomogeneous external body-force field in the particle interior resulting from the action of the uniform external field on an inhomogeneous distribution of interior matter. It is shown that although the ensemble-average stress tensor is symmetric, the suspension nevertheless behaves macroscopically as if it possessed an asymmetric stress tensor. This seeming contradiction can be traced to the fact that the average body force acting on the contents of any arbitrarily drawn volume lying in the interior of the suspension does not vanish despite the fact that each particle is "neutrally buoyant". That this force is not zero stems from the fact that some particles necessarily straddle the closed surface bounding that volume, and that the distribution of external body forces over the interiors of these particles is nonuniform. As such, that portion of the spherical particle lying outside of the surface enclosing the domain exerts a force on the remaining portion of the sphere lying within that domain. We then demonstrate that the natural macroscopic model, which is derived by equating the divergence of the suspension-scale stress appearing in that model to the ensemble-average external body-force field, and which predicts a symmetric stress tensor, is macroscopically deficient with respect to the more intuitive asymmetric stress model usually proposed by continuum mechanicians for such a suspension. It is shown that the latter, continuum-mechanical model recovers all the physically interesting properties of the suspension.
机译:稀释悬浮液的宏观流变学性质来自于其微观尺度,该稀释悬浮液暴露于均匀的外场,该悬浮液由分散在不可压缩的牛顿流体中且具有与后者流体相同的平均密度的相同,刚性,不均匀,偶极,球形颗粒组成。通过应用整体集成平均技术获得属性。假定永久性嵌入粒子中的每个偶极子是由于均匀的外场对内部物质的不均匀分布的作用而在粒子内部存在不均匀的外力场而产生的。结果表明,尽管整体平均应力张量是对称的,但悬架在宏观上仍表现为好像具有非对称应力张量。这种看似矛盾的现象可以追溯到这样一个事实,即尽管每个粒子都是“中性浮力”的,但作用在悬浮液内部的任意抽取物的内含物所承受的平均体力不会消失。该力不为零的原因是,某些粒子必须跨过限制该体积的封闭表面,并且外部力在这些粒子内部的分布不均匀。这样,球形颗粒位于包围该畴的表面之外的那部分向位于该畴内的球的其余部分施加力。然后,我们证明了通过将模型中出现的悬浮尺度应力的发散与整体平均外部力场相等并得出对称应力张量的自然宏观模型在宏观方面是不足的连续力学通常针对此类悬挂提出的更为直观的​​非对称应力模型。结果表明,后者的连续力学模型恢复了悬浮液的所有物理特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号