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Non-Newtonian flow effects on the coalescence and mixing of initially stationary droplets of shear-thinning fluids

机译:非牛顿流对剪切稀化流体初始静止液滴的聚结和混合的影响

摘要

The coalescence of two initially stationary droplets of shear-thinning fluids in a gaseous environment is investigated numerically using the lattice Boltzmann method, with particular interest in non-Newtonian flow effects on the internal mixing subsequent to coalescence. Coalescence of equal-sized droplets, with one being Newtonian while the other is non-Newtonian, leads to the non-Newtonian droplet wrapping around the Newtonian one and hence minimal fine-scale mixing. For unequal-sized droplets, mixing is greatly promoted if both droplets are shear-thinning. When only one of the droplets is shear-thinning, the non-Newtonian effect from the smaller droplet is found to be significantly more effective than that from the larger droplet in facilitating internal jetlike mixing. Parametric study with the Carreau-Yasuda model indicates that the phenomena are universal to a wide range of shear-thinning fluids, given that the extent of shear thinning reaches a certain level, and the internal jet tends to be thicker and develops more rapidly with increasing extent of the shear-thinning effect.
机译:剪切稀疏流体在气态环境中的两个最初静止的液滴的聚结使用格子Boltzmann方法进行了数值研究,尤其关注聚结后内部区域混合的非牛顿流动效应。相等大小的液滴的聚结,一个是牛顿的,另一个是非牛顿的,导致非牛顿的液滴围绕牛顿的液滴缠绕,因此导致最小的精细混合。对于大小不等的液滴,如果两个液滴都被剪切稀化,则会大大促进混合。当只有一个液滴被剪切稀化时,发现较小液滴的非牛顿效应比较大液滴的非牛顿效应在促进内部射流混合方面更为有效。用Carreau-Yasuda模型进行的参数研究表明,鉴于剪切稀化的程度达到一定水平,并且内部射流趋于变厚,并且随着射流的增加而发展得更快,这种现象对于广泛的剪切稀化流体是普遍的。稀疏效应的程度。

著录项

  • 作者

    Sun K; Wang T; Zhang P; Law CK;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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