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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Diffusion-induced bubble growth and collapse in yield stress fluids
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Diffusion-induced bubble growth and collapse in yield stress fluids

机译:扩散引起的气泡生长和屈服应力流体的崩塌

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The dynamics of diffusion-induced bubble growth and collapse in yield stress fluids are investigated. A properly formulated model, which requires a rheological constitutive equation that allows for elastic deformation before yielding, is developed that includes as special cases bubble growth and collapse in Newtonian liquids and elastic solids. The model describes bubble growth (collapse) driven by mass diffusion from (to) the medium surrounding the bubble where mass and momentum transport are coupled through the boundary condition at the bubble-medium interface. During the initial stage of the process, the entire medium behaves like an elastic solid; when the yield stress is reached, the medium has both yielded and un-yielded regions separated by a time-dependent yield surface. Bubble growth and collapse dynamics are examined as function of the parameter N-sigma = sigma/G, the yield stress sigma normalized by the elastic modulus G. For bubble growth (collapse), the rate of growth (collapse) in a yield stress fluid is reduced relative to the Newtonian case and decreases with increasing N-sigma until the elastic case is reached. (C) 2014 Elsevier B.V. All rights reserved.
机译:研究了扩散引起的气泡在屈服应力流体中生长和破裂的动力学。建立了一个适当公式化的模型,该模型需要一个流变本构方程,允许在屈服之前发生弹性变形,在特殊情况下,该模型包括在牛顿液体和弹性固体中的气泡生长和破裂。该模型描述了气泡的生长(塌陷),该气泡的生长是由质量扩散从气泡周围的介质(扩散到气泡周围的介质)驱动的,在那里,质量和动量传输通过气泡-介质界面处的边界条件耦合。在该过程的初始阶段,整个介质的行为就像是弹性固体。当达到屈服应力时,介质具有由时间相关的屈服面分隔的屈服和未屈服区域。根据参数N-sigma = sigma / G(通过弹性模量G归一化的屈服应力sigma)检查气泡的生长和破裂动力学。相对于牛顿情况减小了,并且随着N-sigma的增加而减小,直到达到弹性情况。 (C)2014 Elsevier B.V.保留所有权利。

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