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A foam film propagating in a confined geometry: Analysis via the viscous froth model

机译:在有限的几何形状中传播的泡沫膜:通过粘性泡沫模型进行分析

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摘要

A single film (typical of a film in a foam) moving in a confined geometry (i.e. confined between closely spaced top and bottom plates) is analysed via the viscous froth model. In the first instance the film is considered to be straight (as viewed from above the top plate) but is not flat. Instead it is curved (with a circular arc cross-section) in the direction across the confining plates. This curvature leads to a maximal possible steady propagation velocity for the film, which is characterised by the curved film meeting the top and bottom plates tangentially. Next the film is considered to propagate in a channel (i.e. between top and bottom plates and sidewalls, with the sidewall separation exceeding that of the top and bottom plates). The film is now curved along as well as across the top and bottom plates. Curvature along the plates arises from viscous drag forces on the channel sidewall boundaries. The maximum steady propagation velocity is unchanged, but can now also be associated with films meeting channel sidewalls tangentially, a situation which should be readily observable if the film is viewed from above the top plate. Observed from above, however, the film need not appear as an arc of a circle. Instead the film may be relatively straight along much of its length, with curvature pushed into boundary layers at the sidewalls.
机译:通过粘性泡沫模型分析以限定的几何形状(即,限定在紧密间隔的顶板和底板之间)移动的单个膜(通常是泡沫中的膜)。在第一种情况下,薄膜被认为是直的(从顶板上方看),但不是平坦的。相反,它在跨过限制板的方向上弯曲(横截面为圆弧形)。该曲率导致膜的最大可能的稳定传播速度,其特征在于弯曲的膜切向地遇到顶板和底板。接下来,认为该膜在通道中传播(即,在顶板和底板与侧壁之间,其侧壁间隔超过顶板和底板的间隔)。现在,薄膜沿着顶部和底部以及顶部和底部弯曲。沿板的曲率是由通道侧壁边界上的粘性阻力产生的。最大稳定传播速度没有变化,但现在也可以与切向遇到通道侧壁的薄膜相关联,如果从顶板上方观看薄膜,这种情况应该很容易观察到。但是,从上方观察,该膜不必显示为圆弧。取而代之的是,薄膜在其大部分长度上可能是相对笔直的,曲率被推入侧壁的边界层。

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