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Unsteady-state mass transfer from a binary gas bubble with changing volume

机译:体积变化的二元气泡的非稳态传质

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Numerical methods are used to investigate the transient mass transfer from a binary gas bubble to an incompressible liquid. The bubble has two components: A - soluble and B - insoluble in the surrounding fluid. The concentration of A inside the bubble is considered spatially uniform but not constant in time. The maximum value of the initial volumetric fraction of A is 0.3. The mathematical model equations were solved numerically in spherical coordinates system. Creeping flow, moderate Re number flow, 10 ≤ Re ≤ 100, and potential flow around the bubble were assumed. The computations focused on the influence of the initial fraction of A and Henry number on the mass transfer rate for Pe ≤ 10~4.
机译:数值方法用于研究从二元气泡到不可压缩液体的瞬态传质。气泡在周围的流体中具有两个成分:A-可溶和B-不溶。气泡内部的A浓度在空间上被认为是均匀的,但在时间上不是恒定的。 A的初始体积分数的最大值为0.3。在球形坐标系中对数学模型方程进行了数值求解。假定蠕变流,适中的Re数流,10≤Re≤100以及气泡周围的潜在流。计算主要集中在A的初始分数和亨利数对Pe≤10〜4的传质速率的影响。

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