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首页> 外文期刊>Journal of Chemical Engineering of Japan >Numerical Simulation of the Formation of a Jet and Droplets from a Capillary in a Co-Flowing Ambient Fluid
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Numerical Simulation of the Formation of a Jet and Droplets from a Capillary in a Co-Flowing Ambient Fluid

机译:共流环境流体中毛细管形成射流和液滴的数值模拟

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摘要

References(16) Cited-By(1) Formation of a liquid jet and droplets from a micro-capillary in another immiscible co-flowing ambient fluid is simulated numerically with a front-tracking/finite difference method. The transition from dripping to jetting is observed and the size of the resulting droplets is predicted. The predicted size in jetting mode is in close agreement with that from linear stability theory for a moving liquid jet in a co-flowing ambient fluid with the same speed as the jet. The transition between dripping and jetting are mapped on the diagram of the jet Weber number versus the ambient flow Capillary number. It is found that the viscosity ratio is an important parameter to distinguish the mode.
机译:参考文献(16)引用了(1)在另一种不混溶的同流环境流体中,从微毛细管中形成液体射流和液滴的过程,采用前跟踪/有限差分法进行了数值模拟。观察到从滴落到喷射的过渡,并预测了产生的液滴的大小。射流模式下的预测尺寸与线性稳定性理论中的预测值非常一致,该线性稳定性理论用于在同流环境流体中以与射流相同的速度移动液体射流。滴落和喷射之间的过渡映射在喷射韦伯数与环境流量毛细管数的关系图中。发现粘度比是区分模式的重要参数。

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