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Thermo-capillary effect on the linear temporal and spatial instability of viscous liquid jets falling under gravity

机译:热毛细作用对重力作用下粘性液体射流的线性时间和空间不稳定性的影响

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The thermal modulation of Newtonian liquid jets at the orifice causes a variation in surface tension, which propagates downstream inducing Marangoni instability. Therefore, the linear temporal and spatial instability should be investigated to predict the same size of producing small spherical pellets. In this paper, we consider a viscous liquid jet emerging from a nozzle subject to thermo-capillary effects falling under gravity. Moreover, we use the asymptotic approach to reduce the governing equation into one-dimensional (1-D). The steady state solutions have been found using a modified Newton's method, and then the linear instability analysis has been investigated of the resulting set of equations.
机译:孔口处的牛顿液体射流的热调制导致表面张力发生变化,并向下游传播,从而引起Marangoni不稳定性。因此,应研究线性的时间和空间不稳定性,以预测生产小球形颗粒的相同尺寸。在本文中,我们考虑从喷嘴喷出的粘性液体射流在重力作用下受到热毛细作用的影响。此外,我们使用渐近方法将控制方程简化为一维(1-D)。使用改进的牛顿法找到了稳态解,然后对所得的方程组进行了线性不稳定性分析。

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