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An experimental study of recoil capillary waves and break up of vertically flowing down water jets

机译:反冲毛细波的实验研究与垂直流动喷射喷水的分裂

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Break up of water jets under gravity is a ubiquitous phenomenon. The role of surface tension on the instability of uniform water jets was recognised long ago by Plateau and Rayleigh. According to the Plateau–Rayleigh theory, external (or internal) perturbation waves create necks and bulges all along the uniform jet length. The perturbation waves of wavelengths larger than a certain value keep growing with time and ultimately cause the continuous jet to break up into individual drops. The effect of external perturbation waves was investigated experimentally, in most cases under gravity, and found to confirm the essentials of the theory. Recently, the idea of recoil capillary waves as a possible internal source of perturbations was emphasised. According to this idea, immediately after the break up of the jet, the tip of the remaining continuous jet (after a drop is detached) recoils. Its effect travels upstream as a recoil capillary wave which gets reflected at the mouth of the jet-issuing nozzle. The reflected capillary wave travels downstream along the jet with its Doppler-shifted wavelength as a reinforcing perturbation wave and, as a result, affecting the break up length of the jet. We set up and perform an experiment to verify the existence of these tip contraction recoil capillary waves. The results of our experiment support the existence of these recoil capillary waves. However, the effect of these capillary waves on the jet break up length is found to be small.
机译:在重力下分解水喷射是一种普遍存在的现象。表面张力对均匀水喷射稳定性的作用很久以前通过高原和瑞利认识到。根据高原瑞利理论,外部(或内部)扰动波产生颈部并沿着均匀喷射长度凸起。波长的波长的扰动波大于一定值的时间随着时间的推移而导致连续射流分解成各个液滴。实验研究了外部扰动波的效果,在大多数情况下,在重力下发现,发现了确认理论的必要性。最近,强调了反冲毛细波作为可能的内部扰动来源的想法。根据这个想法,立即在射流破碎后,剩余连续喷射的尖端(滴落后脱落)反冲。它的效果在射流发出喷嘴口处反射的反冲毛细管的上游行进。反射的毛细管波在沿喷射的下游行进,其多普勒移位波长作为增强扰动波,因此影响射流的断裂长度。我们设置并执行实验以验证这些尖端收缩反冲毛动波的存在。我们的实验结果支持这些反冲毛细波的存在。然而,发现这些毛细波对喷射分裂长度的影响很小。

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