Konferenzpaper

Particle accumulation structures in time-dependent thermocapillary flow in a liquid bridge under microgravity


AutorenlisteSchwabe, D.; Tanaka, S.; Mizev, A.; Kawamura, H.

Jahr der Veröffentlichung2006

Seiten117-127

ZeitschriftMicrogravity Science and Technology

Bandnummer18

Heftnummer3-4

ISSN0938-0108

DOI Linkhttps://doi.org/10.1007/BF02870393

KonferenzBiannual Symposium and General Assembly of the European-Low-Gravity-Research-Association (ELGRA)

VerlagSpringer


Abstract
The formation of a dynamic spiral string of particles with larger density than the fluid was investigated for time-dependent thermocapillary flow in liquid bridges under various gravity conditions including microgravity. The dynamic spiral string forms after approximately 20-60 oscillation periods from the homogeneous dilute particle suspension. It was found that the action of gravity is not decisive in the process of the particle accumulation structure (PAS) but gravity influences the flow, field for PAS-formation. We could realize and observe PAS with modal structure m = 3 under mu-g but modal structure m = 2 occurred only during a transient of the operating parameters in an aspect ratio-range different from that under normal gravity. The correlation of the optically observed PAS structure with the temperature structure of the azimuthally rotating hydrothermal wave on the free surface is the same under microgravity as under normal gravity indicating that PAS is a pure Marangoni effect.



Zitierstile

Harvard-ZitierstilSchwabe, D., Tanaka, S., Mizev, A. and Kawamura, H. (2006) Particle accumulation structures in time-dependent thermocapillary flow in a liquid bridge under microgravity, Microgravity Science and Technology, 18(3-4), pp. 117-127. https://doi.org/10.1007/BF02870393

APA-ZitierstilSchwabe, D., Tanaka, S., Mizev, A., & Kawamura, H. (2006). Particle accumulation structures in time-dependent thermocapillary flow in a liquid bridge under microgravity. Microgravity Science and Technology. 18(3-4), 117-127. https://doi.org/10.1007/BF02870393



Schlagwörter


CONVECTIONFLOATING ZONESREDUCED GRAVITYSTEADYSTRUCTURES PAS


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