Thermocapillary Migration of Liquid Droplets in a Temperature Gradient in a Density Matched System

Thermocapillary Migration of Liquid Droplets in a Temperature Gradient in a Density Matched System

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Publisher's Synopsis

An experimental investigation of thermocapillary flow in droplets of a vegetable oil (partially hydrogenated soybean oil) immersed in silicone oil was conducted in a test cell with a heated top wall and a cooled bottom wall. The liquids are nearly immiscible and have equal densities at a temperature below the room temperature, thus providing a simulation of low-gravity conditions by reducing the buoyancy forces. The interfacial tension between the two oils was measured in the temperature range 20 to 50 C using a capillary tube and (d sigma)/(d T) was determined to be negative. Droplets ranging in sizes from 3 mm to 1 cm diameter were injected into the silicone oil. The vertical temperature profile in the bulk liquid (silicone oil) produces temperature variations along the interface which induce variations in the interfacial tension. The flow inside the droplet driven by the resulting interfacial shear stresses was observed using a laser light-sheet flow visualization technique. The flow direction is consistent with the sign of (d sigma)/(d T). The observed maximum surface velocities are compared to the theoretical predictions of Young et al. (1959). Rashidnia, N. and Balasubramaniam, R. Unspecified Center NAS3-25266; NCC3-140; RTOP 674-24-05...

Book information

ISBN: 9781728899015
Publisher: Independently Published
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 32
Weight: 100g
Height: 280mm
Width: 216mm
Spine width: 2mm