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612-822-4611
Buoyancy-Thermocapillary Convection of Volatile Fluids in Confined and Sealed Geometries

Buoyancy-Thermocapillary Convection of Volatile Fluids in Confined and Sealed Geometries

Paperback

Series: Springer Theses

Technology & EngineeringPhysics

ISBN10: 331987053X
ISBN13: 9783319870533
Publisher: Springer
Published: May 12 2018
Pages: 209
Weight: 0.72
Height: 0.48 Width: 6.14 Depth: 9.21
Language: English

This thesis represents the first systematic description of the two-phase flow problem. Two-phase flows of volatile fluids in confined geometries driven by an applied temperature gradient play an important role in a range of applications, including thermal management, such as heat pipes, thermosyphons, capillary pumped loops and other evaporative cooling devices. Previously, this problem has been addressed using a piecemeal approach that relied heavily on correlations and unproven assumptions, and the science and technology behind heat pipes have barely evolved in recent decades. The model introduced in this thesis, however, presents a comprehensive physically based description of both the liquid and the gas phase.

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