Thermal transpiration for the linearized boltzmann equation
Resource
Communications on Pure and Applied Mathematics 60 (2): 147-163
Journal
Communications on Pure and Applied Mathematics
Journal Volume
60
Journal Issue
2
Pages
147-163
Date Issued
2007
Author(s)
Abstract
The phenomena of thermal transpiration due to the boundary temperature gradient is studied on the level of the linearized Boltzmann equation for the hard-sphere model. We construct such a flow for a highly rarefied gas between two plates and also in a circular pipe. It is shown that the flow velocity parallel to the plates is proportional to the boundary temperature gradient. For a highly rarefied gas, that is, for a sufficiently large Knudsen number κ, the flow velocity between two plates is of the order of log κ, and the flow velocity in a pipe is of finite order. Our analysis is based on certain pointwise estimates of the solutions of the linearized Boltzmann equation. © 2006 Wiley Periodicals, Inc.
Type
journal article
File(s)![Thumbnail Image]()
Loading...
Name
04.pdf
Size
23.48 KB
Format
Adobe PDF
Checksum
(MD5):f9365945377a4c852e457ade5b545269