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Modeling and bifurcation analysis of...
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Cisternas, Jaime Elgueta.
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Modeling and bifurcation analysis of thermo-mechano-chemical oscillations.
Record Type:
Electronic resources : Monograph/item
Title/Author:
Modeling and bifurcation analysis of thermo-mechano-chemical oscillations./
Author:
Cisternas, Jaime Elgueta.
Description:
167 p.
Notes:
Source: Dissertation Abstracts International, Volume: 64-01, Section: B, page: 0238.
Contained By:
Dissertation Abstracts International64-01B.
Subject:
Mathematics. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3078620
ISBN:
0493994971
Modeling and bifurcation analysis of thermo-mechano-chemical oscillations.
Cisternas, Jaime Elgueta.
Modeling and bifurcation analysis of thermo-mechano-chemical oscillations.
- 167 p.
Source: Dissertation Abstracts International, Volume: 64-01, Section: B, page: 0238.
Thesis (Ph.D.)--Princeton University, 2003.
In this thesis we propose a model for the periodic deformations of a thin platinum plate that serves as a catalyst for the oxidation of carbon monoxide. These oscillations have been found recently in experiments related to heterogeneous catalytic oxidation of CO on metals under low pressure.
ISBN: 0493994971Subjects--Topical Terms:
515831
Mathematics.
Modeling and bifurcation analysis of thermo-mechano-chemical oscillations.
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Modeling and bifurcation analysis of thermo-mechano-chemical oscillations.
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167 p.
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Source: Dissertation Abstracts International, Volume: 64-01, Section: B, page: 0238.
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Adviser: Philip J. Holmes.
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Thesis (Ph.D.)--Princeton University, 2003.
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In this thesis we propose a model for the periodic deformations of a thin platinum plate that serves as a catalyst for the oxidation of carbon monoxide. These oscillations have been found recently in experiments related to heterogeneous catalytic oxidation of CO on metals under low pressure.
520
$a
The model consists of three coupled components: reaction-diffusion kinetics for the catalyst surface, heat balance for the bulk of the plate, and quasi-static deformation of the thin elastic plate under thermal stresses.
520
$a
Using dynamical systems theory we study the behavior of the plates with different geometries and under different control parameters.
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This model can be further reduced to one with finitely many degrees of freedom. This approximation is shown to capture the most relevant features observed in the experiments.
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School code: 0181.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3078620
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