Neumann problems for quasi-linear parabolic systems modeling polydisperse suspensions

被引:8
作者
Berres, Stefan
Buerger, Raimund
Frid, Hermano
机构
[1] Univ Stuttgart, Inst Angew Anal & Numer Simulat, D-70569 Stuttgart, Germany
[2] Univ Concepcion, Fac Ciencias Fis & Matemat, Dept Ingn Matemat, Concepcion, Chile
[3] Inst Matematica Pura & Aplicada, BR-22460320 Rio De Janeiro, Brazil
关键词
quasi-linear parabolic system; boundary value problem; polydisperse suspensions;
D O I
10.1137/050635195
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
We discuss the well-posedness of a class of Neumann problems for n x n quasi-linear parabolic systems arising from models of sedimentation of polydisperse suspensions in engineering applications. This class of initial-boundary value problems includes the standard (zero-flux) Neumann condition in the limit as a positive perturbation parameter theta goes to 0. We call, in general, the problem associated with theta >= 0 the theta-flux Neumann problem. The Neumann boundary conditions, although natural and usually convenient for integration by parts, are nonlinear and couple the different components of the system. An important aspect of our analysis is a time stepping procedure that considers linear boundary conditions for each time step in order to circumvent the difficulties arising from the nonlinear coupling in the original boundary conditions. We prove the well-posedness of the flux Neumann problems for theta > 0 and obtain a solution of the standard (zero-flux) Neumann problem as the limit for theta --> 0 of solutions of the theta-flux Neumann problems. Concerning applications, the analysis developed here supports a new model for the settling of polydisperse suspensions forming compressible sediments.
引用
收藏
页码:557 / 573
页数:17
相关论文
共 22 条
[1]   DYNAMIC THEORY OF QUASILINEAR PARABOLIC-SYSTEMS .3. GLOBAL EXISTENCE [J].
AMANN, H .
MATHEMATISCHE ZEITSCHRIFT, 1989, 202 (02) :219-250
[2]   Strongly degenerate parabolic-hyperbolic systems modeling polydisperse sedimentation with compression [J].
Berres, S ;
Bürger, R ;
Karlsen, KH ;
Tory, EM .
SIAM JOURNAL ON APPLIED MATHEMATICS, 2003, 64 (01) :41-80
[3]   On gravity and centrifugal settling of polydisperse suspensions forming compressible sediments [J].
Berres, S ;
Bürger, R .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2003, 40 (19) :4965-4987
[4]  
Bürger R, 2002, Z ANGEW MATH MECH, V82, P699, DOI 10.1002/1521-4001(200210)82:10<699::AID-ZAMM699>3.0.CO
[5]  
2-#
[6]   Central difference solutions of the kinematic model of settling of polydisperse suspensions and three-dimensional particle-scale simulations [J].
Bürger, R ;
Fjelde, KK ;
Höfler, K ;
Karlsen, KH .
JOURNAL OF ENGINEERING MATHEMATICS, 2001, 41 (2-3) :167-187
[7]   POSITIVELY INVARIANT REGIONS FOR SYSTEMS OF NONLINEAR DIFFUSION EQUATIONS [J].
CHUEH, KN ;
CONLEY, CC ;
SMOLLER, JA .
INDIANA UNIVERSITY MATHEMATICS JOURNAL, 1977, 26 (02) :373-392
[8]   Hydrodynamic diffusion of suspended particles: A symposium [J].
Davis, RH .
JOURNAL OF FLUID MECHANICS, 1996, 310 :325-335
[9]   COUPLED BURGERS EQUATIONS - A MODEL OF POLYDISPERSIVE SEDIMENTATION [J].
ESIPOV, SE .
PHYSICAL REVIEW E, 1995, 52 (04) :3711-3718
[10]   Initial boundary value problems for a quasi-linear parabolic system in three-phase capillary flow in porous media [J].
Frid, H ;
Shelukhin, V .
SIAM JOURNAL ON MATHEMATICAL ANALYSIS, 2005, 36 (05) :1407-1425