沉降模式引发的对流-扩散-反应和输运-流动问题:一些最新进展

R. Bürger, J. Careaga, S. Diehl, Camilo Mejías, Ricardo Ruiz Baier
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引用次数: 2

摘要

悬浮液的沉淀是一种广泛应用于选矿、化工、废水处理和其他工业应用的单元操作。描述这些过程并可用于模拟、设计和控制的数学模型通常以非线性、时变偏微分方程的形式给出,在一维空间中包括具有不连续系数的强退化对流-扩散-反应方程,在二维或多维空间中包括耦合流输运问题。这些模型包含了应用数学和数值分析中激发原创性研究的非标准特性。这篇文章总结了最近的进展,并提出了三个不同的研究主题的原始数值结果:一种新的方法,通过观察可以在锥内沉积中观察到的弯曲激波轨迹来识别标量守恒定律的通量;连续沉积的新描述,包括生物组分的传递和反应并采用增广混合原始方法对多维沉积-固结系统进行了数值求解,其中包括后验误差估计。(少)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CONVECTION-DIFFUSION-REACTION AND TRANSPORT-FLOW PROBLEMS MOTIVATED BY MODELS OF SEDIMENTATION: SOME RECENT ADVANCES
The sedimentation of a suspension is a unit operation widely used in mineral processing, chemical engineering,wastewater treatment, and other industrial applications. Mathematical models that describe these processes and may be employed for simulation, design and control are usually given as nonlinear, time-dependent partial differential equations that in one space dimension include strongly degenerate convection-diffusion-reaction equations with discontinuous coefficients, and in two or more dimensions, coupled flowtransport problems. These models incorporate non-standardproperties that have motivated original research in applied mathematics and numerical analysis. This contribution summarizes recent advances, and presents original numerical results, for three different topics of research: a novel method of fluxidentification for a scalar conservation law from observation of curved shock trajectories that can be observed in sedimentation in a cone; a new description of continuous sedimentation with reactions including transport and reactions of biological components; and the numerical solution of a multi-dimensional sedimentation-consolidation system by an augmented mixed-primal method, including an a posteriori error estimation. (Less)
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