In this thesis, a new algorithm for the numerical solution of population balance systems is proposed and applied within two simulation projects. The regarded systems stem from chemical engineering. In particular, crystallization processes in fluid environment are regarded. The descriptive population balance equations are extensions of the classical Smoluchowski coagulation equation, of which they inherit the numerical difficulties introduced with the coagulation integral, especially in regard of higher dimensional particle models. The new algorithm brings together two different fields of numerical mathematics and scientific computing, namely a stochastic particle simulation based on a Markov process Monte—Carlo method, and (deterministic) ...
A new method for uncertainty quantification (UQ) that combines adaptivity in the physical (determini...
Abstract iii Contents ...
A direct discretization approach and an operator-splitting scheme are applied for the numerical simu...
A coupled solver for population balance systems is presented, where the flow, temperature, and conce...
A coupled solver for population balance systems is presented, where the flow, temperature, and conce...
A coupled solver for population balance systems is presented, where the flow, temperature, and conce...
Die Arbeit liefert ein Beitrag zur Numerik von Populationsbilanzsystemen am Beispiel einer tropfenbe...
Complex fluid systems are commonly described by coupled equation systems. In this thesis, we discuss...
A class of stochastic algorithms for the numerical treatment of population balance equations is intr...
A class of stochastic algorithms for the numerical treatment of population balance equations is intr...
Die hier vorliegende Arbeit beschäftigt sich mit der Modellierung und numerischen Simulation von Tro...
Fluidized beds, granulation, heat and mass transfer, calcium dynamics, stochastic process, finite el...
Precipitation processes are modeled by population balance systems. A very expensive part of the simu...
Population balance systems are models for processes in nature and industry which lead to a coupled s...
University of Minnesota Ph.D. dissertation. December 2013. Major: Aerospace Engineering and Mechanic...
A new method for uncertainty quantification (UQ) that combines adaptivity in the physical (determini...
Abstract iii Contents ...
A direct discretization approach and an operator-splitting scheme are applied for the numerical simu...
A coupled solver for population balance systems is presented, where the flow, temperature, and conce...
A coupled solver for population balance systems is presented, where the flow, temperature, and conce...
A coupled solver for population balance systems is presented, where the flow, temperature, and conce...
Die Arbeit liefert ein Beitrag zur Numerik von Populationsbilanzsystemen am Beispiel einer tropfenbe...
Complex fluid systems are commonly described by coupled equation systems. In this thesis, we discuss...
A class of stochastic algorithms for the numerical treatment of population balance equations is intr...
A class of stochastic algorithms for the numerical treatment of population balance equations is intr...
Die hier vorliegende Arbeit beschäftigt sich mit der Modellierung und numerischen Simulation von Tro...
Fluidized beds, granulation, heat and mass transfer, calcium dynamics, stochastic process, finite el...
Precipitation processes are modeled by population balance systems. A very expensive part of the simu...
Population balance systems are models for processes in nature and industry which lead to a coupled s...
University of Minnesota Ph.D. dissertation. December 2013. Major: Aerospace Engineering and Mechanic...
A new method for uncertainty quantification (UQ) that combines adaptivity in the physical (determini...
Abstract iii Contents ...
A direct discretization approach and an operator-splitting scheme are applied for the numerical simu...