Binary particle coagulation can be modelled as the repeated random process of the combination of two particles to form a third. The kinetics may be represented by population rate equations based on a mean field assumption, according to which the rate of aggregation is taken to be proportional to the product of the mean populations of the two participants, but this can be a poor approximation when the mean populations are small. However, using the Poisson representation, it is possible to derive a set of rate equations that go beyond mean field theory, describing pseudo-populations that are continuous, noisy, and complex, but where averaging over the noise and initial conditions gives the mean of the physical population. Such an approach is ...
A class of stochastic algorithms for the numerical treatment of population balance equations is intr...
Coagulation is interpreted as a second-order process caused by efficient collisions either between f...
A spatially resolved stochastic weighted particle method for inception--coagulation--advection probl...
This paper studies stochastic particle approximations for Smoluchowski's coagulation equation. A new...
A new class of efficient stochastic algorithms for the numerical treatment of coagulation processes ...
A theory of stationary particle size distributions in coagulating systems with particle injection at...
A Monte Carlo simulation technique is described for the study of the coagulation of suspended partic...
The process of Brownian coagulation, whereby particles are brought together by thermal motion and gr...
A method for the Monte Carlo simulation, by digital computer, of the evolution of a colliding and co...
AbstractWe study the large time asymptotics of a simplified two species model for particles (typical...
The stochastic completeness of the kinetic coagulation equation depends on the extent of correlation...
The dynamics of a finite system of coalescing particles in a finite volume is considered. It is show...
We summarise the properties and the fundamental mathematical resultsassociated with basic models whi...
This paper studies stochastic particle approximations for Smoluchowski’s coagulation equation. A new...
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...
Coagulation is interpreted as a second-order process caused by efficient collisions either between f...
A spatially resolved stochastic weighted particle method for inception--coagulation--advection probl...
This paper studies stochastic particle approximations for Smoluchowski's coagulation equation. A new...
A new class of efficient stochastic algorithms for the numerical treatment of coagulation processes ...
A theory of stationary particle size distributions in coagulating systems with particle injection at...
A Monte Carlo simulation technique is described for the study of the coagulation of suspended partic...
The process of Brownian coagulation, whereby particles are brought together by thermal motion and gr...
A method for the Monte Carlo simulation, by digital computer, of the evolution of a colliding and co...
AbstractWe study the large time asymptotics of a simplified two species model for particles (typical...
The stochastic completeness of the kinetic coagulation equation depends on the extent of correlation...
The dynamics of a finite system of coalescing particles in a finite volume is considered. It is show...
We summarise the properties and the fundamental mathematical resultsassociated with basic models whi...
This paper studies stochastic particle approximations for Smoluchowski’s coagulation equation. A new...
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...
Coagulation is interpreted as a second-order process caused by efficient collisions either between f...
A spatially resolved stochastic weighted particle method for inception--coagulation--advection probl...