Agglomeration processes occur in many different realms of science, such as colloid and aerosol formation or formation of bacterial colonies. We study the influence of primary-particle density in agglomerate structures using diffusion-controlled Monte Carlo simulations with realistic space scales through different regimes (diffusion-limited aggregation and diffusion-limited colloid aggregation). The equivalence of Monte Carlo time steps to real time scales is given by Hirsch's hydrodynamical theory of Brownian motion. Agglomerate behavior at different time stages of the simulations suggests that three indices (the fractal exponent, the coordination number, and the eccentricity index) characterize agglomerate geometry. Using these indices, we...
The ballistic agglomeration of polydisperse particles is investigated by an event-driven (ED) method...
AbstractA population balance model is presented, which tracks particle growth in the gas phase and a...
Particle aggregation with simultaneous surface growth was modeled using a dynamic Monte Carlo method...
Agglomeration processes occur in many different realms of science, such as colloid and aerosol forma...
Agglomeration processes occur in many different realms of science, such as colloid and aerosol forma...
Agglomeration processes occur in many different realms of science, such as colloid and aerosol forma...
Agglomeration occurs in environmental and industrial processes, especially at low temperatures where...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
Aerosol agglomerates are produced by homogeneous nucleation and Brownian coagulation. Coagulation mo...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
Doctor of PhilosophyDepartment of PhysicsAmitabha ChakrabartiThis work is the result of a wide range...
Doctor of PhilosophyDepartment of PhysicsAmitabha ChakrabartiThis work is the result of a wide range...
The ballistic agglomeration of polydisperse particles is investigated by an event-driven (ED) method...
AbstractA population balance model is presented, which tracks particle growth in the gas phase and a...
Particle aggregation with simultaneous surface growth was modeled using a dynamic Monte Carlo method...
Agglomeration processes occur in many different realms of science, such as colloid and aerosol forma...
Agglomeration processes occur in many different realms of science, such as colloid and aerosol forma...
Agglomeration processes occur in many different realms of science, such as colloid and aerosol forma...
Agglomeration occurs in environmental and industrial processes, especially at low temperatures where...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
Aerosol agglomerates are produced by homogeneous nucleation and Brownian coagulation. Coagulation mo...
International audienceDuring the agglomeration of nanoparticles, notably soot, a change in both the ...
Doctor of PhilosophyDepartment of PhysicsAmitabha ChakrabartiThis work is the result of a wide range...
Doctor of PhilosophyDepartment of PhysicsAmitabha ChakrabartiThis work is the result of a wide range...
The ballistic agglomeration of polydisperse particles is investigated by an event-driven (ED) method...
AbstractA population balance model is presented, which tracks particle growth in the gas phase and a...
Particle aggregation with simultaneous surface growth was modeled using a dynamic Monte Carlo method...