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- W2480048107 abstract "The principle effects of silo mixing processes for dry, free-flowing bulk solids can be simulated with a mathematical model. The model is a simulation of a circulating mixing silo. The fundamental idea is to split the silo into a number of parallel individual silos (or cells), each of which is subject to the same flow conditions. Each cell has a distinct volume Vi and residence time ti that correspond to the different residence time characteristic of the process. The residence time distribution of the silo model is therefore the only necessary parameter for modeling the process. This parameter is defined by the geometry of the silo and the existing fixed mountings. In previous works, simulations were conducted using only different ideal residence time distributions (normaldistribution, log-distribution, linear-distribution, bimodal-distribution) as inputs. These theoretical investigations were focused on the outlet concentration of the silo, the standard deviation at the silo outlet and the standard deviation for the entire silo related to the known mixing ratio [1, 2]. The continuations of the theoretical investigations are aimed at simulating changing load conditions, in order to detect the influence on these changes in the blending results. Based on these results, further calculations for the periodical inlet fluctuations (e.g. rectangular or sinusoidal concentration fluctuation) of a component were carried out. The aim is to estimate among which conditions a mixing silo can be used for continuous operation." @default.
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- W2480048107 date "2009-01-01" @default.
- W2480048107 modified "2023-09-23" @default.
- W2480048107 title "The influence of the residence time distribution of a gravity silo mixer to smooth periodical inlet fluctuations" @default.
- W2480048107 hasPublicationYear "2009" @default.
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