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Abstract

A study on the chaotic dynamics of a high flux circulating fluidized bed (CFB) riser (10-m high and 76-mm i.d.) using the maximum likelihood estimate of the Kolmogorov entropy (KML) is reported. The signals used were measured by using a solids concentration fiber optic probe, accuracy of which is reported based on statistical analysis. The sensitivity analysis of the parameters used for computing KML was conducted to identify optimum settings, based on the standard error, s(KML) and the nature of PDF of the b-values from the reconstructed phase space trajectories. The length of time series, N, sampling frequency, fs, and number of embedding dimensions, Dim, and values. A relationship between KML and b , strongly affect the accuracy of KML b  was established, which was obeyed by experimental data from all operating conditions studied, and for all sampling frequencies. The chaotic dynamics of the CFB was studied by examining the effect of increasing the local solids concentration at different axial elevations and different operating conditions in a high flux riser. It was concluded that the KML method is highly accurate when N > 3,000 data points, for which the effect of Dim is negligible and PDFs of the b-values becomes similar in shape based on σ(b), Sk(b) and Ku(b).

Publisher Name

University of Dar es Salaam

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