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MULTI-SCALE MODELING OF THE DYNAMICS OF A FIBROUS REACTOR: USE OF AN ANALYTICAL SOLUTION AT THE MICRO-SCALE TO AVOID THE SPATIAL DISCRETIZATION OF THE INTRA-FIBER SPACE

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dc.contributor.author Dobri, Adam
dc.contributor.author Papathanasiou, Thanasis D.
dc.date.accessioned 2021-07-07T05:25:50Z
dc.date.available 2021-07-07T05:25:50Z
dc.date.issued 2019-12
dc.identifier.citation Dobri, A., & Papathanasiou, T. D. (2019). Multi-Scale Modeling of the Dynamics of a Fibrous Reactor: Use of an Analytical Solution at the Micro-Scale to Avoid the Spatial Discretization of the Intra-Fiber Space. Fluids, 5(1), 3. https://doi.org/10.3390/fluids5010003 en_US
dc.identifier.issn 2311-5521
dc.identifier.uri http://nur.nu.edu.kz/handle/123456789/5528
dc.description.abstract Direct modeling of time-dependent transport and reactions in realistic heterogeneous systems, in a manner that considers the evolution of the quantities of interest in both, the macro-scale (suspending fluid) and the micro-scale (suspended particles), is currently well beyond the capabilities of modern supercomputing. This is understandable, since even a simple system such as this can easily contain over 107 particles, whose length and time scales differ from those of the macro-scale by several orders of magnitude. While much can be gained by applying direct numerical solution to representative model systems, the direct approach is impractical when the performance of large, realistic systems is to be modeled. In this study we derive and analyze a “hybrid” model that is suitable for fibrous reactors. The model considers convection/diffusion in the bulk liquid, as well as intra-fiber diffusion and reaction. The essence of our approach is that diffusion and (first-order) reaction in the intra-fiber space are handled semi-analytically, based on well-established theory. As a result, the problem of intra-fiber transport and reaction is reduced to an easily solvable set of n0 ODEs, where n0 is the number of terms in the Bessel expansion evaluated without recourse to approximation; this set is coupled, point-wise, with a numerical model of the macro-scale. When the latter is discretized using N nodes, the total “hybrid” model for the system consists of a system of N(2+n0) ODEs, which is easily solvable on a modest workstation. Parametric analyses are presented and discussed. en_US
dc.language.iso en en_US
dc.publisher Fluids en_US
dc.rights Attribution-NonCommercial-ShareAlike 3.0 United States *
dc.rights.uri http://creativecommons.org/licenses/by-nc-sa/3.0/us/ *
dc.subject Type of access: Open Access en_US
dc.subject fibrous reactors en_US
dc.subject multi-scale analysis en_US
dc.title MULTI-SCALE MODELING OF THE DYNAMICS OF A FIBROUS REACTOR: USE OF AN ANALYTICAL SOLUTION AT THE MICRO-SCALE TO AVOID THE SPATIAL DISCRETIZATION OF THE INTRA-FIBER SPACE en_US
dc.type Article en_US
workflow.import.source science


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