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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Mathematical modelling and approximate solutions for microbiological processes in biofilm through homotopy-based methods
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Mathematical modelling and approximate solutions for microbiological processes in biofilm through homotopy-based methods

机译:通过基于同型方法的生物膜微生物过程的数学建模与近似解

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摘要

Approximate analytical solutions were determined for a mathematical model of a microbiological process in flat biofilms. Approximation methods based on a homotopy concept were used, namely: Homotopy Perturbation Method (HPM), Homotopy Analysis Method (HAM) and Optimal Homotopy Analysis Method (OHAM). Monod and Haldane kinetic models were taken into consideration. Some unknown properties of these methods are presented. It was show that third-order approximation by HAM is more accurate than the method by Abbas and Eberl (2011) and Valdes-Parada et al. (2005). Additionally, the former is the same as for second-order HAM approximation. The accuracy of homotopy-based approximations is considerably influenced by external mass transfer resistances, expressed by the Biot number. The methods are especially useful for modelling bioreactors in which biofilm thicknesses are relatively small and coefficients of mass transfer from liquid to biofilm are large. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:确定扁平生物膜中微生物过程的数学模型确定近似分析溶液。基于同型概念的近似方法,即:同型扰动方法(HPM),同型分析方法(HAM)和最优同型分析方法(OHAM)。考虑到MONOD和HALDANE动力学模型。提出了这些方法的一些未知性质。结果表明,火腿的三阶近似比Abbas和Eberl(2011)和Valdes-Parada等人的方法更准确。 (2005)。另外,前者与二阶火腿近似相同。由基于同型近似的近似的精度受到外部传质电阻的显着影响,由Biot数表示。该方法特别适用于建模生物反应器,其中生物膜厚度是相对较小的,并且从液体到生物膜的质量传递系数大。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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