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一种结合流体流动和基于剪切应力的脱落的生物膜生长二维连续体模型。

A two-dimensional continuum model of biofilm growth incorporating fluid flow and shear stress based detachment.

作者信息

Duddu Ravindra, Chopp David L, Moran Brian

机构信息

Department of Civil and Environmental Engineering, Northwestern University, 2145 Sheridan Rd, Evanston, Illinois 60208, USA.

出版信息

Biotechnol Bioeng. 2009 May 1;103(1):92-104. doi: 10.1002/bit.22233.

Abstract

We present a two-dimensional biofilm growth model in a continuum framework using an Eulerian description. A computational technique based on the eXtended Finite Element Method (XFEM) and the level set method is used to simulate the growth of the biofilm. The model considers fluid flow around the biofilm surface, the advection-diffusion and reaction of substrate, variable biomass volume fraction and erosion due to the interfacial shear stress at the biofilm-fluid interface. The key assumptions of the model and the governing equations of transport, biofilm kinetics and biofilm mechanics are presented. Our 2D biofilm growth results are in good agreement with those obtained by Picioreanu et al. (Biotechnol Bioeng 69(5):504-515, 2000). Detachment due to erosion is modeled using two continuous speed functions based on: (a) interfacial shear stress and (b) biofilm height. A relation between the two detachment models in the case of a 1D biofilm is established and simulated biofilm results with detachment in 2D are presented. The stress in the biofilm due to fluid flow is evaluated and higher stresses are observed close to the substratum where the biofilm is attached.

摘要

我们提出了一种在连续介质框架下使用欧拉描述的二维生物膜生长模型。采用基于扩展有限元法(XFEM)和水平集方法的计算技术来模拟生物膜的生长。该模型考虑了生物膜表面周围的流体流动、底物的平流扩散和反应、可变的生物量体积分数以及生物膜 - 流体界面处界面剪切应力引起的侵蚀。给出了该模型的关键假设以及传输、生物膜动力学和生物膜力学的控制方程。我们的二维生物膜生长结果与Picioreanu等人(《生物技术与生物工程》69(5):504 - 515, 2000)获得的结果吻合良好。基于以下两个连续速度函数对侵蚀导致的脱落进行建模:(a)界面剪切应力和(b)生物膜高度。建立了一维生物膜情况下两个脱落模型之间的关系,并给出了二维情况下带有脱落的模拟生物膜结果。评估了流体流动在生物膜中产生的应力,并且在生物膜附着的基底附近观察到了更高的应力。

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