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Cellular automata-based modelling and simulation of biofilm structure on multi-core computers

机译:基于细胞自动机的多核计算机上生物膜结构的建模和仿真

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The article presents a mathematical model of biofilm growth for aerobic biodegradation of a toxic carbonaceous substrate. Modelling of biofilm growth has fundamental significance in numerous processes of biotechnology and mathematical modelling of bioreactors. The process following double-substrate kinetics with substrate inhibition proceeding in a biofilm has not been modelled so far by means of cellular automata. Each process in the model proposed, i.e. diffusion of substrates, uptake of substrates, growth and decay of microorganisms and biofilm detachment, is simulated in a discrete manner. It was shown that for flat biofilm of constant thickness, the results of the presented model agree with those of a continuous model. The primary outcome of the study was to propose a mathematical model of biofilm growth; however a considerable amount of focus was also placed on the development of efficient algorithms for its solution. Two parallel algorithms were created, differing in the way computations are distributed. Computer programs were created using OpenMP Application Programming Interface for C++ programming language. Simulations of biofilm growth were performed on three high-performance computers. Speed-up coefficients of computer programs were compared. Both algorithms enabled a significant reduction of computation time. It is important, inter alia, in modelling and simulation of bioreactor dynamics.
机译:这篇文章提出了有毒碳质底物的需氧生物降解的生物膜生长的数学模型。在生物技术的众多过程和生物反应器的数学建模中,生物膜生长的建模具有根本的意义。迄今为止,尚未通过细胞自动机对在生物膜中进行双底物动力学和底物抑制的过程进行建模。所提出的模型中的每个过程,即底物的扩散,底物的吸收,微生物的生长和衰减以及生物膜的分离,都是以离散方式进行模拟的。结果表明,对于恒定厚度的平坦生物膜,该模型的结果与连续模型的结果一致。该研究的主要结果是提出生物膜生长的数学模型。然而,相当多的重点也放在解决方案的高效算法开发上。创建了两个并行算法,它们的计算方式不同。使用C ++编程语言的OpenMP应用程序编程接口创建了计算机程序。在三台高性能计算机上进行了生物膜生长的模拟。比较了计算机程序的加速系数。两种算法都可以大大减少计算时间。这尤其对生物反应器动力学的建模和仿真非常重要。

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