板式气罐生物废水处理过程的计算机模拟

M. Biliaiev, M. Lemesh, V. V. Biliaeva, P. Mashykhina, Z. Yakubovska
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引用次数: 0

摘要

目的。在进行生物废水处理的生物反应器设计或改造阶段,曝气池效率的确定需要使用专门的数学模型和计算方法。本文的主要目的是建立用于评价曝气池运行效率的CFD模型。方法。建立了考虑流体力学的气液罐生物废水处理过程的计算机计算模型。该模型基于基质和活性污泥的两级质量守恒方程和速度势方程。基于Monod模型计算了底物的生物转化过程。对于活性污泥与基质传质方程的数值积分,采用交替三角差分分裂格式。在这种情况下,基本方程被分成两个更简化形式的方程。对于速度势方程的数值积分,将其分解为两个一维方程。进一步,根据显式格式求解各方程。对于基于莫诺模型的描述衬底变换过程的方程的数值积分,采用欧拉法。发现。对所构建的数值模型进行了软件实现。本文介绍了板式曝气池污水处理过程的计算实验研究结果。由此得出的结论是,在板的帮助下,曝气池废水处理的质量控制是可能的。创意。建立了多变量CFD模型,为快速评估曝气池的效率提供了可能。该模型的一个特点是能够评估曝气池的操作,考虑到它的几何形状和附加板在建筑中的位置。实用价值。所建立的数值模型可用于设计曝气池的计算或确定新工况下的废水处理效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPUTER SIMULATION OF BIOLOGICAL WASTEWATER TREATMENT PROCESSES IN AEROTANKS WITH PLATES
Purpose. Efficiency determination of the aeration tank at the stage of design or reconstruction of bioreactors in which biological wastewater treatment is carried out requires the use of special mathematical models and calculation methods. The main purpose of the article is to develop CFD models for evaluating the operation efficiency of aeration tanks. Methodology. A numerical model has been developed for the computer calculation of the biological wastewater treatment process in aerotanks, taking into account hydrodynamics. The model is based on two-level mass conservation equations for the substrate and activated sludge and the velocity potential equation. The process of biological transformation of the substrate is calculated based on the Monod model. For the numerical integration of the mass transfer equations of activated sludge and substrate, the alternating-triangular difference splitting scheme is used. In this case, the basic equations are divided into two equations of a more simplified form. For the numerical integration of the equations for the velocity potential, it is split into two one-dimensional equations. Further, each equation is solved according to explicit scheme. For the numerical integration of equations that describe the process of substrate transformation based on the Monod model, the Euler method is used. Findings. The software implementation of the constructed numerical model has been carried out. The results of a computational experiment on the study of the wastewater treatment process in an aeration tank with plates are presented. This leads to the conclusion that the quality control of wastewater treatment in aeration tanks is possible with the help of plates. Originality. A multivariate CFD model has been developed, which makes it possible to quickly assess the efficiency of the aeration tank. A feature of the model is the ability to evaluate the operation of the aeration tank, taking into account its geometric shape and location of additional plates in the construction. Practical value. The constructed numerical model can be used during calculations in the case of designing aeration tanks, or in determining the efficiency of wastewater treatment under new operating conditions.
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