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Comparison of two microalgae rectangular airlift photobioreactors using computational fluid dynamics (CFD)

机译:使用计算流体动力学(CFD)两种微藻矩形空运光生物反应器的比较

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Microalgae produce biomass used as one of the renewable energy sources. The utilization of photobioreactor is meant to control some parameters affecting microalgae growth and reduce the possibility of contamination. The optimal photobioreactor is required to obtain the best microalgae growth. This research is proposed by comparing two different photobioreactors (non-baffle and horizontal baffle) to get insights on the optimal configuration so that the mixing and good microalgae growth can be achieved. ANSYS Fluent is used to solve the CFD model. User-defined functions were used to integrate the microalgae kinetic equations into three-dimensional photobioreactor. Microalgae growth simulation results are obtained dependently over space and time within photobioreactor for several days. The simulation results showed that the microalgae growth in photobioreactor with horizontal baffle was better than the non-baffle photobioreactor.
机译:微藻生产生物质用作可再生能源之一。 光生物反应器的利用是指影响影响微藻生长的一些参数,降低污染的可能性。 需要最佳的光生物反应器以获得最佳的微藻生长。 通过比较两种不同的光生物反应器(非挡板和水平挡板)来获得最佳配置的见解,提出了该研究,从而可以实现混合和良好的微藻生长。 ANSYS流利用于解决CFD模型。 使用用户定义的功能用于将微血糖动力学方程集成为三维光生物反应器。 微藻生长模拟结果在光生物反应器内的空间和时间上依赖地获得了几天。 模拟结果表明,具有水平挡板的光生物反应器中的微藻生长优于非挡板光生物反应器。

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