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Optimization of Radiator Position in an Internally Radiating Photobioreactor: A Model Simulation Study

机译:内部辐射光生物反应器中散热器位置的优化:模型仿真研究

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This study focused on the optimization of the illumination method for efficient use of light energies in a photobioreactor. In order to investigate the effect of radiator position, a model simulation study was carried out using Synechococcits sp, PCC 6301 and an internally radiating photobioreactor as a model system. The efficiency of light transfer in a photobioreactor was analyzed by estimating the average light intensity in a photobioreactor. The simulation results indicate that there exists an optimal position of internal radiators, and that the optimal position varies with radiator number and cell concentration. When light radiators are placed at the optimal position, the average light intensity is about 30% higher than that obtained by placing radiators at the circumstance or center of a photobioreactor. The method presented in this work may be useful for improving light transfer efficiency in a photobioreactor.
机译:这项研究的重点是为有效利用光生物反应器中的光能优化照明方法。为了研究辐射器位置的影响,使用Synechococcits sp,PCC 6301和内部辐射光生物反应器作为模型系统进行了模型仿真研究。通过估计光生物反应器中的平均光强度来分析光生物反应器中的光传输效率。仿真结果表明,存在内部散热器的最佳位置,并且该最佳位置随散热器数量和电池浓度的变化而变化。当将光辐射器放置在最佳位置时,平均光强度比通过将光辐射器置于光生物反应器的环境或中心所获得的平均光强度高约30%。这项工作中提出的方法可能对提高光生物反应器的光传输效率很有用。

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