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Validated numerical fluid simulation of a thin‐layer cascade photobioreactor in OpenFOAM

机译:在OpenFOAM中验证的薄层级联光生物反应器的数值流体模拟

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摘要

Recently, microalgae have been considered as a promising alternative for the production of biofuels from CO . For the efficient cultivation of these microalgae, several types of photobioreactors have been designed and Pilot scale photobioreactors have been used to assess the performance of these reactors. Therein the primarily investigated reactor type is the Raceway Pond. However, the less researched Thin‐Layer Cascade Photobioreactor (TLC) shows a high potential for efficient production processes. Unfortunately, for low‐value products like biofuels costs must be kept to a minimum for an economic operation. To facilitate this, 3D Computational Fluid Dynamic simulations can be employed to estimate performance of reactor variants e.g. with respect to power input and mixing. Since up to now little effort has been put into the modelling of TLC reactors, this report aims to present a simulation approach for these reactors types that allows simple adaptation to different geometric or operational boundary conditions. All models have been generated for a two‐phase mixture in OpenFOAM. To demonstrate its applicability, validation measurements with a physical unit have been performed and were compared to the simulation results. With errors in the order of 10 % a successful simulation of the reactor geometry could be proven.
机译:最近,微藻已被认为是从CO生产生物燃料的有前途的替代品。为了有效培养这些微藻,已经设计了几种类型的光生物反应器,并且已经将中试规模的光生物反应器用于评估这些反应器的性能。其中主要研究的反应堆类型是滚道池。但是,研究较少的薄层级联生物反应器(TLC)显示出高效生产工艺的巨大潜力。不幸的是,对于低价值产品(如生物燃料),必须将其成本保持在最低水平,以实现经济运营。为了促进这一点,可以采用3D计算流体动力学模拟来估算反应堆变体的性能,例如:关于功率输入和混合。由于迄今为止对TLC反应堆的建模工作很少,因此本报告旨在针对这些反应堆类型提供一种仿真方法,该方法可轻松适应不同的几何或运行边界条件。在OpenFOAM中已为两相混合物生成了所有模型。为了证明其适用性,已执行了以物理单位进行的验证测量,并将其与模拟结果进行了比较。误差在10%左右,可以成功地模拟反应堆的几何形状。

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