首页> 外文期刊>Chemical Engineering Science >A SIMPLIFIED MONODIMENSIONAL APPROACH FOR MODELING COUPLING BETWEEN RADIANT LIGHT TRANSFER AND GROWTH KINETICS IN PHOTOBIOREACTORS
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A SIMPLIFIED MONODIMENSIONAL APPROACH FOR MODELING COUPLING BETWEEN RADIANT LIGHT TRANSFER AND GROWTH KINETICS IN PHOTOBIOREACTORS

机译:光生物反应器中辐射光传输与生长动力学耦合的简化单维方法

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Local information is essential to photobioreactor modeling because of medium anisotropy in radiant light energy. Local available energy can be calculated using complex equations, applying the physical laws of radiative transfer and independently accounting for light absorption and scattering in the reactor. In this paper, these equations are simplified postulating monodimensional approximation for the radiation field. This simplification is established for rectangular, cylindrical and spherical coordinates, leading to simple analytical solutions for available radiant energy profiles inside the reactor. This approach provides a method of determining working illuminated volume defined as the photobioreactor volume with sufficient radiant light energy for microorganism growth. This enables the coupling between radiant light transfer and growth kinetics to be easily studied. Physical light transfer models are used to simulate volumetric biomass growth rates in a cylindrical photobioreactor with kinetic parameters obtained from batch cultures of the cyanobacterium Spirulina platensis in rectangular photoreactors. These calculations are compared with experimental data obtained on continuous cultures in a wide range of incident radiant energy fluxes. The model is found to have a good predictability and robustness. [References: 25]
机译:本地信息对于光生物反应器建模至关重要,因为辐射光能具有中等各向异性。可以使用复杂的方程式,应用辐射传递的物理定律并独立考虑反应堆中的光吸收和散射来计算局部可用能量。在本文中,简化了这些方程,并假设了辐射场的一维近似。这种简化是针对直角坐标,圆柱坐标和球坐标进行的,从而为反应堆内部可用的辐射能分布图提供了简单的分析解决方案。该方法提供了一种确定工作照明体积的方法,该工作照明体积定义为具有足够微生物生长所需的辐射光能的光生物反应器体积。这使得可以轻松研究辐射光传输与生长动力学之间的耦合。物理光传输模型用于模拟圆柱形光生物反应器中生物量的增长速度,该动力学参数是从矩形光反应器中蓝藻螺旋藻的分批培养物中获得的动力学参数。将这些计算结果与在大量入射辐射能通量下连续培养获得的实验数据进行比较。发现该模型具有良好的可预测性和鲁棒性。 [参考:25]

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