首页> 外文期刊>The Canadian Journal of Chemical Engineering >REFLECTION-REFRACTION EFFECTS ON LIGHT DISTRIBUTION INSIDE TUBULAR PHOTOBIOREACTORS
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REFLECTION-REFRACTION EFFECTS ON LIGHT DISTRIBUTION INSIDE TUBULAR PHOTOBIOREACTORS

机译:反射折射对管状光生物反应器内光分布的影响

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One of the main parameters affecting autotrophic algae cultures is photon absorption distribution inside the photobioreactor. This clearly depends on the geometry of both the radiation source and the photobioreactor, as well as on algae suspension optical properties. In this work the local volumetric rate of photon absorption LVRPA in a cross-section of a horizontal-pipe photobioreactor was investigated by means of simplified Monte Carlo simulations. In particular, the fate of a number of photons perpendicularly hitting the photobioreactor circular section was simulated in relation to different values of algae concentration. The model takes into account refraction/reflection phenomena at the air/photobioreactor-wall interface. Simulation results show that radiation distribution inside the photobioreactor is quite strongly affected by reflection/refraction at the air-reactor interface. In particular, dark zones (not revealed when neglecting reflection/refraction phenomena) are observed in conjunction with unexpected radiation intensification in other zones. These phenomena are bound to affect photobioreactor performance and should therefore be considered if effective photobioreactor models are sought.
机译:影响自养藻类培养物的主要参数之一是光生物反应器内的光子吸收分布。这显然取决于辐射源和光生物反应器的几何形状,以及藻类悬浮光学性质。在这项工作中,通过简化的蒙特卡罗模拟研究了水平管光生物反应器的横截面中的光子吸收LVRPA的局部容量速率。特别地,垂直击中光生物反应器圆形部分的多个光子的命运被肝脏浓度的不同值模拟。该模型考虑了空气/光生物反应器壁界面的考虑折射/反射现象。仿真结果表明,光生物反应器内的辐射分布受到空气反应器界面的反射/折射的强烈影响。特别地,在其他区域中的意想不到的辐射强度结合观察到暗区(未透露忽略反射/折射现象时)。这些现象必然会影响光生物反应器性能,因此如果寻求有效的光生物反应器模型,则应考虑。

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