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Multi-Physics Modeling of Light-Limited Microalgae Growth in Raceway Ponds

机译:滚道池塘有限微藻生长的多物理建模

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This paper presents a multi-physics modeling methodology for the quantitative prediction of microalgae productivity in raceway ponds by combining a semi-mechanistic model of microalgae growth describing photoregulation, photoinhibition and photoacclimation, with models of imperfect mixing based on Lagrangian particle-tracking and heterogeneous light distribution. The photosynthetic processes of photoproduction, photoregulation and photoinhibition are represented by a model of chlorophyll fluorescence developed by Nikolaou et al. (2015), which is extended to encompass photoacclimation. The flow is simulated with the commercial CFD package ANSYS, whereas light attenuation is described by the Beer-Lambert law as a first approximation. Full-scale simulation results are presented on extended time horizons. Comparisons are made in terms of areal productivities under both imperfect and idealized (CSTR) mixing conditions, and for various extraction rates and water depths.
机译:本文通过结合微藻生长的半机械模型,介绍了滚道池塘中微藻生产率的定量预测,描述了光程调节,光煅烧和光谱,采用拉格朗日粒子跟踪和异构光的模型来定量模拟滚道池塘中微藻生产率的定量预测分配。光化的光化学过程,光探测和光抑制的光合作用由Nikolaou等人产生的叶绿素荧光模型表示。 (2015),扩展到包含光摄入。用商业CFD封装ANSYS模拟流动,而啤酒兰伯特法描述了光衰减作为第一近似。满量程仿真结果在延长时间范围内提出。在不完美和理想化(CSTR)混合条件下的面积生产率和各种提取速率和水深的比较。

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