首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Decrease in light/dark cycle of microalgal cells with computational fluid dynamics simulation to improve microalgal growth in a raceway pond
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Decrease in light/dark cycle of microalgal cells with computational fluid dynamics simulation to improve microalgal growth in a raceway pond

机译:通过计算流体动力学模拟减少微藻细胞的明/暗循环,以改善跑道池中微藻的生长

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摘要

In this study, computational fluid dynamics (CFD) was used to systemically analyze the movement of algae in a vortex flow field produced by up-down chute baffles. The average cell light/dark (L/D) cycle period, vertical fluid velocity, fraction of time the algae was resides in light zone and the L/D cycle period were investigated under different paddlewheel speeds and microalgal concentrations. Results showed that the L/D cycle period decreased but the vertical fluid velocity increased when the up-down chute baffles were used. The L/D cycle period decreased by 24% (from 5.1 s to 3.9 s), and vertical fluid velocity increased by 75% when up-down chute baffles were used with paddlewheel speed of 30 r/min. The probability of L/D cycle period of 3 s increased by 52% from 0.29 to 0.44 with the up-down chute baffles. This led to approximately 22% increase in biomass yield without changing the paddlewheel speed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,使用计算流体力学(CFD)来系统分析藻类在由上下滑槽挡板产生的涡流场中的运动。在不同的叶轮速度和微藻浓度下,研究了平均细胞光/暗(L / D)周期,垂直流体速度,藻类停留在亮区的时间和L / D周期。结果表明,使用上下溜槽挡板时,L / D循环周期缩短,但垂直流体速度增加。当使用桨叶速度为30 r / min的上下滑道挡板时,L / D周期减少了24%(从5.1 s到3.9 s),垂直流体速度增加了75%。上下溜槽挡板使L / D周期3 s的概率从0.29增加到0.44,增加了52%。这导致生物质产量提高了约22%,而桨轮速度却没有改变。 (C)2016 Elsevier Ltd.保留所有权利。

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