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CFD analysis on hydrodynamic conditions of a designed spiral column photobioreactor for cultivation of microalgae

机译:设计的螺旋柱光生物反应器用于微藻培养的流体动力学条件的CFD分析

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Purpose - The purpose of this study is analysis on fluid flow characteristics inside a modified designed spiral bubble column photo-bioreactor. Available fluid dynamic simulation of bubble column reactor (BCR) (which is well-known conventional photobioreactor) had shown significance contribution over the past two decades, where the fluid dynamics of the culture medium and mixing will influence the average irradiance and the light regimen to which the cells are exposed. This enhances the growth. To develop this, and also to cut down the cost parameter involving the production of biodiesel from algae, the growth rate of algae has to be enhanced. Design/methodology/approach - Some design modification through a staggered spiral-path inside the bubble column design had been proposed and comparative simulation of the modified design has been reported. Three-dimensional simulations of gas-liquid flow both in the BCR and spiral path column reactor have been carried out using the Euler-Euler approach. Various graphs are plotted, and from comparing, it has been seen that the proposed reactor will enhance better mixing rate, which could help the growth rate in microalgae in the present proposed model. In this paper, an earnest attempt had made to carry out computational simulation of conventional BCR and designed reactor used for cultivation of microalgae which had analyzed using commercial code ANSYS 14. Findings - From this work, it was observed that the average turbulence kinetic energy fluctuates more in designed reactor over the conventional photo bioreactor, which will in turn increase diffusivity and enhance transfer of mass, momentum and energy. The results provide comprehensive information concerning effect of fluid flow characteristics inside a modified designed spiral bubble-column photo-bioreactor. Originality/value - Some of our earlier published results (www.scientific.net/AMM.592-594.2427) are also referred in this paper. This work had been performed under the financial aid from RPS project (no. 8, 023/RID/RPS/27/11/12), sponsored by All India Council for Technical Education.
机译:目的-这项研究的目的是分析改进型设计的螺旋气泡塔光生物反应器内部的流体流动特性。在过去的二十年中,气泡柱反应器(BCR)(众所周知的常规光生物反应器)的可用流体动力学模拟显示了重要的贡献,其中培养基和混合液的流体动力学将影响平均辐照度和光照方式。哪些细胞被暴露。这促进了增长。为了发展这一点,并且还降低涉及由藻类生产生物柴油的成本参数,必须提高藻类的生长速率。设计/方法/方法-已提出了通过气泡塔设计内部交错螺旋路径进行一些设计修改的方法,并且已报告了该修改设计的比较模拟。使用Euler-Euler方法对BCR和螺旋路径塔式反应器中的气液流动进行了三维模拟。绘制了各种曲线图,并且通过比较,已经发现,所提出的反应器将提高更好的混合速率,这可以在所提出的模型中帮助微藻的生长速率。在本文中,我们进行了认真的尝试,对常规BCR进行了计算仿真,并设计了用于微藻培养的反应器,并使用商业代码ANSYS 14进行了分析。结果-从这项工作中,我们发现平均湍流动能会发生波动。与传统的光生物反应器相比,该反应器在设计上有更多的优势,这反过来将增加扩散性并增强质量,动量和能量的传递。结果提供了有关改进设计的螺旋气泡柱光生物反应器内流体流动特性影响的综合信息。原创性/价值-本文中还引用了我们一些较早发表的结果(www.scientific.net/AMM.592-594.2427)。这项工作是在全印度技术教育理事会赞助的RPS项目(第8号,023 / RID / RPS / 27/11/12)的资助下完成的。

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