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Flow Analysis of the Symmetric Airfoil NACA0015 Blade at Different Angles of Attack and Mixing Velocities in a Continuous Stirred Tank Reactor(CSTR)

机译:不同搅拌釜反应器中不同角度的对称翼型Naca0015叶片的对称翼型Naca0015叶片的流程分析(Cstr)

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Biogas produces from the degradation of organic compounds of garbage and water wastes from various sources such as ranch and agricultural industries,usually by the fermentation process with anaerobic microorganisms.Layers of sediment are often occurred that can block the flow and longer mixing time is required for a more homogenous mixing.The objective of this study is to solve the non-uniform and non-homogenous as well as to save the mixing time in the fermentation process of biogas production using a model-mixing reactor.Flow analysis using an image processing technique of the symmetric airfoil NACA0015 blade at different angles of attack and mixing velocities in a Continuous Stirred Tank Reactor(CSTR)was examined.The CSTR was equipped with two and three airfoil blades at the angles of attack 0,10,16(stall angle)and 20° operated at the mixing velocities at 80,110,140 and 190 rpm.The mixing efficiency was evaluated from the homogenous appearance of plastic particles(5 mm diameter)dispersed in water by an image processing technique.The results showed that the mixing efficiencies of CSTR with three blades were higher than that of the CSTR with two blades of about 1.3 folds.The mixing efficiency increased with increasing mixing velocities and angles of attack,and was almost constant when the blade angles of attack increased from 16° to 20° and the mixing velocity increased from 140 to 190 rpm.This may be due to the airfoil blade stall and the saturation of the mixing.A new blade design for the CSTR system from this study can give a more efficient stir and mixing flow which will not only be beneficial for biogas production in the laboratory scale,but also a model design for the industrial biogas production as well.
机译:沼气从各种来源如牧场和农业垃圾和水废物的有机化合物的降解产生,通常是由与沉积物的厌氧microorganisms.Layers发酵过程经常发生的可阻断流和更长的混合时间需要更均匀mixing.The目标本研究的是解决非均匀和非均匀的,以及使用利用图像处理技术的模型混合reactor.Flow分析保存在沼气生产的发酵过程中的混合时间在攻击的不同角度对称翼型NACA0015叶片和混合速度在连续搅拌釜反应器(CSTR)的是examined.The CSTR在攻击0,10,16(失速角)的角度配有两个和三个翼型叶片和20℃在混合速度操作在80110140和190 rpm.The混合效率从塑料颗粒的均匀外观(直径5mm)DISP评价由图像处理technique.The结果表明,CSTR的与三个叶片的混合效率均低于约1.3 folds.The混合效率随着混合速度和攻角增加2枚叶片的CSTR的更高,且在水ersed几乎恒定时攻击的叶片角从16°增加到20°,并且所述混合速度为140〜190 rpm.This由于翼型叶片失速和mixing.A新的叶片设计的用于CSTR饱和增加可以是从这项研究系统可以提供一个更有效的搅拌和混合流动,这将不仅是生产沼气的实验室规模是有利的,同时也为工业沼气生产以及模型设计。

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