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Power consumption,mixing time,heat and mass transfer measurements for liquid vessels that are mixed using reciprocating multiplates agitators

机译:使用往复式倍增搅拌器混合的液体血管的功耗,混合时间,热量和传质测量

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This work is an extension of previous studies [S.Masiuk,Power consumption measurement in a liquid vessel that is mixed using vibratory agitator,Chem.Eng.J.75 (1999) 161-165;S.Masiuk,Mixing time for a reciprocating perforated plate agitator,Inz.Chem.Proc.20 (1999) 601-612;S.Masiuk,Dissolution of solid body in a tubular reactor with reciprocating plate agitator,Chem.Eng.J.83 (2001) 139-144;S.Masiuk,Heat transfer measurement in a liquid vessel that is mixed using vibratory agitator,Chem.Eng.J.61 (1996) 107-112] carried out on the reciprocating agitator,in which additional information describing the experimental apparatus and measurements procedure may be found,as well as,dimensionless correlations predicted for agitator with a single plate.The experimental investigation are provided for the explanation of the influence on the power consumption,mixing time,mass and heat transfer of the multiplates low-frequency and high amplitude reciprocating agitators.The maximum power consumption is calculated by multiplying the maximum force acting on the shaft and maximum velocity of the agitator.A thermal-response technique is used for mixing time measurements.The mass transfer coefficient is calculated from a mass balance between a dissolution solid body and its surrounding mixing dilute solution.The heat transfer coefficient from the heating jacket wall to the continuous flow of the mixed liquids is measured by the stabilized heat flow method.The analytical dimensionless equations predicted in the present paper generalize the experimental data without the break through the all regions of flow in a relatively simple and uniform manner.
机译:这项工作是先前研究的延伸[S.MASIUK,液体容器中的功耗测量,用于使用振动搅拌器,Chem.Eng.j.75(1999)161-165; S.MASIUK,混合往复运动的时间穿孔板搅拌器,inz.chem.proc.20(1999)601-612; s.masiuk,用往复板搅拌器的管式反应器中固体溶解,Chem.eng.j.83(2001)139-144; s .masiuk,使用振动搅拌器混合的液体容器中的传热测量,Chem.eng.eg.j.61(1996)107-112]在往复搅拌器上进行,其中描述了实验装置和测量程序的附加信息找到,以及具有单板的搅拌器预测的无量纲相关性。提供了对乘法的功耗,混合时间,质量和传热的影响的实验研究,用于低频和高幅度往复运动搅拌器。最大功耗是Cal通过将作用在轴上的最大力和搅拌器的最大速度乘以旋转。热响应技术用于混合时间测量。传质系数由溶解固体与其周围混合稀释溶液之间的质量平衡计算。从加热夹套壁到混合液体的连续流动的传热系数通过稳定的热流方法测量。本文预测的分析无量纲方程概括了实验数据,无需突破所有流量一种相对简单和均匀的方式。

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