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Mixed convection mass transfer studies of opposing and aiding flow in a parallel plate electrochemical flow cell

机译:平行板电化学流动池中对流和辅助流的混合对流传质研究

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摘要

Studies of combined natural and forced convection in a vertical parallel plate electrochemical cell in laminar conditions in cases of opposing and aiding flow are reported. In an ongoing project it was necessary to identify conditions in which natural convection had no significant influence on mass transfer rates at the cell walls so that data could be validly compared with purely laminar flow computational models. For the different electrode lengths investigated, natural convection dominated at low Reynolds number and there was no Reynolds number dependence. At high Reynolds number the data approached the laminar flow solution. At intermediate Reynolds number, however, there existed a distinct region where free and forced convection were significant. At high electrolyte concentrations data did not merge with laminar flow equations until Re = 1000 and low electrolyte concentration data for the large plate could not be compared with numerical predictions below Re of 250. An attempt was made to compare the data with those of other workers on combined forced and natural convection heat and mass transfer.
机译:报道了在层流条件下,在逆流和辅助流情况下,垂直平行板电化学池中自然对流和强制对流的组合研究。在正在进行的项目中,有必要确定自然对流对细胞壁传质速率没有显着影响的条件,以便可以将数据与纯层流计算模型进行有效比较。对于研究的不同电极长度,自然对流在低雷诺数下占主导地位,并且没有雷诺数依赖性。雷诺数较高时,数据接近层流解。但是,在雷诺数为中间值时,存在一个明显的区域,其中自由对流和强制对流非常重要。在高电解质浓度下,直到Re = 1000时,数据才与层流方程合并,并且无法将大板块的低电解质浓度数据与Re低于250的数值预测进行比较。尝试将数据与其他工人的数据进行比较强迫和自然对流传热传质。

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