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Experimental validation of CFD mass transfer simulations in flat channels with non-woven net spacers

机译:具有非织造网间隔物的扁平通道中CFD传质模拟的实验验证

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The objective of the present paper is to validate experimentally the mass transfer simulations presented in a previous paper by the same authors [J. Membr. Sci. 208 (2002) 289]. In the present study, mass transfer coefficients were obtained by the limiting current method. The results from CFD simulations were successfully validated by experiments. The experiments confirm that the geometric parameters of spacers have a considerable influence on mass transfer at a given cross-flow power consumption. Comparison of the experiments with different non-woven spacers shows that there is an optimal spacer geometry, which agrees with those of the optimal spacer obtained by CFD simulations. The experiments also indicate that the woven and non-woven spacers perform equally well. Since all commercial net spacers investigated in this study had non-optimal spacer geometries, they showed lower mass transfer coefficients at a given cross-flow power consumption than the optimal spacer.
机译:本论文的目的是通过实验验证同一作者在前一篇论文中提出的传质模拟[J.膜科学208(2002)289]。在本研究中,传质系数是通过极限电流法获得的。 CFD模拟的结果已通过实验成功验证。实验证实,在给定的错流功率消耗下,垫片的几何参数对传质有很大影响。用不同的非织造间隔物进行的实验比较表明,存在最佳的间隔物几何形状,这与通过CFD模拟获得的最佳间隔物一致。实验还表明,织造的和非织造的间隔件表现得同样好。由于本研究中研究的所有商用净隔片均具有非最佳的隔片几何形状,因此它们在给定的错流功率消耗下显示出的传质系数低于最佳的隔片。

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