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Pressure drops for purely viscous non-newtonian fluid flow through beds packed with mixed-size spheres

机译:纯粘性非牛顿流体流经装有混合尺寸球体的床的压降

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Extensive new measurements on pressure drop for the flow of purely viscous non-Newtonian fluids through packed beds made up of binary-and-quaternary size spheres are reported herein. These results have been interpreted using the previously available Sabiri and Comiti capillary model (1995), which has been quite successful in correlating the pressure drop data for the beds of uniform size spherical and nonspherical particles. The resulting predictions are also very good for mixed beds if some results are available for a Newtonian fluid, thereby enabling the evaluation of the tortuosity factor. However, since such data is always not available, an empirical scheme for estimating the tortuosity that allows the prediction of pressure drop with a mean relative error of about 10% is also presented. This sort of accuracy is quite acceptable for process engineering design calculations.
机译:本文报道了对纯粘性非牛顿流体流经由二元和四元大小的球组成的填充床的压降的广泛的新测量。这些结果已使用先前可用的Sabiri和Comiti毛细管模型(1995)进行了解释,该模型在关联大小均一的球形和非球形颗粒床的压降数据方面非常成功。如果对于牛顿流体可以获得一些结果,那么对于混合床来说,所得的预测也非常好,从而可以评估曲折系数。但是,由于此类数据始终不可用,因此还提出了一种估算曲折性的经验方案,该方案允许以平均相对误差约为10%的压力降进行预测。对于过程工程设计计算而言,这种准确性是完全可以接受的。

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