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Development of a new pressure drop correlation for open-cell foams based completely on theoretical grounds: Taking into account strut shape and geometric tortuosity

机译:完全基于理论基础,开发一种用于开孔泡沫的新压降相关性:考虑到支杆形状和几何曲折

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Owing to their outstanding geometry and material related properties, open-cell foams as structured packing in reactors, columns or heat exchangers offer clear advantages over their traditional counterparts. For the reliable and efficient design of such systems, an accurate knowledge or prediction of the pressure drop is of fundamental importance, as it plays an important economic role in situations involving high space velocities (high Reynolds numbers). The state-of-the-art pressure drop correlations for open-cell foams are not predictive as they tend to show large deviations from measured data. These deviations are observed mainly due to empirical coefficients in the correlations that have been fitted to a particular data set, but without theoretical meaning these coefficients cannot be extrapolated to other foam structures. In addition, the incorporation of inappropriate definitions (originating from misinterpretation or negligence of important aspects) of the structural and geometrical parameters of foams can also induce a considerable error. In this paper, using the notion of geometric tortuosity and starting from the basic Hagen-Poiseuille equation, a generalized pressure drop correlation for open-cell foams is developed which is based completely on theoretical grounds. The correlation is validated for a wide range of open porosities, pore sizes and materials and its applicability for different working fluids is demonstrated. Furthermore, the definitions of structural and geometrical parameters (as mentioned, these are crucial for pressure drop correlations but are sometimes misinterpreted or neglected) of open-cell foams are reviewed. A consensus on these definitions and their incorporation into the pressure drop correlations is proposed. Consequently, with the proposed correlation, pressure drop in open-cell foams can be predicted by knowing only two structural parameters: the open porosity and the window diameter. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于其出色的几何形状和与材料相关的特性,作为反应器,塔或热交换器中的规整填料的开孔泡沫具有明显优于传统泡沫的优势。对于此类系统的可靠且高效的设计,对压降的准确了解或预测至关重要,因为它在涉及高空速(高雷诺数)的情况下起着重要的经济作用。开孔泡沫的最新压降相关性无法预测,因为它们倾向于显示与测量数据的较大偏差。观察到这些偏差主要是由于已拟合到特定数据集的相关性中的经验系数,但没有理论意义,就无法将这些系数外推至其他泡沫结构。另外,泡沫的结构和几何参数的不适当定义的引入(由于重要方面的误解或疏忽)也可能引起相当大的误差。本文使用几何曲折度的概念,并从基本的哈根-泊瓦依方程开始,建立了完全基于理论基础的广义开孔泡沫的压降相关性。这种相关性已在各种开孔率,孔径和材料方面得到验证,并证明了其在不同工作流体中的适用性。此外,回顾了开孔泡沫的结构和几何参数的定义(如上所述,这些参数对于压降相关性至关重要,但有时会被误解或忽略)。对这些定义及其在压降相关性中的结合提出了共识。因此,利用所提出的相关性,仅通过了解两个结构参数即可预测开孔泡沫中的压降:开孔率和窗口直径。 (C)2015 Elsevier B.V.保留所有权利。

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