分形视角下流动模式对多孔床两相流动压力损失的影响

IF 0.4 Q4 MULTIDISCIPLINARY SCIENCES
E. Suárez-Domínguez, Arturo Palacio-Pérez, J. F. Pérez-Sánchez, Elena Izquierdo-Kulich
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引用次数: 0

摘要

由于构成多孔床的固体颗粒之间形成的通道的几何不规则性,通过基于传输现象方程的模型来描述通过多孔床的两相流的行为变得困难。为单相流开发的确定性模型需要调整经验常数,并且不能外推到双相流,因为系统中产生的流型会显著影响总流量和摩擦压力损失的行为。因此,在本文中,我们提出了一个模型来描述两相流的行为与流型以及多孔床的形态、尺寸和操作条件的关系,其获得是基于动量守恒方程、分形几何方程和分数微分方程的层次结构。该模型预测,对于相同成分的两相流,流型会显著影响摩擦压力损失,当其中一相分散在另一相中时,摩擦压力损失会增加。另一方面,孔隙分形维数的增加反过来又导致摩擦引起的压力损失增加。该模型具有与收集过程中建立的考虑因素相关的局限性,因为只有当表面张力的影响比重力效应更显著时,该模型才有效,重力效应对流型和静止状态的影响被忽略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efecto del patrón de flujo sobre las pérdidas de presión para flujo bifásico a través de lechos porosos bajo perspectiva fractal
The description of the behavior of a biphasic flow through porous beds by means of models based on the equations of transport phenomena is made difficult due to the geometric irregularity of the channels that are formed between the solid particles that make up the bed. Deterministic models developed for single-phase flows require the adjustment of empirical constants and cannot be extrapolated to biphasic flows, where the flow pattern generated in the system significantly influences the behavior of the total flow and the frictional pressure losses. Therefore, in this paper, we present a model to describe the behavior of the biphasic flow in relation to the flow pattern and the morphology, dimensions, and operating conditions of the porous bed, whose obtainment was based on a hierarchy that used the equations for conservation of momentum, fractal geometry and fractional differential calculus jointly. The model predicts that, for the same composition of the biphasic flow, the flow pattern significantly influences friction pressure losses, with an increase when one of the phases is dispersed within the other. On the other hand, the increase in the fractal dimension of the pores, in turn, causes an increase in pressure loss due to friction. The model has limitations associated with the considerations established during its collection, since it is only valid when the effects of surface tension are more significant than the gravitational effects, the effects of the latter being disregarded on the flow pattern, as well as for the stationary state.
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来源期刊
CienciaUat
CienciaUat MULTIDISCIPLINARY SCIENCES-
自引率
33.30%
发文量
24
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