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An analytical approach to the gas pressure drop in hollow fiber membranes

机译:中空纤维膜中气体压降的分析方法

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The gas pressure drop in the bore of hollow fiber membranes has attracted much attention. Numerical methods are generally employed to deal with such complex problems. However, numerical methods cannot provide a clear picture on how the pressure drop is affected by the physical properties of fibers (e.g., fiber inner diameter, fiber length, and intrinsic permeance) and the operating conditions (e.g., downstream pressure). This article attempts to elucidate the interaction mechanism based on an analytical approach. The pressure drop in hollow fibers is formulated by an elliptic integral function, and the effectiveness factor of the transmembrane pressure is proposed to characterize the effect. A dimensionless parameter is obtained, which contains all the dominant factors responsible for generating the pressure drop in hollow fibers. It is shown that the dimensionless parameter serves as the indicator of the significance of the effect of the pressure buildup in hollow fibers. To some degree, this parameter is also a convenient tool for rationalizing hollow fiber modules design.
机译:中空纤维膜孔中的气压下降引起了人们的广泛关注。通常采用数值方法来处理这样的复杂问题。然而,数值方法不能清楚地显示出压降如何受到纤维的物理性质(例如,纤维内径,纤维长度和固有渗透率)以及操作条件(例如,下游压力)的影响。本文试图阐明一种基于分析方法的交互机制。中空纤维的压降由椭圆积分函数表示,并提出跨膜压的有效因子来表征其效果。获得了无量纲参数,该参数包含导致中空纤维中压力下降的所有主要因素。结果表明,无量纲参数可作为中空纤维中压力累积影响的重要指标。在某种程度上,该参数也是合理化中空纤维模块设计的便捷工具。

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