Performance Characterization of Hollow Fiber Direct Contact Membrane Distillation Module

Jaber M. Asiri, Abdulaziz M. Alasiri, Justin Caspar, Guanyang Xue, A. Oztekin
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引用次数: 0

Abstract

Computational fluid dynamics (CFD) simulations were carried out to study the performance of a single hollow fiber in a direct contact membrane distillation (HF-DCMD) module for a desalination process. The feed solution is seawater with a salt (NaCl) concentration of 35 g/L. The Navier-Stokes, mass and energy transport equations are considered, with a coupled boundary condition imposed by the membrane. The system is investigated to examine sensitivity toward the membrane thickness, pore size, and inner hollow fiber diameter based on existing commercial fibers. Two membrane thicknesses (300 μm, 500 μm), two membrane pores sizes (0.2 μm, 0.45 μm), and two inner diameters (1.2 mm, 1.8 mm) are studied in the laminar regime at fixed operating conditions. The presence of temperature polarization causes a significant drop in the water permeation in the DCMD system due to reduced driving force across the membrane. The characterization of polarization inside the hollow fiber will be the focus of this work. It was found that the vapor flux was most sensitive to the membrane thickness (a 30% flux increase) versus the inner diameter (2% flux increase). The pore size is also a very influential parameter (20% flux increase), moving from optimal to less-optimal properties.
中空纤维直接接触膜蒸馏模块的性能表征
通过计算流体动力学(CFD)模拟研究了用于海水淡化工艺的直接接触膜蒸馏(HF-DCMD)模块中单个中空纤维的性能。进料液为盐(NaCl)浓度为35 g/L的海水。考虑了具有膜施加的耦合边界条件的Navier-Stokes、质量和能量输运方程。以现有的商用纤维为基础,研究了该系统对膜厚度、孔径和内空心纤维直径的敏感性。在固定的工作条件下,研究了两种膜厚度(300 μm、500 μm)、两种膜孔尺寸(0.2 μm、0.45 μm)和两种内径(1.2 mm、1.8 mm)。温度极化的存在导致DCMD系统中水的渗透率显著下降,这是由于膜上的驱动力降低了。中空纤维内部的偏振特性将是本研究的重点。结果表明,相对于内径(增加2%),膜厚(增加30%)对蒸汽通量最为敏感。孔径也是一个非常有影响的参数(通量增加20%),从最优到次优性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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