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Porosity of spacer-filled channels in spiral-wound membrane systems: Quantification methods and impact on hydraulic characterization

机译:螺旋缠绕膜系统中填充垫片的通道的孔隙度:定量方法及其对水力特性的影响

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摘要

The porosity of spacer-filled feed channels influences the hydrodynamics of spiral-wound membrane systems and impacts the overall performance of the system. Therefore, an exact measurement and a detailed understanding of the impact of the feed channel porosity is required to understand and improve the hydrodynamics of spiral-wound membrane systems applied for desalination and wastewater reuse. The objectives of this study were to assess the accuracy of porosity measurement techniques for feed spacers differing in geometry and thickness and the consequences of using an inaccurate method on hydrodynamic predictions, which may affect permeate production. Six techniques were applied to measure the porosity namely, three volumetric calculations based on spacer strand count together with cuboidal (SC), cylindrical (VCC) and ellipsoidal volume calculation (VCE) and three independent techniques based on volume displacement (VD), weight and density (WD) and computed tomography scanning (CT). The CT method was introduced as an alternative for the other five already existing and applied methods in practice.Six feed spacers used for the porosity measurement differed in filament thickness, angle between the filaments and mesh-size. The results of the studies showed differences between the porosities, measured by the six methods. The results of the microscopic techniques SC, VCC and VCE deviated significantly from measurements by VD, WD and CT, which showed similar porosity values for all spacer types.Depending on the maximum deviation of the porosity measurement techniques from –6% to +6%, (i) the linear velocity deviations were −5.6% and +6.4% respectively and (ii) the pressure drop deviations were –31% and +43% respectively, illustrating the importance of an accurate porosity measurement. Because of the accuracy and standard deviation, the VD and WD method should be applied for the porosity determination of spacer-filled channels, while the CT method is recommended for numerical modelling purposes. The porosity has a linear relationship with the flow velocity and a superlinear effect on the pressure drop. Accurate porosity data are essential to evaluate feed spacer performance in spiral-wound membrane systems. Porosity of spacer-filled feed channels has a strong impact on membrane performance and biofouling impact.
机译:间隔物填充进料通道的孔隙度影响螺旋缠绕膜系统的流体力学,并影响系统的整体性能。因此,需要精确的测量和对进料通道孔隙率的影响的详细了解,以了解和改善用于海水淡化和废水回用的螺旋缠绕膜系统的流体力学。这项研究的目的是评估几何形状和厚度不同的饲料间隔物的孔隙率测量技术的准确性,以及对流体动力学预测使用不正确方法的后果,这可能会影响渗透物的生产。应用了六种技术来测量孔隙率,即基于间隔条数的三个体积计算以及长方体(SC),圆柱体(VCC)和椭圆体体积计算(VCE),以及三种基于体积位移(VD),重量和体积的独立技术。密度(WD)和计算机断层扫描(CT)。 CT方法是在实践中已替代的其他五种方法的替代方法。孔隙率测量中使用的六个进料隔片的细丝厚度,细丝之间的夹角和筛孔尺寸不同。研究结果表明,通过六种方法测量的孔隙率之间存在差异。显微技术SC,VCC和VCE的结果与VD,WD和CT的测量结果显着不同,这表明所有隔垫类型的孔隙率值都相似。取决于孔隙率测量技术的最大偏差,从–6%到+ 6% ,(i)线速度偏差分别为-5.6%和+ 6.4%,以及(ii)压降偏差分别为–31%和+ 43%,这说明了精确的孔隙度测量的重要性。由于准确性和标准偏差,应使用VD和WD方法确定间隔物填充通道的孔隙度,而建议使用CT方法进行数值建模。孔隙率与流速具有线性关系,并且对压降具有超线性影响。准确的孔隙率数据对于评估螺旋缠绕膜系统中进料垫片的性能至关重要。间隔物填充的进料通道的孔隙度对膜性能和生物污损影响很大。

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