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Simulation of the spiral wound RO membranes deformation under operating conditions

机译:工作条件下螺旋缠绕反渗透膜变形的模拟

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摘要

A mathematical model for the simulation of the deformation of the spiral wound reverse osmosis (RO) membranes in real operating conditions for seawater was developed. A simple analytical equation for the trans-membrane pressure was used and a mathematical procedure was applied to determine the membrane compactions. The derived mathematical model can be considered as a tool to give a detailed picture of the membrane deformation in real operating conditions, in order to relate the membrane compaction with the water flux decline. The estimation of the 2D compaction is based on the modeling of the composite membrane using the theory of a plate on an elastic substrate. Results indicated that the compaction of both composite membrane layers is varying smoothly along the membrane surface. The maximum compaction of the active bi-material polyamide-polysulfone on top of the membrane is located at the point (x, y) = (0 cm, 117 cm) having value w_(1max) ≈0.1 urn while the maximum compaction of polyester sub-layer is w_(2max) ≈ 16 urn taking place at the interior point (x,y) = (29 cm, 82 cm) for the 8" RO membrane modules.
机译:建立了在海水实际运行条件下模拟螺旋缠绕反渗透(RO)膜变形的数学模型。使用跨膜压力的简单分析方程式,并应用数学程序确定膜的致密性。可以将导出的数学模型视为一种工具,以给出实际操作条件下膜变形的详细信息,从而将膜的紧实度与水通量下降联系起来。 2D压实度的估计是基于使用弹性基板上的板理论对复合膜进行建模的基础上。结果表明,两个复合膜层的压实度沿膜表面平滑变化。活性双材料聚酰胺-聚砜在膜顶部的最大压实度位于(x,y)=(0 cm,117 cm)处,值w_(1max)≈0.1 urn,而聚酯的最大压实度对于8“ RO膜组件,内层的内层(x,y)=(29 cm,82 cm)发生w_(2max)≈16 urn。

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