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Permeation of gases in polymers: parameter identification and nonlinear regression analysis

机译:聚合物中气体的渗透:参数识别和非线性回归分析

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摘要

In numerous previous studies it has been shown that the permeability of gases in polymers depends strongly on the polymer structure, on the gas type, as well as on the conditions of temperature and pressure. The theoretical models that have been proposed and developed in the literature, describe the transport mechanism of molecular specie, in polymers by diffusion involving a concentration-dependent diffusion coefficient. However, the exact form of this dependency and exact information on the diffusion coefficient and on the solubility coefficient are not always available in the literature, in particular in extreme conditions like in the case of protective polymer coatings for flexible offshore pipes where the temperature and pressure of the diffusing gas can be very high.Using experimental data from permeation experiments on particularly developed experimental devices at the Institut Francais du Petrole (IFP) we are able to study this dependency and have produced a method which allows to identify the parameters in the model from this data. Mathematically, this leads to a nonlinear least-squares optimisation problem with constraints in the form of partial differential equations (PDEs), which we will concentrate on in this paper. In particular, we will focus on the statistical analysis of the results and give confidence intervals for the estimated parameters. We will also present tests to check whether the assumptions on our model are appropriate and to identify whether the introduction of a concentration-dependent diffusion coefficient is necessary for particular pairs of gas and polymer and at certain temperatures and pressures. We will demonstrate the performance of our method and the statistical analysis of the results on some data obtained with the experimental devices at the IFP. © 2005 Elsevier B.V. All rights reserved.
机译:在许多先前的研究中已经表明,气体在聚合物中的渗透性在很大程度上取决于聚合物的结构,气体的类型以及温度和压力的条件。文献中已经提出和发展的理论模型描述了分子种类在聚合物中通过涉及浓度依赖性扩散系数的扩散的传输机理。但是,这种依赖关系的确切形式以及有关扩散系数和溶解度系数的确切信息并不总是在文献中提供,特别是在极端条件下,例如在温度和压力较高的柔性海上管道用保护性聚合物涂料的情况下利用法国石油研究院(IFP)专门开发的实验设备上的渗透实验获得的实验数据,我们能够研究这种依赖性,并产生了一种方法,可以识别模型中的参数从这些数据。从数学上讲,这导致了非线性最小二乘优化问题,该问题具有偏微分方程(PDE)形式的约束,我们将在本文中重点讨论。特别是,我们将专注于结果的统计分析并给出估计参数的置信区间。我们还将提出测试,以检查模型的假设是否适当,并确定在特定的温度和压力下,对于特定的气体和聚合物对,是否需要引入浓度依赖的扩散系数。我们将在IFP上通过实验装置获得的一些数据上展示我们方法的性能以及结果的统计分析。 &复制; 2005 Elsevier B.V.保留所有权利。

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