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首页> 外文期刊>Journal of Materials Engineering and Performance >Determination of Diffusion Coefficients in Cement-Based Materials: An Inverse Problem for the Nernst-Planck and Poisson Models
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Determination of Diffusion Coefficients in Cement-Based Materials: An Inverse Problem for the Nernst-Planck and Poisson Models

机译:水泥基材料中扩散系数的确定:Nernst-Planck和Poisson模型的反问题

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Transport properties of ions have significant impact on the possibility of rebars corrosion thus the knowledge of a diffusion coefficient is important for reinforced concrete durability. Numerous tests for the determination of diffusion coefficients have been proposed but analysis of some of these tests show that they are too simplistic or even not valid. Hence, more rigorous models to calculate the coefficients should be employed. Here we propose the Nernst-Planck and Poisson equations, which take into account the concentration and electric potential field. Based on this model a special inverse method is presented for determination of a chloride diffusion coefficient. It requires the measurement of concentration profiles or flux on the boundary and solution of the NPP model to define the goal function. Finding the global minimum is equivalent to the determination of diffusion coefficients. Typical examples of the application of the presented method are given.
机译:离子的传输特性对钢筋腐蚀的可能性具有重大影响,因此,了解扩散系数对于增强混凝土的耐久性很重要。已经提出了许多用于确定扩散系数的测试,但是对其中一些测试的分析表明,它们过于简单,甚至无效。因此,应采用更严格的模型来计算系数。在这里,我们提出了Nernst-Planck和Poisson方程,其中考虑了浓度和电势场。基于该模型,提出了一种特殊的反方法来确定氯的扩散系数。需要定义NPP模型边界和解上的浓度分布或通量,以定义目标函数。找到全局最小值等于确定扩散系数。给出了所提出方法的典型应用实例。

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