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Electrically accelerated transport of chlorides in concrete considering non-linear chloride binding in non-equilibrium conditions

机译:考虑在非平衡条件下的非线性氯化物结合的混凝土中电加速运输氯化物

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The Rapid Chloride Migration test (NT Build 492) is commonly used in order to determine the chloride diffusion (migration) coefficient in concrete. This coefficient can then be used as the input value for service life design models for concrete structures in marine environment. However, the theoretical background of this test is still raising discussions as the equations describing the transport process of chlorides cannot predict correctly the chloride concentration profiles in concrete. The new, improved chloride transport model presented in this paper includes the nonlinear nature of chloride binding in concrete as well as the non-equilibrium conditions between free- and bound- chloride concentrations, which were not taken into account in the traditional chloride transport model. This new model has been applied to the experimental data and the values of binding parameters, chloride mass transfer coefficient and the effective chloride diffusion coefficient were determined in the optimization process. The derived binding parameters (non-linear Freundlich isotherm) show very good agreement with values obtained from experimental measurements. The chloride mass transfer coefficient reveals a tendency to diminish during the RCM test. The effective diffusion coefficient determined based on the new chloride transport model is in line with the values found in literature.
机译:通常使用快速氯化物迁移试验(NT构建492),以确定混凝土中的氯化物扩散(迁移)系数。然后可以将该系数用作海洋环境中混凝土结构的使用寿命设计模型的输入值。然而,该测试的理论背景仍在提高讨论作为描述氯化物的运输过程的等式不能正确预测混凝土中的氯化物浓度谱。本文提出的新改进的氯化物传输模型包括混凝土中的氯化物结合的非线性性质以及在传统氯化物输送模型中未考虑的自由和结合氯化物浓度之间的非平衡条件。该新模型已应用于实验数据和结合参数的值,在优化过程中确定了氯化物传质系数和有效氯化物扩散系数。衍生的绑定参数(非线性Freundlich等温线)显示出与从实验测量获得的值非常好的一致性。氯化物传质系数揭示了在RCM测试期间减少的趋势。基于新的氯化物传输模型确定的有效扩散系数与文献中的值符合。

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