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Retrieval of the saturated hydraulic conductivity of cement-based materials using electrical capacitance tomography

机译:使用电容断层扫描检索水泥基材料的饱和水力导电性

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摘要

Moisture transport properties have an important part in the durability of cement-based materials, because water plays a major role in the majority of degradation mechanisms and can carry other agents that are detrimental. One of the key transport properties is the permeability, or saturated hydraulic conductivity (SHC), which is a function of porosity, pore size distribution, and pore connectivity. Therefore, information on the SHC is very useful in predicting the durability; however measuring SHC is often difficult due to required experimental setup and the low SHC of cement-based materials. In this paper, we propose an electrical capacitance tomography (ECT) -based approach to estimate the SHC of cement-based materials. The proposed technique is applied to capillary absorption experiments, where specimens are imaged with ECT during water absorption, and the time-series of ECT reconstructions are used for tracing the water front propagation. The water front data, in turn, is used for estimating the SHC of the material. Here, we make a simplifying approximation for the moisture ingress and use (a 1D) sharp front model for estimating the SHC from the ECT-based data. The proposed SHC estimation scheme is tested both numerically and experimentally. The results of the numerical studies support the feasibility of the SHC retrieval both in ideal cases of 1D moisture flow and also in more realistic cases where the flows are not 1D. In the experimental part, the ECT-based estimates for the SHCs of mortars are in good agreement with the values determined using the falling-head method measured independently.
机译:水分运输性能在基于水泥基材料的耐久性方面具有重要组成部分,因为水在大部分降解机制中发挥着重要作用,并且可以携带其他有害的药剂。关键传输性能之一是渗透性或饱和液压导电性(SHC),其是孔隙率,孔径分布和孔连接的函数。因此,关于SHC的信息对于预测耐用性非常有用;然而,由于所需的实验设置和基于水泥材料的低SHC,测量SHC通常难以困难。在本文中,我们提出了一种电容断层扫描(ECT)的基础方法来估计基于水泥基材料的SHC。所提出的技术应用于毛细管吸收实验,其中试样在吸水期间与ECT成像,并且使用重建的时间序列用于跟踪水前展示。反过来,水前部数据用于估计材料的SHC。在这里,我们对湿气进入和使用(A 1D)锐利前端模型进行简化近似,用于估计SHC的基于ECT的数据。所提出的SHC估计方案在数字和实验上进行测试。数值研究的结果支持SHC检索的可行性,也是在1D水分流动的理想情况下,并且在流动不是1D的更现实的情况下。在实验部分中,迫击炮SHC的基于ECT的估计与使用独立测量的下降头法测定的值吻合良好。

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