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首页> 外文期刊>SIAM Journal on Applied Mathematics >A NONDESTRUCTIVE EVALUATION METHOD FOR CONCRETE VOIDS: FREQUENCY DIFFERENTIAL ELECTRICAL IMPEDANCE SCANNING
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A NONDESTRUCTIVE EVALUATION METHOD FOR CONCRETE VOIDS: FREQUENCY DIFFERENTIAL ELECTRICAL IMPEDANCE SCANNING

机译:混凝土空隙的非破坏性评估方法:频率差电阻抗扫描

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This paper proposes a new nondestructive evaluation method for detecting cracks, voids, and other hidden defects inside concrete structures, called “frequency differential electrical impedance scanning (fdEIS).” The primary benefit of fdEIS over the conventional nondestructive methods is that it is possible to determine the thickness of the voids. In fdEIS, we inject a sequence of electrical currents with various frequencies through the tested concrete wall by applying a sinusoidal voltage difference between a surface electrode and a scan probe, which are placed on opposite surfaces of the wall. Through the probe, we measure the derivative d dω gω of exit currents (Neumann data) with respect to the angular frequency variable ω. We find the fundamental concept in fdEIS relating the thickness of the voids to d dω gω and derive an approximation formula for estimating the thickness of the voids. We demonstrate the performance of our method in numerical simulations.
机译:本文提出了一种新的用于检测混凝土结构内部裂缝,空隙和其他隐藏缺陷的无损评估方法,称为“频差电阻抗扫描(fdEIS)”。与传统的非破坏性方法相比,fdEIS的主要优势在于可以确定空隙的厚度。在fdEIS中,我们通过在表面电极和扫描探头之间施加正弦电压差,将一系列频率的电流通过被测试的混凝土墙注入,这些电极位于墙的相对表面上。通过探头,我们测量了相对于角频率变量ω的出口电流(Neumann数据)的导数ddωgω。我们在fdEIS中找到了将空隙的厚度与ddωgω相关联的基本概念,并推导了用于估算空隙的厚度的近似公式。我们在数值模拟中证明了我们方法的性能。

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