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Study of the Correlation between the Concrete Wall Thickness Measurement Results by Ultrasonic Pulse Echo and the PTF Model for Assymetrical Functions

机译:超声脉冲回波测量混凝土壁厚的结果与非对称函数PTF模型的相关性研究

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This paper presents an interpretation of the results of the Pulse-echo methods (Radar Impact-Echo, Ultrasonic Impulse-echo) and simulation of wave propagation for testing concrete specimens with metal ducts given in [1-15], in terms of the invariance properties of PTF (Practical Test Function) model for asymmetrical pulses presented and developed in [20] and [26].rnThe interpreted results include various aspects of the pulse echo method (previously published by Krause, Maierhofer, Wiggenhauser, Biirmann, Lan-genberg, Frielinghaus, Krautkramer, Neisecke, Wollbold, Schickert) as: radar: propagation, reflection and scattering of electromagnetic pulses; impact echo: propagation, reflection and scattering of elastic waves after mechanical impact; ultrasonic pulse echo: propagation and dispersion of sound waves after indication with ultrasonic transducers.rnThe interpretation of the above results with the help of the PTF model for asymmetrical functions revealed the compatibility between the first and second order therms representation of a sharp pulse-defined as a practical test function-and some of the experimental results.rnAs a possible application, is mentioned phase detection by multiplying the alternating input signal with an assymetrical function and integration of the resulting function for more robust results than the one presented in [27].rnThe second part of the paper presents the a heuristic algorithm for generating asymmetrical practical test functions (that could be used to describe impact echo phenomena for the elastic waves in various materials, including concrete) using MATLAB procedures some possibilities for obtaining asymmetrical pulses as related to this middle of the working interval using the derivative of such symmetrical pulse for certain diferential equations corresponding to second order systems (with unity-step input and for an input represented by a gaussian pulse).
机译:本文就不变性方面,对脉冲回波(雷达冲击回波,超声波脉冲回波)方法的结果进行了解释,并用[1-15]给出了用金属导管测试混凝土标本的波传播模拟。在[20]和[26]中提出并开发了非对称脉冲的PTF(Practical Test Function)模型的特性。 ,Frielinghaus,Krautkramer,Neisecke,Wollbold,Schickert)作为:雷达:电磁脉冲的传播,反射和散射;冲击回波:机械冲击后弹性波的传播,反射和散射;超声脉冲回波:超声换能器指示后声波的传播和扩散.rn在不对称功能的PTF模型的帮助下对以上结果的解释揭示了尖锐脉冲定义为实用的测试功能和一些实验结果。作为一种可能的应用,提到了相位检测,方法是将交流输入信号与不对称函数相乘,并对结果函数进行积分,以获得比[27]中给出的结果更可靠的结果。 rn本文的第二部分介绍了一种启发式算法,该算法可使用MATLAB程序生成不对称的实际测试函数(可用于描述各种材料(包括混凝土)中的弹性波的冲击回波现象),从而获得与以下情况有关的不对称脉冲:使用导数o的工作间隔的中间f对于对应于二阶系统的某些微分方程(具有单位步进输入以及由高斯脉冲表示的输入),使用这种对称脉冲。

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