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Direct Electrodynamic Electromagnetic-Acoustic Transformation in a Normal Polarizing Field: II. Acoustic Field of the Transition Radiation Zone

机译:在正常偏振场中的直接电磁电磁声转换:II。过渡辐射区的声场

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摘要

The behaviors of the amplitude of shear displacements and the angle of injection of elastic vibrations have been studied as functions of the frequency and geometry of electromagnetic-field transmitters via a numerical analysis based on the direct electromagnetic-acoustic transformation (EMAT) phenomenon described earlier. The presented data are analyzed with an approximate expression for the difference scheme of sound emission. It is shown that, as the frequency increases, the displacement amplitude reaches a maximum and then decreases. As the frequency increases, the angle of vibration injection abruptly decreases until the frequency of stabilization of the radiation-maximum position is reached and then becomes virtually frequency-independent when the values approximately corresponding to the radiation far-field zone are reached. Expressions are derived for the depth of the end of the radiation near-field zone and the conventional beginning of the radiation far-field zone. It is shown that, in the case of the difference radiation scheme corresponding to two-phase transmitters, the boundaries of both zones during EMAT are shifted from the surface to a distance corresponding to the ratio of the average diameter of the transmitter to the width of the emitting element.
机译:通过基于前面所述的直接电磁声变换(EMAT)现象的数值分析,研究了剪切位移幅度的行为和弹性振动的注入角与电磁场发射器的频率和几何形状的关系。使用近似表达式分析呈现的数据,以得出声音的差分方案。结果表明,随着频率的增加,位移幅度达到最大值,然后减小。随着频率增加,振动注入的角度突然减小,直到达到辐射最大位置的稳定频率为止,然后当达到近似对应于辐射远场区域的值时,实际上变为与频率无关。得出辐射近场区末端和常规辐射远场区起点深度的表达式。结果表明,在差分辐射方案对应于两相发射器的情况下,EMAT过程中两个区域的边界都从表面偏移了一个距离,该距离对应于发射器的平均直径与发射器的宽度之比。发射元件。

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