Transient radio wave scattering by aeration zones

S. Masalov, O.O. Puzanov
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引用次数: 2

Abstract

It is shown that the availability of water can be detected only by reflection from a capillary fringe situated in a region contiguous with water. One has to take into account this result for a more exact determination of the water depth in ground. It has been established that the observed pulse acquires a duration above the source pulse. The calculation results have shown that measurement errors of frequency dependencies of permittivities and specific conductivities that are used as initial data manifest during the calculation of the diffraction fields for structures of large depth (that are more than 2-3 meters). This is a result of the small amplitudes of the pulses reflected from deep discontinuities. In fact these errors bring about a "false reflection" preceding reflections from the capillary fringe and water. This effect reveals a violation of the causality law and is a consequence of the disturbed connection between the real and imaginary parts of complex permittivity. As it is known, this connection is determined after the Kramers-Kronig relations. On this basis a conclusion is made about the necessity of refinement of the source experimental data.
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瞬态无线电波散射的曝气区
结果表明,水的有效性只能通过位于与水相邻区域的毛细条纹的反射来检测。为了更精确地确定地下的水深,人们必须考虑到这个结果。已经确定,观察到的脉冲获得比源脉冲高的持续时间。计算结果表明,在计算大深度(2 ~ 3米以上)结构的衍射场时,作为初始数据的介电常数和比电导率的频率相关性存在测量误差。这是深层不连续面反射的脉冲振幅小的结果。实际上,这些误差导致了在毛细条纹和水反射之前的“假反射”。这种效应揭示了对因果律的违背,是复介电常数实部和虚部之间的联系受到干扰的结果。众所周知,这种联系是在Kramers-Kronig关系之后确定的。在此基础上,提出了对源实验数据进行细化的必要性。
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