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Time-frequency analysis on low-resistivity shielding layer in TEM soundings

机译:TEM测深中低电阻率屏蔽层的时频分析

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The transient electromagnetic (TEM) method will be influenced by shielding effect of the low-resistivity overburden layer. By adopting the smooth pseudo Wigner-Ville distribution (SPWD), the responses simulated with a finite-difference time-domain method (FDTD) of D- and G-type models by a 2D line source and H-, A-, K- and Q-type models by a loop source are transformed to the time-frequency (T-F) plane. It is indicated that in low-resistivity, the TEM wave aggregates and will consume more energy, it transmits faster in high-resistivity layers but slower in low-resistivity ones. For A-type models widely in distribution of the North China type coalfield of our country, energy of the TEM field has been almost depleted when arriving at the bottom interface (interfaces of Ordovician limestone and coal series) during the TEM exploration in this area, influence of the low resistive shielding layer shall be taken into full consideration, and relatively longer observing time window shall be selected to ensure the detection depth and high-power instruments shall be adopted to increase the signal-noise ratio during construction design.
机译:瞬变电磁(TEM)方法将受到低电阻率覆盖层屏蔽作用的影响。通过采用平滑伪Wigner-Ville分布(SPWD),通过二维线源和H-,A-,K-使用D型和G型模型的时域有限差分时域方法(FDTD)模拟响应回路源的Q型模型和Q型模型被转换到时频(TF)平面。结果表明,在低电阻率下,TEM波会聚集并消耗更多的能量,它在高电阻率层中的传输速度较快,而在低电阻率层中的传输速度较慢。对于在中国华北型煤田中广泛分布的A型模型,在该地区进行TEM勘探时,到达底部界面(奥陶纪石灰岩与煤系的界面)时,TEM场的能量几乎耗尽了,应充分考虑低阻屏蔽层的影响,并选择相对较长的观察时间窗口,以确保检测深度,并应采用大功率仪器来增加施工设计时的信噪比。

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