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Measuring time-domain spectral induced polarization in the on-time: decreasing acquisition time and increasing signal-to-noise ratio

机译:在导通时间内测量时域光谱激发的极化:减少采集时间并增加信噪比

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摘要

Combined resistivity and time-domain direct current induced polarization (DCIP) measurements are traditionally carried out with a 50\% duty cycle current waveform, taking the resistivity measurements during the on-time and the IP measurements during the off-time. One drawback with this method is that only half of the acquisition time is available for resistivity and IP measurements, respectively. In this paper, this limitation is solved by using a current injection with 100\% duty cycle and also taking the IP measurements in the on-time. With numerical modelling of current waveforms with 50\% and 100\% duty cycles we show that the waveforms have comparable sensitivity for the spectral Cole–Cole parameters and that signal level is increased up to a factor of 2 if the 100\% duty cycle waveform is used. The inversion of field data acquired with both waveforms confirms the modelling results and shows that it is possible to retrieve similar inversion models with either of the waveforms when inverting for the spectral Cole–Cole parameters with the waveform of the injected current included in the forward computations. Consequently, our results show that on-time measurements of IP can reduce the acquisition time by up to 50\% and increase the signal-to-noise ratio by up to 100\% almost without information loss. Our findings can contribute and have a large impact for DCIP surveys in general and especially for surveys where time and reliable data quality are important factors. Specifically, the findings are of value for DCIP surveys conducted in urban areas where anthropogenic noise is an issue and the heterogeneous subsurface demands time-consuming 3D acquisitions.
机译:传统上,电阻率和时域直流感应极化(DCIP)的组合测量是使用占空比为50%的占空比波形进行的,在接通时间进行电阻率测量,在断开时间进行IP测量。这种方法的一个缺点是分别只有一半的采集时间可用于电阻率和IP测量。在本文中,通过使用占空比为100%的电流注入并在导通时间内进行IP测量来解决此限制。通过对占空比为50%和100%的电流波形进行数值建模,我们显示出该波形对频谱Cole–Cole参数具有可比的灵敏度,并且如果占空比为100%,则信号电平将增加至2倍使用波形。用两个波形采集的场数据的反演证实了建模结果,表明当对频谱Cole–Cole参数进行反演且正向计算中包括注入电流的波形时,可以对任意一个波形检索相似的反演模型。因此,我们的结果表明,对IP进行实时测量可以将采集时间减少多达50%,并且几乎将信噪比提高了100%,而几乎没有信息丢失。我们的发现可以为DCIP总体调查做出贡献,并对其产生重大影响,特别是对于那些时间和可靠数据质量是重要因素的调查。具体而言,这些发现对于在人为噪声是一个问题且异质地下需要耗时的3D采集的城市地区进行的DCIP调查具有价值。

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