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首页> 外文期刊>Journal of Applied Geophysics >On the value of including x-component data in 1D modeling of electromagnetic data from helicopterborne time domain systems in horizontally layered environments
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On the value of including x-component data in 1D modeling of electromagnetic data from helicopterborne time domain systems in horizontally layered environments

机译:关于将x分量数据包含在水平分层环境中的直升机时域系统的电磁数据的一维建模中的价值

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摘要

Helicopter borne time domain EM systems historically measure only the Z-component of the secondary field, whereas fixed wing systems often measure all field components. For the latter systems the X-component is often used to map discrete conductors, whereas it finds little use in the mapping of layered settings. Measuring the horizontal X-component with an offset loop helicopter system probes the earth with a complementary sensitivity function that is very different from that of the Z-component, and could potentially be used for improving resolution of layered structures in one dimensional modeling. This area is largely unexplored in terms of quantitative results in the literature, since measuring and inverting X-component data from a helicopter system is not straightforward: The signal strength is low, the noise level is high, the signal is very sensitive to the instrument pitch and the sensitivity function also has a complex lateral behavior.The basis of our study is a state of the art inversion scheme, using a local 1D forward model description, in combination with experiences gathered from extending the SkyTEM system to measure the X component. By means of a 1D sensitivity analysis we motivate that in principle resolution of layered structures can be improved by including an X-component signal in a 1D inversion, given the prerequisite that a low-pass filter of suitably low cut-off frequency can be employed. In presenting our practical experiences with modifying the SkyTEM system we discuss why this prerequisite unfortunately can be very difficult to fulfill in practice. Having discussed instrumental limitations we show what can be obtained in practice using actual field data. Here, we demonstrate how the issue of high sensitivity towards instrument pitch can be overcome by including the pitch angle as an inversion parameter and how joint inversion of the Z- and X-components produces virtually the same model result as for the Z-component alone. We conclude that adding helicopter system X-component to a 1D inversion can be used to facilitate higher confidence in the layered result, as the requirements for fitting the data into a 1D model envelope becomes more stringent and the model result thus less prone to misinterpretation.
机译:从历史上看,直升机机载时域EM系统仅测量次级场的Z分量,而固定翼系统通常测量所有场分量。对于后一种系统,X分量通常用于映射离散导体,而在分层设置的映射中却很少使用。使用偏移环直升机系统测量水平X分量会以互补的灵敏度函数探测地球,而该灵敏度函数与Z分量的灵敏度函数完全不同,并且有可能用于在一维建模中提高分层结构的分辨率。由于定量和反转直升机系统的X分量数据并不是一件容易的事,因此在文献中就定量结果而言,这一领域尚未得到充分开发:信号强度低,噪声级高,信号对仪器非常敏感俯仰和灵敏度函数还具有复杂的横向行为。我们的研究基础是一种先进的反演方案,它使用局部一维正向模型描述,结合从扩展SkyTEM系统以测量X分量收集的经验。通过一维灵敏度分析,我们认为,原则上可以通过在一维反演中包含X分量信号来提高分层结构的分辨率,前提是必须采用截止频率适当较低的低通滤波器。在介绍我们修改SkyTEM系统的实践经验时,我们讨论了为什么不幸地在实践中很难满足此先决条件的原因。讨论了仪器的局限性之后,我们展示了使用实际的现场数据可以在实践中获得什么。在这里,我们演示了如何通过将俯仰角作为反演参数来克服对乐器音高的敏感性问题,以及Z和X分量的联合反演如何产生与仅Z分量几乎相同的模型结果。我们得出的结论是,将直升机系统X分量添加到一维反演中可以用来提高分层结果的置信度,因为将数据拟合到一维模型包络中的要求变得更加严格,因此模型结果不易被误解。

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