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Understanding the gravity response variability of sedimentary basins using forward stratigraphic modelling

机译:了解沉积盆地的重力响应可变性使用前向地层造型

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摘要

It is accepted that gravity inversions are non-unique and that multiple models will fit the data equally well. Over sedimentary basins, this implies that gravity anomalies can be equally well explained by sedimentary strata with constant densities over a highly heterogeneous basement, or by highly heterogeneous sedimentary strata over a constant density basement. While both scenarios minimise the difference between the predicted and observed gravity signal, neither are geologically plausible. In this work, we explore stratigraphic modelling as a new parameter-isation for gravity models. By using a process-based numerical simulation to generate the sedimentary basins' density models we seek to focus only on geologically plausible models. We then study the variability of the sedimentary strata's gravity response (i.e. the range of possible geophysical signatures) to stratigraphic parameter changes. Results from a study of a 2D section in the Northern Carnarvon basin (the northwest shelf of Australia) emphasize that even when the stratigraphic models are trialled using a wide range of input parameters, the simulated gravity response still has a limited variability when compared to model results generated using other parameterisations. Lastly, our results provide insights into the global sensitivity of the gravity response, highlighting the sedimentary and stratigraphic parameters that most affect the geophysical signal, allowing for a discussion ofthe geologic and stratigraphic controls of the sedimentary basin's gravity response.
机译:它被认为是重心逆向是非唯一的,并且多个模型将同样适合数据。在沉积盆地上,这意味着重力异常可以通过高度异质地下室的沉积地层的沉积地层或通过高度多相沉积地层在恒定密度的基础上进行恒定密度来同样地解释。虽然这两种情况最小化了预测和观察到的重力信号之间的差异,但也不是地质上的符号。在这项工作中,我们将地层建模探索为重力模型的新参数暗示。通过使用基于过程的数值模拟来生成沉积盆的密度模型,我们寻求仅在地质上卓越的模型上专注。然后,我们研究了地层参数变化的沉积地层重力响应的可变性(即可能的地球物理签名的范围)。研究结果来自Carnarvon盆地北部的2D部分(澳大利亚西北部)强调,即使使用广泛的输入参数试验地层模型,与模型相比,模拟重力响应仍然具有有限的变化性使用其他参数生成的结果。最后,我们的结果提供了对重力响应的全局敏感性的见解,突出了大多数影响地球物理信号的沉积和地层参数,允许讨论沉积盆地重力应对的地质和地层控制。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2178-2178|共1页
  • 作者单位

    Deep Earth Imaging FSP CSIRO ARRC Kensington WA 6151 Australia;

    Deep Earth Imaging FSP CSIRO ARRC Kensington WA 6151 Australia;

    Deep Earth Imaging FSP CSIRO ARRC Kensington WA 6151 Australia;

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