首页> 外文会议>SEG Houston 2013 >Estimation of depth to top of magnetic sources using the local wavenumber approach in an area of shallow Moho and Curie depth - the Red Sea
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Estimation of depth to top of magnetic sources using the local wavenumber approach in an area of shallow Moho and Curie depth - the Red Sea

机译:利用局部波数法在浅层浅层和居里深度 - 红海估计磁力源的深度估计 - 红海

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Estimation of depth to the top of magnetic sources from magnetic anomaly data using various techniques is in common use by geophysicists. Many of the simple models used for this purpose assume that the base of the magnetic body is at infinity. Recent publications have shown that this 'infinite depth' assumption causes underestimation of the depth to the top of sources, especially in areas where the bottom of the magnetic layer is shallow, as would occur in high heat-flow regions. This error has been demonstrated in both model studies and using real data with seismic or well control. Local wavenumber is one method of depth estimation based on the spectral content of single anomalies. Here we present a modification to the local wavenumber approach to estimate depth to magnetic sources in areas of shallow Curie temperature and apply it to an example from the central Red Sea where the Curie isotherm and Moho are shallow.
机译:使用各种技术估计来自磁异常数据的磁性源顶部的深度是地球物理学家的常见用途。用于此目的的许多简单模型假设磁体的底部是无穷大的。最近的出版物表明,这种“无限深度”的假设导致低估到源顶部的深度,尤其是在磁性层底部浅的区域中,如在高热流区域中发生。这两个错误都在模型研究中展示并使用具有地震或良好控制的真实数据。本地波浪是基于单个异常的光谱含量的一种深度估计方法。在这里,我们对局部波数的方法提出了对浅居里温度区域的磁源深度的修改,并将其应用于来自中央红海的示例,其中居里等温线和Moho是浅的。

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