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首页> 外文期刊>Journal of Seismic Exploration >JOINT INVERSION OF SEISMIC TRAVELTIMES ANDGRAVITY DATA ON THE MICANG FORELAND FOLD BELT AND ITS HYDROCARBON POTENTIAL
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JOINT INVERSION OF SEISMIC TRAVELTIMES ANDGRAVITY DATA ON THE MICANG FORELAND FOLD BELT AND ITS HYDROCARBON POTENTIAL

机译:米康前陆褶皱带及其油气潜力的地震时程和重力数据联合反演

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摘要

The Micang foreland fold belt is a transitional zone between the Qinling orogen and Sichuan Basin. Affected by multi-stage tectonic processes and complicated driving forces, the Micang foreland fold belt can not be successfully traced in the seismic sections, due to its complex geological structures. We present a detailed 2D density and velocity transects for the upper crust across the Micang foreland belt using a joint seismic reflection and gravity inversion technique. We use a weighted least square scheme to simultaneously invert the density and velocity. This technique parameterizes the crust as a set of layers that are based on published geologic and seismic models. Each layer has a uniform density and velocity that are constrained where possible by borehole measurements, seismic velocities, and petrologic data. Then the joint inversion of travel time and gravity data is performed to find out a common model having an optimum fit of both travel time and gravity data. Since the global misfit is the addition of the contribution of the two methods, we add a weighting factor in the objective function to better coordinate these two different kinds of data. After being tested with a multi-layered model, the joint inversion scheme is adopted for the Micang foreland belt to construct a more complete upper crustal image. We finally discuss the presence of the overthrusted structure in terms of interaction between the Qinling orogen and Sichuan Basin.
机译:米仓前陆褶皱带是秦岭造山带与四川盆地之间的过渡带。受多阶段构造过程和复杂驱动力的影响,米仓前陆褶皱带由于其复杂的地质构造而无法在地震剖面上成功追踪。我们使用联合地震反射和重力反演技术,给出了米仓前陆带上地壳的详细二维密度和速度剖面。我们使用加权最小二乘方案同时反转密度和速度。该技术将地壳参数化为基于已发布的地质和地震模型的一组图层。每层具有均匀的密度和速度,在可能的情况下,这些密度和速度会受到井眼测量,地震速度和岩石学数据的限制。然后,对行进时间和重力数据进行联合反演,以找出同时具有行进时间和重力数据的最佳拟合的通用模型。由于全局失配是这两种方法的总和,因此我们在目标函数中添加了一个加权因子,以更好地协调这两种不同类型的数据。经过多层模型测试后,米仓前陆带采用联合反演方案,构造出更完整的上地壳图像。最后,根据秦岭造山带与四川盆地之间的相互作用,讨论了逆冲构造的存在。

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