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Anisotropic Depth Velocity Model Estimation Above the Receiver Array in Walkaway and 3D VSP Data

机译:步行和3D VSP数据中接收器阵列上方的各向异性深度速度模型估计

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This paper presents a new method for interval VTI anisotropic parameter estimation from walkaway VSP data. The method utilizes duplex downgoing multiples (multiples with two reflections: from the boundary and free surface) for estimation of a layered depth velocity model above the borehole receiver array. A three-term NMO approximation function is used to estimate NMO velocity and a non-hyperbolic parameter. Assuming that the interval vertical velocity is known from zero-offset VSP data, Dix-type inversion is applied to the three parameters to invert them to interval Thomsen anisotropic parameters ε, δ above the receivers. Modeling results show reasonable accuracy for the interval Thomsen parameter estimates above the VSP receiver array. For 3D or multi-azimuthal walkaway survey, this approach is generalized for a model with horizontal homogeneous orthorhombic layers.
机译:本文提出了一种新方法,用于WALKAWAY VSP数据的间隔VTI各向异性参数估计。该方法利用双工衰退倍数(具有两个反射的倍数:来自边界和自由表面),用于估计钻孔接收器阵列上方的分层深度速度模型。三术语NMO近似函数用于估计NMO速度和非双曲线参数。假设从零偏移VSP数据中已知间隔垂直速度,将DIX型反转应用于三个参数以将它们倒置为间隔Thomsen各向异性参数ε,Δ在接收器上方。建模结果显示VSP接收器阵列上方的间隔Thomsen参数估计的合理精度。对于3D或多方位角的人行道调查,这种方法是针对具有水平均匀正交层的模型推广。

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