Velocity and Q estimation from the separated upgoing and downgoing wavefields in VSP data

C. Jin, D. Cao, B. Zhou
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Abstract

Summary Quality factor (Q-factor) evaluates the attenuation of seismic wave propagation, playing a fundamental role of reservoir characterization, which can be obtained accurately from Vertical Seismic Profile (VSP). The common methods usually use the downgoing wavefields in VSP data. However, the downgoing wavefields consist of more than 90% energy of the spectrum of the VSP data due to the energy fraction of the upgoing and downgoing wavefields, which makes difficult to estimate the viscoacoustic parameters accurately. Thus, a joint viscoacoustic waveform inversion of velocity and Q-factor is proposed to measure the difference between the separated upgoing and downgoing wavefields in VSP data based on the multi-objective functions. A simple separating step is accomplished by the reflectivity method to obtain the pure individual wavefields in VSP data, and then a joint inversion step is carried out to make full use of the information of the individual wavefields and improve the convergence of viscoacoustic waveform inversion. The sensitivity analysis about the velocity and Q-factor shows that the upgoing and downgoing wavefields contribute differently to the viscoacoustic parameters. Numerical examples and a field test indicate the accuracy and efficiency of the proposed method.
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基于VSP数据上行和下行分离波场的速度和Q估计
摘要质量因子(Q-factor)是评价地震波传播衰减的指标,是储层表征的基础,可以通过垂向地震剖面(VSP)准确获取。常用的方法通常是利用VSP数据中的下行波场。然而,由于上升和下降波场的能量比例,下降波场占VSP数据频谱能量的90%以上,这给准确估计粘声参数带来了困难。为此,提出了一种基于多目标函数的速度和q因子联合粘声波形反演方法,以测量VSP数据中分离的上下波场差异。通过反射率法进行简单的分离步骤,获得VSP数据中纯粹的单个波场,然后进行联合反演步骤,充分利用单个波场信息,提高粘声波形反演的收敛性。对速度和q因子的敏感性分析表明,上下波场对粘声参数的贡献不同。数值算例和现场测试表明了该方法的准确性和有效性。
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