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Tight gas detection based on the reflectivity dispersion technology

机译:基于反射率色散技术的致密气体检测

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The study focuses on the reflectivity dispersion caused by velocity dispersion related to pore fluid and its application to identify tight gas reservoirs. Seismic attenuation in viscoelastic media has two effects: (1) the change in frequency content and amplitude of a pulse propagating through attenuating media; (2) reflection coefficients are frequency dependent. Based on linear viscoelastic theory of velocity dispersion and the linearization of Zoeppritz equations, a new approximate reflection coefficient is presented considering P & S wave velocity dispersion, which adds the effects of frequencies and quality factors in reflection coefficient formula, representing the characteristics of reflection coefficient dependent by frequency, incident angle, quality factor etc. Based on the relationship between P-wave velocity and gas saturation, the reflected energy changes induced by reflectivity dispersion can be calculated and used to directly detect gas reservoirs, combining with seismic velocity, amplitude and energy attenuation mechanism caused by gas, such as squirt flow mechanism. This method has been successfully applied to characterize the distribution of tight gas sands in the GA101 well area of Sichuan Basin, and the results offer reliable foundations for seismic prospecting and well designing.
机译:该研究的重点是与孔隙流体有关的速度色散引起的反射率色散及其在致密气藏识别中的应用。粘弹性介质中的地震衰减具有两个作用:(1)通过衰减介质传播的脉冲的频率含量和振幅的变化; (2)反射系数与频率有关。基于速度色散的线性粘弹性理论和Zoeppritz方程的线性化,提出了一种新的考虑P&S波速色散的近似反射系数,在反射系数公式中增加了频率和品质因数的影响,代表了反射系数的特征。根据纵波速度与气体饱和度之间的关系,可以计算反射率色散引起的反射能量变化,并将其与地震速度,振幅和气体引起的能量衰减机理,如喷流机理。该方法已成功地用于表征四川盆地GA101井区致密气砂的分布,为地震勘探和井设计提供了可靠的基础。

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