首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >The effects of organic carbon content and thermal maturity on acoustic parameters in a black shale: Woodford Shale, Permian Basin, West Texas
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The effects of organic carbon content and thermal maturity on acoustic parameters in a black shale: Woodford Shale, Permian Basin, West Texas

机译:有机碳含量和热成熟度对黑页岩中声学参数的影响:Woodian Basin,West Texas

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We have derived relationships between organic carbon and acoustic properties in the Woodford Shale, an Upper Devonian organic-rich shale in the Permian Basin, Texas. Extensive core data enable us to relate measured total organic carbon (TOC) on core samples to gamma log response; in turn, gamma logcalculated TOC is compared with P-wave V-P and S-wave V-S velocities, density, and derivative properties including V-P/V-S, Young's modulus, Poisson's ratio, mu, and lambda. Because we sampled two wells at very different thermal maturity (early oil window and wet gas window), we can examine the effect of thermal maturity on these parameters. In both wells, V-P and V-S decrease with increasing TOC, exhibiting a rapid decrease from 0% to approximately 1.5% TOC, and a slower decrease above 1.5% TOC, similar to results from ultrasonic experiments on core samples, that we attribute to a shift from a mineral grain load-bearing to an organic matter load-bearing fabric. The V-P decreases by 28% and V-S by 20% over the range of 0.5%-12% TOC. V-P and V-S correlate more strongly to neutron porosity than to TOC in the less mature well, related to the development of a bitumen phase that is relatively soft and less dense and has greater impact on rock physical properties than kerogen; this effect disappears in the highmaturity well in which bitumen was further cracked to petroleum and physical properties of bitumen changed with increased aromatization. The effect of increased thermal maturity is to increase V-P by approximately 12%, V-S by 25%, and P-wave impedance by 12%. V-P/V-S ratios decrease with increasing TOC, contrary to the behavior expected for the incorporation of a soft material into a rock. We suggest that the rock develops a horizontal planar fabric at lower TOC values that absorbs S-wave energy, counteracting the effect of the organic matter.
机译:我们在德克萨斯州二叠纪盆地的上德文郡有机富有的页岩中的有机碳和声学性质之间的关系。广泛的核心数据使我们能够将测量的总有机碳(TOC)与核心样本相关联到伽马日志响应;反过来,将伽马LogCalculated TOC与P波V-P和S波V-S速度,密度和衍生物特性进行比较,包括V-P / V-S,杨氏模量,泊松比,MU和Lambda。因为我们在非常不同的热成熟度(早水窗口和湿气体窗口)上采样了两个井,所以我们可以检查热成熟度对这些参数的影响。在两个孔中,VP和Vs随着TOC的增加而降低,表现出0%至约1.5%TOC的快速降低,并且较慢降低1.5%TOC,类似于超声波实验对核心样本的结果,我们将其归因于转变从矿物颗粒承载到有机物质承载织物。 V-P在0.5%-12%TOC的范围内降低28%和V-S。 V-P和V-S更强烈地与中子孔隙率更强烈地与TOC在较小的成熟孔中,与沥青相的发育相对柔软,致密的沥青相且对岩石物理性质产生更大的影响;这种效果在高疟原井中消失,其中沥青进一步破裂到石油和沥青的物理性质随着芳烃化增加而变化。热成熟度增加的效果是将V-P升高约12%,V-S递增25%,P波阻抗12%。 V-P / V-S比随着TOC的增加而降低,与预期的行为相反,将软材料掺入岩石中。我们建议岩石在吸收S波能量的下部TOC值下在较低的TOC值下开发水平平面织物,抵消了有机物质的效果。

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