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Experiments on acoustic measurement of fractured rocks and application of acoustic logging data to evaluation of fractures

机译:裂隙岩石声学测量实验及声波测井资料在裂缝评价中的应用

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Fractures in oil and gas reservoirs have been the topic of many studies and have attracted reservoir research all over the world. Because of the complexities of the fractures, it is difficult to use fractured reservoir core samples to investigate true underground conditions. Due to the diversity of the fracture parameters, the simulation and evaluation of fractured rock in the laboratory setting is also difficult. Previous researchers have typically used a single material, such as resin, to simulate fractures. There has been a great deal of simplifying of the materials and conditions, which has led to disappointing results in application. In the present study, sandstone core samples were selected and sectioned to simulate fractures, and the changes of the compressional and shear waves were measured with the gradual increasing of the fracture width. The effects of the simulated fracture width on the acoustic wave velocity and amplitude were analyzed. Two variables were defined: H represents the amplitude attenuation ratio of the compressional and shear wave, and x represents the transit time difference value of the shear wave and compressional wave divided by the transit time of the compressional wave. The effect of fracture width on these two physical quantities was then analyzed. Finally, the methods of quantitative evaluation for fracture width with H and x were obtained. The experimental results showed that the rock fractures linearly reduced the velocity of the shear and compressional waves. The effect of twin fractures on the compressional velocity was almost equal to that of a single fracture which had the same fracture width as the sum of the twin fractures. At the same time, the existence of fractures led to acoustic wave amplitude attenuations, and the compressional wave attenuation was two times greater than that of the shear wave. In this paper, a method was proposed to calculate the fracture width with x and H , then this was applied to the array acoustic imaging logging data. The application examples showed that the calculated fracture width could be compared with fractures on the electric imaging logs. These rules were applied in the well logs to effectively evaluate the fractures, under the case of no image logs, which had significance to prospecting and development of oil and gas in fractured reservoirs.
机译:油气储层的破裂一直是许多研究的主题,并且吸引了全世界的储层研究。由于裂缝的复杂性,很难使用裂缝的储层岩心样本来研究真实的地下条件。由于裂缝参数的多样性,在实验室环境中对裂缝岩石进行模拟和评估也很困难。以前的研究人员通常使用单一材料(例如树脂)来模拟裂缝。极大地简化了材料和条件,这导致了令人失望的应用结果。在本研究中,选择砂岩岩心样本并对其进行切片以模拟裂缝,并随着裂缝宽度的逐渐增大来测量压缩波和剪切波的变化。分析了模拟裂缝宽度对声波速度和振幅的影响。定义了两个变量:H表示压缩波和剪切波的振幅衰减比,x表示剪切波和压缩波的传播时间差值除以压缩波的传播时间。然后分析了裂缝宽度对这两个物理量的影响。最后,获得了用H和x定量评估裂缝宽度的方法。实验结果表明,岩石裂缝线性降低了剪切波和压缩波的速度。双裂缝对压缩速度的影响几乎等于单裂缝的裂缝宽度与双裂缝的总和相同。同时,裂缝的存在导致了声波幅度的衰减,而压缩波的衰减是剪切波的两倍。本文提出了一种利用x和H计算裂缝宽度的方法,并将其应用于阵列声成像测井数据。应用实例表明,可以将计算出的裂缝宽度与电成像测井上的裂缝进行比较。在没有图像测井的情况下,将这些规则应用到测井中以有效地评价裂缝,这对裂缝性油藏的油气勘探和开发具有重要意义。

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