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首页> 外文期刊>Journal of Applied Geophysics >Detection of gas and water using HHT by analyzing P- and S-wave attenuation in tight sandstone gas reservoirs
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Detection of gas and water using HHT by analyzing P- and S-wave attenuation in tight sandstone gas reservoirs

机译:通过分析致密砂岩气藏中的P和S波衰减,使用HHT检测天然气和水

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A direct detection of hydrocarbons is used by connecting increased attenuation of seismic waves with oil and gas fields. This study analyzes the seismic attenuation of P- and S-waves in one tight sandstone gas reservoir and attempts to give the quantitative distinguishing results of gas and water by the characteristics of the seismic attenuation of P- and S-waves. The Hilbert-Huang Transform (HHT) is used to better measure attenuation associated with gas saturation. A formation absorption section is defined to compute the values of attenuation using the common frequency sections obtained by the HHT method. Values of attenuation have been extracted from three seismic sections intersecting three different wells: one gas-saturated well, one fully water-saturated well, and one gas- and water- saturated well. For the seismic data from the Sulige gas field located in northwest Ordos Basin, China, we observed that in the gas-saturated media the S-wave attenuation was very low and much lower than the P-wave attenuation. In the fully water-saturated media the S-wave attenuation was higher than the P-wave attenuation. We suggest that the joint application of P- and S-wave attenuation can improve the direct detection between gas and water in seismic sections. This study is hoped to be useful in seismic exploration as an aid for distinguishing gas and water from gas- and water-bearing formations.
机译:通过将地震波的增加衰减与油气田联系起来,可以直接检测碳氢化合物。本研究分析了一个致密砂岩气藏中P波和S波的地震衰减,并试图通过P波和S波的地震衰减特性给出定量区分水和天然气的结果。希尔伯特-黄变换(HHT)用于更好地测量与气体饱和度相关的衰减。定义地层吸收段,以使用通过HHT方法获得的公共频率段来计算衰减值。已从与三个不同井相交的三个地震剖面中提取了衰减值:一口气饱和井,一口水完全饱和井和一口气及水饱和井。对于位于中国鄂尔多斯盆地西北部苏里格气田的地震数据,我们观察到在饱和气体介质中,S波衰减非常低,远低于P波衰减。在完全水饱和的介质中,S波衰减高于P波衰减。我们建议,联合使用P波和S波衰减可以改善地震剖面中天然气和水之间的直接检测。希望这项研究可用于地震勘探,以帮助区分含气层和含水层中的天然气和水。

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