Steam Chamber Description Using Seismic and Production Data

Weisheng He, Yan Wang, Huifeng Wang, Yongjun Wang, Tingting Pan, Z. Deng
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引用次数: 1

Abstract

A heavy oil field is developed with the Steam Assisted Gravity Drainage (SAGD). Since the start of oil production, the oil production amount of the studied reservoir has been lower than that of the surrounding oil fields. The development of the steam chambers are relatively poor, and the spatial distribution of the steam chambers is not clear. In order to describe the shape of the steam chambers accurately, a novel method of monitoring the steam chambers is proposed by using broadband, high-density seismic data and dynamic production data. Broadband, high-density seismic data are acquired. Firstly, seismic horizons are well interpreted, and multiple seismic attributes are analyzed in combination with well data to understand the seismic response of the steam chambers. Then, several seismic inversion methods are tried to obtain high-resolution impedance, and they are compared with each other to find optimal inversion result for steam chamber prediction. Finally, the shape of the steam chambers are delineated with seismic attributes, inverted impedance, production data, and temperature logs of observation wells. The predicted steam chamber has good agreement with the temperature logs of observation wells. The result shows that the appearance of steam chambers has an obvious impact on seismic signals, and broadband, high-density seismic data make great contributions to the description of the steam chambers. The proposed method reduces the uncertainty in steam chamber prediction with single data source, and is applicable to other oilfields using steam injection.
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利用地震和生产资料描述蒸汽室
采用蒸汽辅助重力泄油(SAGD)技术开发稠油油田。该油藏自投产以来,产油量一直低于周边油田。蒸汽室的发展相对较差,蒸汽室的空间分布不清楚。为了准确地描述蒸汽室的形状,提出了一种利用宽带、高密度地震资料和动态生产资料监测蒸汽室的新方法。获取宽带、高密度地震数据。首先,对地震层位进行解释,结合井资料分析多种地震属性,了解蒸汽室的地震响应;然后,尝试几种地震反演方法获得高分辨率阻抗,并对其进行比较,寻找蒸汽室预测的最佳反演结果。最后,利用地震属性、反演阻抗、生产数据和观测井的温度测井曲线圈定了蒸汽室的形状。预测的蒸汽室与观测井温度测井曲线吻合较好。结果表明,蒸汽室的出现对地震信号有明显的影响,宽带、高密度的地震资料对蒸汽室的描述有很大贡献。该方法降低了单一数据源下蒸汽室预测的不确定性,适用于其他注汽油田。
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