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应用微地震方法进行S9-171井人工裂缝监测 被引量:2
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作者 张予生 魏红革 刘文科 《吐哈油气》 2005年第3期243-244,共2页
裂缝监测是压裂施工过程的一项重要技术。应用微地震方法进行人工裂缝监测,可通过在压裂井周围布置五个微地震观测台,以现场监测并绘制出压裂井裂缝的形态,方位、高度等产状,还可通过区块内多个井点或多次监测结果绘制地层裂缝网络,为... 裂缝监测是压裂施工过程的一项重要技术。应用微地震方法进行人工裂缝监测,可通过在压裂井周围布置五个微地震观测台,以现场监测并绘制出压裂井裂缝的形态,方位、高度等产状,还可通过区块内多个井点或多次监测结果绘制地层裂缝网络,为井间调整提供较为可靠的技术依据。文章以人工监测理论为基础,介绍了S9-171井人工裂缝监测结果,分析了实际监测结果与理论产生偏差的原因。 展开更多
关键词 压裂施工 裂缝监测 微地震方法 人工监测 地震勘探
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Sedimentary microfacies of the H8 member in the Su14 3D seismic test area
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作者 Zhang Yuqing Wang Zhizhang 《Mining Science and Technology》 EI CAS 2011年第2期233-237,共5页
The distribution of sedimentary microfacies in the eighth member of the Shihezi formation(the H8 member) in the Sul4 3D seismic test area was investigated.A Support Vector Machine(SVM) model was introduced for the... The distribution of sedimentary microfacies in the eighth member of the Shihezi formation(the H8 member) in the Sul4 3D seismic test area was investigated.A Support Vector Machine(SVM) model was introduced for the first time as a way of predicting sandstone thickness in the study area.The model was constructed by analysis and optimization of measured seismic attributes.The distribution of the sedimentary microfacies in the study area was determined from predicted sandstone thickness and an analysis of sedimentary characteristics of the area.The results indicate that sandstone thickness predictions in the study area using an SVM method are good.The distribution of the sedimentary microfacies in the study area has been depicted at a fine scale. 展开更多
关键词 SVM Seismic attribute Sandstone thickness Sedimentary microfacies 3D seismic test area
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