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Features of the fault system and its relationship with migration and accumulation of hydrocarbon in Liaodong Bay

机译:辽东湾断裂系统特征及其与油气运聚的关系

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The fault system of Liaodong Bay developed extensively under the control of the Tanlu Fault. The fault system can be grouped into strike-slip faults of grade I, trunk faults of grade II and branch faults (induced faults) of grade III respectively based on its developmental scale. The faults of grade I and II were deep, early and large while the faults of grade III were shallow, late and small. The formation, evolution and distribution features played a significant role in controlling the migration of oil and gas in both horizontal and vertical directions. The fluid transfer in the fault system occurred in the process of faulting. The strike-slip and trunk faults moved actively forming predominant pathways for oil and gas migration. The branch faults, with weak activity, generally controlled the development of traps and were beneficial for the accumulation and preservation of oil and gas. The faults of grade I and II formed the major migration pathways for oil and gas, but their fault activity rates appeared to vary along their strikes. The zones with a relatively low fault activity rate might be favorable for oil and gas accumulation. When the activities of strike-slip, trunk, and branch faults came to a halt, the fault seal behavior had a vitally important effect on the accumulation of oil and gas. The controlling role of the fault over fluid distribution was further analyzed by calculating the fault activity quantitatively.
机译:辽东湾断裂系统在Tan庐断裂带的控制下得到了广泛的发展。根据其发展规模,该断层系统可分为Ⅰ级走滑断层,Ⅱ级主干断层和Ⅲ级分支断层(诱发断层)。 I级和II级断层为深,早和大,而III级断层为浅,晚和小。形成,演化和分布特征在控制油气在水平和垂直方向上的迁移都起着重要作用。在故障过程中发生了故障系统中的流体传输。走滑和主干断层活动活跃,形成了油气运移的主要途径。活度较弱的分支断层通常控制了圈闭的发育,有利于油气的聚集和保存。 I级和II级断层是油气的主要运移路径,但其断层活动率似乎随其走向而变化。断层活动率相对较低的区域可能有利于油气的聚集。当走滑,主干和分支断层的活动停止时,断层的封闭行为对油气的聚集起着至关重要的作用。通过定量计算断层活动度,进一步分析了断层对流体分布的控制作用。

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