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首页> 外文期刊>Petroleum science >Hierarchy and subsurface correlation of muddy baffles in lacustrine delta fronts: a case study in the X Oilfield, Subei Basin, China
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Hierarchy and subsurface correlation of muddy baffles in lacustrine delta fronts: a case study in the X Oilfield, Subei Basin, China

机译:湖三角洲前缘泥泞挡板的层级与地下相关性:以苏北盆地X油田为例

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摘要

Muddy baffles are one of the major geological factors controlling the underground fluid flow as well as the remaining oil distribution. This study used detailed drilling data from the E~(1) f ~(1)reservoir in the X Oilfield, Subei Basin, China, to investigate the hierarchical muddy baffles developed on lacustrine delta fronts and their precise cross-well correlation. According to the theories on allogenic and autogenic cycles as well as the genesis and scales of muddy baffles, five orders of muddy baffles were classified, which provided various degrees of difficulty when attempting interwell correlation. Under the guidance of a reliable stratigraphic model, the precise cross-well correlation of muddy baffles could be achieved and the key point of establishment of this stratigraphic model was to calculate foreset angles of hierarchical muddy baffles during deposition. During calculation, the relationships between sediment flow direction, higher-order strata dipping direction, well types and well trajectory direction should all be taken into consideration and some other angles (referred to here as θ ~(1), θ ~(2)and θ ~(3)) should also be measured. Such new methods of cross-well correlation for hierarchical muddy baffles could greatly reduce the uncertainties and multiple solutions, which in turn would be significant for efficient development and oil recovery enhancement in the reservoirs.
机译:泥泞的挡板是控制地下流体流动以及剩余油分布的主要地质因素之一。这项研究使用了来自中国苏北盆地X油田E〜(1)f〜(1)油藏的详细钻探数据,研究了湖三角洲前缘发育的分层泥质挡板及其精确的井间相关性。根据同种异体和自体周期的理论以及泥泞挡板的成因和规模,分类了五个等级的泥泞挡板,这在尝试井间相关时提供了不同程度的难度。在可靠的地层模型的指导下,可以实现泥浆挡板的精确井间相关性,建立该地层模型的关键是计算沉积过程中分层泥浆挡板的前倾角。计算时,应考虑泥沙流向,高阶地层倾覆方向,井类和井眼轨迹方向之间的关系以及其他一些角度(此处称为θ〜(1),θ〜(2)和θ〜(3))也应测量。这种用于分层泥浆挡板的井间相关新方法可以大大减少不确定性和多种解决方案,这反过来对于有效开发和提高油藏的采收率具有重要意义。

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