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The impact of geological uncertainty on primary production from a fluvial reservoir

机译:地质不确定性对河流相储层初生的影响

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Deposition of fluvial sandbodies is controlled mainly by characteristics of the system, such as the rate of avulsion and aggradation of the fluvial channels and their geometry. The impact and the interaction of these parameters have not received adequate attention. In this paper, the impact of geological uncertainty resulting from the interpretation of the fluvial geometry, maximum depth of channels, and their avulsion rates on primary production is studied for fluvial reservoirs. Several meandering reservoirs were generated using a process-mimicking package by varying several controlling factors. Simulation results indicate that geometrical parameters of the fluvial channels impact cumulative production during primary production more significantly than their avulsion rate. The most significant factor appears to be the maximum depth of fluvial channels. The overall net-to-gross ratio is closely correlated with the cumulative oil production of the field, but cumulative production values for individual wells do not appear to be correlated with the local net-to-gross ratio calculated in the vicinity of each well. Connectedness of the sandbodies to each well, defined based on the minimum time-of-flight from each block to the well, appears to be a more reliable indicator of well-scale production.
机译:河流砂体的沉积主要受系统特征的控制,例如河流河道的侵蚀速度和凝集速度及其几何形状。这些参数的影响和相互作用尚未得到足够的重视。本文研究了河流储层的河流几何学解释,河道最大深度及其破坏速率对原始储层的解释对地质不确定性的影响。使用过程模拟程序包通过改变几个控制因素来生成几个曲折的储层。仿真结果表明,河道的几何参数对初级生产期间的累积产量的影响比其破坏率更为显着。最重要的因素似乎是河流通道的最大深度。总体净毛比与该油田的累计产油量密切相关,但单个井的累积产值似乎与在每口井附近计算的局部净毛比不相关。根据从每个区块到井的最短飞行时间定义,沙体与每个井的连通性似乎是井规模生产的更可靠指标。

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