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Optimizing productivity in oil rims: simulation studies on horizontal well placement under simultaneous oil and gas production

机译:优化油轮辋生产力:同时油气生产下水平井放置的仿真研究

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Thin oil rim reservoirs are predominantly those with pay thickness of less than 100?ft. Oil production challenges arise due to the nature of the gas cap and aquifer in such reservoirs and well placement with respect to the fluid contacts. Case studies of oil rim reservoir and operational properties from the Niger-Delta region are used to build classic synthetic oil rim models with different reservoir parameters using a design of experiment. The black oil simulation model of the ECLIPSE software is activated with additional reservoir properties and subsequently initialized to estimate initial oil and gas in place. To optimize hydrocarbon production, 2 horizontal wells are initiated, each to concurrently produce oil and gas. Well placements of (0.5?ft., 0.25?ft. and 0.75?ft.) are made with respect to the pay thickness and then to the fluid contacts. The results show that for oil rim with bigger aquifers, an oil recovery of 8.3% is expected when horizontal wells are placed at 0.75?ft. of the pay thickness away from the gas oil contact, 8.1% oil recovery in oil rims with larger gas caps with completions at 0.75?ft. of the pay zone from the gas oil contacts, 6% oil recovery with relatively small gas caps and aquifer and 9.3% from oil rims with large gas caps and aquifers, with completions at mid-stream of the pay zone.
机译:薄的油轮辋储层主要是那些厚度小于100?FT的储层。由于储存器中的气帽和含水层的性质以及相对于流体接触的井放置,因此出现石油生产挑战。尼日尔 - 三角洲地区的石油轮辋储层和操作性质的案例研究用于使用实验设计建立具有不同储层参数的经典合成油轮辋模型。 Eclipse软件的黑色油仿真模型用额外的储层性能激活,随后初始化以估计初始油和天然气。为了优化烃生产,启动2个水平孔,每个水平孔同时产生油和气体。井上的展示位置(0.5?ft。,0.25°Ft。和0.75×ft。)由支付厚度进行,然后对流体触点进行。结果表明,对于具有更大含水层的油轮辋,当水平孔放置在0.75英尺处时,预计将预期8.3%的石油回收率。远离煤气电压的支付厚度,油轮辋中的8.1%的油回收,较大的气体帽,完成0.75°Ft。从瓦斯油触点的支付区域,含有相对小的气体帽和含水层的6%的油回收率,含有大型气体盖和含水层的油轮辋9.3%,完成在工资区中游的完井。

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