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Steam injection in oil reservoirs with bottom water zone

机译:在底部水区的油藏中注入蒸汽

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3-D scaled model was used to study the performance of steam injection in reservoirs having a bottom water zone with the application of different well configurations. 3-D laboratory model was designed to represent 1/4th of a 5-spot pattern in the B. Kozluca field in Turkey. Four experiments were conducted with the rectangular model with or without bottom water zone. The well configurations were changed during the course of experiments to determine their effects on oil recovery. Bottom water thicknesses were changed to see the effects on oil recovery. The physical properties of crushed limestone and crude oil mixture were kept constant during the experiments. Steam was injected through a vertical injection well in the model. Strings of thermocouples were used to observe 3-D temperature distribution. The maximum oil recovery was obtained by placing the horizontal producer along the diagonal of the rectangular model. Vertical injection-horizontal production well configuration provided better oil recovery than other well configuration even in the presence of a bottom water zone. Oil recoveries decreased with an increase in the thickness of the bottom water zone. Steam-oil ratio (SOR) increased in the presence of bottom water zone.
机译:使用3-D比例模型,通过应用不同的井眼配置,研究具有底部水带的储层中的蒸汽注入性能。设计了3-D实验室模型,以表示土耳其B. Kozluca油田中5点模式的1/4。使用带有或不带有底部水域的矩形模型进行了四个实验。在实验过程中改变了井的配置,以确定它们对采油率的影响。更改了底部水的厚度,以查看对采油率的影响。在实验过程中,压碎的石灰石和原油混合物的物理性能保持恒定。通过模型中的垂直注入井注入蒸汽。使用热电偶串观察3-D温度分布。通过沿矩形模型的对角线放置水平生产井可获得最大的采油量。垂直注入水平生产井配置即使在存在底部水层的情况下也能提供比其他井配置更好的采油率。随着底部水层厚度的增加,采油量下降。在存在底水区的情况下,蒸汽油比(SOR)增加。

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