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Gel Treatments Pilot Test in Conventional Heavy Oil Reservoirs of China Offshore Oil Field

机译:凝胶治疗中国海上油田传统重油储层试验试验试验试验

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More than 80% oil resources were heavy oil in Bohai Bay of China. Generally, we used water flooding in the reservoirs with the viscosity less than 400cp. But there were many challenges during water injection in conventional heavy oil reservoirs because high oil- water viscosity ratio lead quick breakthrough of injecting water. And with the oil-water viscosity ratio increasing, the breakthrough of injecting water became more serious. In order to solve these problems, the gel treatments on the injection wells pilot test were conducted in x oilfield during the year 2009 to 2011. Before pilot test, laboratory study under field conditions was conducted to determine the chemical parameters of the gel. We also did numerical simulation study with CMG. A range of variation of critical parameters was evaluated in the simulation for understanding the gelation process undergroud. The model was used to predict the reservoir response under different chemical parameters. Results from simulation showed that water cut reduction ranged from 15.9 to 36.6% which matched the trends observed in wells. On the other hand, dynamic method was also used to evaluate the gel pilot test. The Hall curve analysis was used to evaluate the effectiveness of the injection well and to calculate the resistance factor (RF) & residual resistance factor (RRF) (RF from 1.82 to 6.88, and RRF from 1.29 to 7.97). The decline curve analysis was used to obtain net incremental oil by gel injection treatment. Results from two well patterns conducted gel pilot test in 2009 indicated that water cut reduction ranged from 3.2 to 36.8% and average oil production increases 15.7m3/d. Based on results, another two wells in 2010 and two wells in 2011 were conducted, and we received good effectiveness by gel treatments. The pilot test & evaluation technology provide the foundation for promoting application of techniques to stabilize oil rate and control water production in conventional heavy oil reservoirs of China offshore oilfield.
机译:超过80%的石油资源在中国渤海湾的重油。通常,我们在储存器中使用了水淹没,粘度小于400cp。但在传统的重油箱中注水期间存在许多挑战,因为高油水粘度比引起了注入水的快速突破。随着油水粘度比增加,注射水的突破变得更加严重。为了解决这些问题,在2009年至2011年期间,在X油田进行注射井试验试验试验试验的凝胶处理。在试验试验之前,进行了实验室条件下的实验室研究以确定凝胶的化学参数。我们还使用CMG进行了数值模拟研究。在模拟中评估了临界参数的一系列变化,以了解凝胶化过程介绍。该模型用于预测不同化学参数下的储层响应。仿真结果表明,减少水减少的约为井观察到的趋势的15.9%至36.6%。另一方面,动态方法也用于评估凝胶试验试验。霍尔曲线分析用于评估注射孔的有效性,并计算电阻因子(RF)和残留电阻因子(RRF)(RF为1.82至6.88,RRF为1.29至7.97)。下降曲线分析用于通过凝胶注射处理获得净增量油。两种井图案的结果在2009年进行了凝胶试验试验表明,减少水减少的范围从3.2%到36.8%,平均油产量增加了15.7m 3 / d。根据结果​​,2010年另外两头井和2011年的两头井进行了进行,我们通过凝胶治疗获得了良好的效果。试点测试和评估技术为促进技术应用促进稳定油速和控制水资源生产的基础,在近海油田中稳定油速和控制水产。

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