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Experimental and Pilot Tests of Deep Profile Control by Injecting Small Slug-Size Nano-Microsphere in Offshore Oil Fields

机译:通过在海上油田注入小块状纳米微球体进行深剖面控制的实验和试验性测试

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In order to test the effectiveness and efficiency of nano-microspheres which can be used to effectively reduce water cut with a small slug size, a series of experimental tests have been conducted to evaluate the performance of nano-microspheres and factors affecting the performance. Those tests include hydration swelling characteristics, blocking and migration characteristics, salt resistance, shear resistance and so on. Based on the experimental study, detailed pilot test design were conducted by considering the different reservoir pore structures and microsphere sizes used for oil displacement, so that the slug size is minimized while the net revenue is maximized. Since 2009, deep profile control technology by injecting small slug-size nano-microsphere has been developed in offshore oilfields in Bohai Sea. The main mechanism of nano-microsphere is different from the traditional approaches which increase the water phase viscosity to improve mobility ratio. In nano-microsphere deep profile control technology, nano/micron level microspheres were dispersed in the water phase. Along with the water injected into formation, microspheres swell under the formation condition, plug the water channels, reduce the permeability of high permeable zone, dynamically change the water flow paths, thus increase the water sweeping efficiency. Since 2009, a total of 17 well patterns have implemented in QHD. BZ28, BZ29 oilfields in Bohai Sea. In all those tests, small slug sizes in the range from 0.01 to 0.02 PV were used. Water cut is reduced from 80% to 70% and cumulative oil production was increased by 13.1 × 10~6m~3. The economic evaluation suggests that for every one dollar investment on this technology. 3.1 dollar can be made even when the oil price is $30 per barrel. So the project has a good technical and economic outcome even in extreme low oil prices.
机译:为了测试可用于有效减少小团块尺寸的含水率的纳米微球的有效性和效率,已经进行了一系列实验测试以评估纳米微球的性能和影响性能的因素。这些测试包括水合膨胀特性,结块和迁移特性,耐盐性,抗剪切性等。在实验研究的基础上,考虑了用于驱油的不同储层孔隙结构和微球尺寸,进行了详细的中试测试设计,以使团块尺寸最小化,而净收益最大化。自2009年以来,在渤海海上油田开发了通过注入小块状纳米微球体的深剖面控制技术。纳米微球的主要机理与传统方法不同,传统方法增加水相粘度以提高迁移率。在纳米微球深剖面控制技术中,纳米/微米级微球分散在水相中。随着注入地层中的水,微球在地层条件下膨胀,堵塞水通道,降低高渗透区的渗透性,动态改变水的流动路径,从而提高了水的清扫效率。自2009年以来,QHD共实施了17口井模式。渤海的BZ28,BZ29油田。在所有这些测试中,均使用了0.01至0.02 PV范围内的小块料。含水率从80%降低到70%,累计产油量增加了13.1×10〜6m〜3。经济评估表明,在这项技术上每投资1美元,就会产生一次经济增长。即使油价为每桶30美元,也可以赚到3.1美元。因此,即使在极低的油价下,该项目也具有良好的技术和经济效果。

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