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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Enhanced foam stability by adding comb polymer gel for in-depth profile control in high temperature reservoirs
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Enhanced foam stability by adding comb polymer gel for in-depth profile control in high temperature reservoirs

机译:通过添加梳状聚合物凝胶增强泡沫稳定性,以进行高温储层的深度剖面控制

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A long-term stability of gel enhanced foam as an in-depth profile control agent in high temperature reservoirs was successfully prepared by adding comb polymer gel. The increased viscosity of gel brings a negative effect on surface tension which reduces the gel enhanced foam volume. In turn, the increased viscosity could enhance the thickness and strength of foam film which increases foam stability and plugging capacity in porous media. The morphology results show that the gel enhanced foam has a thicker bubble film which enhances its foam stability. The effect of injection mode, gas-liquid ratio, gas injection velocity and formation permeability on the plugging capacity was investigated by single sand-pack experiments. When the gas-liquid ratio and gas injection velocity were respectively set at 1: 1 and 0.5 ml/min, co-injection of gel enhanced foaming solution and gas could obtain a better plugging capacity in high permeability sand-packs. Parallel sand-pack experiments show that the profile improvement capacity of high formation permeability ratio is much better than that of low formation permeability ratio. The visual simulation experiment was also conducted to illustrate the flowing behavior of gel enhanced foam. By Jiamin effect or Jamin superimposed effect, directly plugging and bridging in the large pore space, the gel enhanced foam can effectively reduce the permeability of porous media in high permeability zones and divert fluid into low permeability zones, thus increases the swept volume. The treatment has been successfully used in Henan oilfield of China which provides a reference to water production control in other similar high temperature oilfields. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过添加梳型聚合物凝胶,成功制备了凝胶增强泡沫作为深度储层控制剂在高温储层中的长期稳定性。凝胶粘度的增加对表面张力产生负面影响,从而降低了凝胶增强的泡沫体积。反过来,增加的粘度可以增加泡沫膜的厚度和强度,从而增加泡沫稳定性和在多孔介质中的堵塞能力。形态学结果表明,凝胶增强的泡沫具有较厚的气泡膜,从而增强了其泡沫稳定性。通过单次充填实验研究了注入方式,气液比,注气速度和地层渗透率对堵漏能力的影响。当气液比和气体注入速度分别设置为1:1和0.5 ml / min时,凝胶注入的泡沫增强液和气体可以在高渗透性沙包中获得更好的堵漏能力。并行沙堆实验表明,高地层渗透率比低地层渗透率的剖面改善能力要好得多。还进行了视觉模拟实验以说明凝胶增强泡沫的流动行为。通过加敏效应或贾明叠加效应,直接在大孔隙空间中堵塞和桥接,凝胶增强泡沫可以有效降低高渗透率区域中多孔介质的渗透率,并将流体转移到低渗透率区域,从而增加扫掠体积。该处理已在中国河南油田成功使用,为其他类似高温油田的水生产控制提供了参考。 (C)2015 Elsevier B.V.保留所有权利。

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