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首页> 外文期刊>Advances in Petroleum Exploration and Development >The Research and Application of New Low Density Nitrogen Micro Bubble Workover Fluid
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The Research and Application of New Low Density Nitrogen Micro Bubble Workover Fluid

机译:新型低密度氮气微泡修井液的研究与应用

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摘要

Aiming at the need of coiled tubing sand washing operation for the low-pressure and leaking gas pool in Qinghai gas reservoir, we developed a kind of low density nitrogen micro bubble workover fluid technology, which is composed of a new type of composite foaming agent, temporary plugging agent, composite stabilizing foam agent and the nitrogen. Observing by a microscope, we can find that the micro bubble structure is composed of a core of gas, two membranes, three layers, which has high stability (higher stability than ordinary foam stability). The performance evaluation results show that, the temperature resistance of nitrogen micro bubble workover fluid is up to 120 °C. Compression resistance can reach 20 Mpa. API filter loss is only 11.3 ml. The high temperature and high pressure filtration is only 16.6 ml. Anti-salt can reach 10%. Anti-calcium can reach 3% and the resistance to oil pollution is more than 15%. The recovery rate of core permeability is up to 89%. The system can not only reduce the fluid column pressure and reduce the pressure difference, but the formation of micro bubble in the leakage areas on the surface of formation is widespread, and has a certain strength and toughness, and also has a certain deformability matching leakage channel of formation, which can achieve the purpose of anti-leaking. This technology was applied in Qinghai gas field for 2 wells, with an efficiency of 100%. The sand washing operation was successfully completed, with no leakage.
机译:针对青海气藏低压泄漏气藏的连续油管洗砂作业,我们开发了一种由新型复合发泡剂组成的低密度氮气微泡修井液技术。临时堵漏剂,复合稳定剂和氮气。通过显微镜观察,我们发现微气泡结构由一个气体核心,两个膜,三层组成,具有很高的稳定性(比普通泡沫稳定性更高的稳定性)。性能评价结果表明,氮气微泡修井液的耐温性可达120℃。抗压强度可达到20 Mpa。 API过滤器损失仅为11.3 ml。高温高压过滤仅16.6毫升。抗盐可以达到10%。抗钙可达到3%,抗油污能力超过15%。岩心渗透率的回收率高达89%。该系统不仅可以降低液柱压力,减小压差,而且在地层表面的渗漏区形成微气泡,分布广泛,具有一定的强度和韧性,还具有一定的变形性,可与渗漏相匹配。形成通道,可以达到防漏的目的。该技术已在青海气田应用了2口井,效率达100%。洗砂操作成功完成,没有泄漏。

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