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METHOD FOR COMPLEX INFLUENCE ON NEAR-WELLBORE AREA OF PRODUCTIVE FORMATION

机译:复杂影响近井眼面积的生产性形成

摘要

FIELD: petroleum industry.;SUBSTANCE: in the method for complex influence on the near-wellbore area of a productive formation, a well with at least one perforation section located in the area of the productive formation is filled with water or killing fluid, technological composition No. 1 with a density of 1.3 to 1.4 g/cm3 is then supplied via the tubing strings to the bottom of the well, tubing strings are then installed at a height of 20 to 25 m above the upper perforation section followed by technological composition No. 2 with a density of 1.6 to 1.8 g/cm3 being supplied to the well via the tubing strings, the tubing strings are then installed in the perforation area of the well, and technological composition No. 3 constituting an acid solution containing hydrochloric acid at a concentration of 12 to 15% is supplied to the well in the amount of 0.4 to 1.5 m3 per 1 m of the thickness of the productive formation. Technological composition No. 1 contains, wt. % : ammonium nitrate NH4NO3 44.0 to 54.0; sodium hydride NaH 2.8 to 3.2; oxide film-passivated nanoaluminium powder Al 5.6 to 15.6; hydrazine nitrate N2H5NO3 3.0 to 5.0; oxamide nitrate C2O2(NH2)2HNO3 1.0 to 3.0; dihydrooxymethylcarborane C4H16B10O2 (99.9%) 3.0 to 5.0; hydrocarbon fuel 8.0 to 13.0; sodium chloride NaCl and/or potassium chloride KCl 4.5 to 5.5; nitric acid HNO3 7.0 to 9.0; emulsifier 0.5 to 3.0; water 10.0 to 15.0; at a ratio of sodium hydride NaH powder to said nanoaluminium powder Al 1:(2 to 5), respectively. Technological composition No. 2 contains, wt. % : sodium nitrite NaNO2 18.0 to 23.0; hydrocarbon fuel 8.0 to 13.0; urea CO(NH2)2 22.0 to 28.0; 9-BBN dimer C16H30B2 1.0 to 3.0; o-carborane C2B10H12 (99.9%) 3.0 to 6.0; sodium chloride NaCl and/or potassium chloride KCl 4.5 to 5.5; emulsifier 0.5 to 3.0; water 24.0 to 27.0.;EFFECT: complex influence on the near-wellbore area of a productive formation improving filtration and hydrodynamic characteristics of the near-wellbore area, a significant increase in permeability of the formation and flow rate of the well.;1 cl, 3 dwg, 3 ex
机译:田地:石油工业。物质:在近井眼面积对生产性形成的近井筒区域的方法中,与生产成型面积的至少一个穿孔部分的井充满水或杀灭液体,技术然后通过管道串向井的底部提供密度为1.3至1.4g / cm 3 的组成1号,然后将管弦串安装在上面的20到25米的高度。通过管圈向阱供应到井中的密度为1.6至1.8g / cm 3 的技术组合物的上部穿孔部分。然后将管弦串安装在穿孔区域中将含有盐酸浓度为12-15%的盐酸溶液的孔和技术组成3号供应到每1米的0.4-1.5μm 3 的良好量生产性形成的厚度。技术组成1号含有WT。 %:硝酸铵NH 4 NO 3 44.0至54.0;氢化钠Nah 2.8至3.2;氧化物膜钝化纳米铝粉Al 5.6至15.6;氢硝酸肼N 2 H 5 no 3 3.0至5.0;氧酰胺硝酸C 2 O 2 (NH 2 ) 2 hno 3 1.0至3.0;二氢氧氧键甲基氨基硼烷C 4 H 16 B 10 O 2 (99.9%)3.0至5.0;碳氢化合物燃料8.0至13.0;氯化钠NaCl和/或氯化钾KCl 4.5至5.5;硝酸HNO 3 7.0至9.0;乳化剂0.5至3.0;水10.0至15.0;以氢化钠NaH粉末与所述纳米铝粉Al1:(2至5)的比例。技术组成2号含有wt。 %:亚硝酸钠纳米钠 2 18.0至23.0;碳氢化合物燃料8.0至13.0;尿素CO(NH 2 ) 2 22.0至28.0; 9-BBN二聚体C 16 H 30 B 2 1.0至3.0; O-碳硼烷C 2 B 10 H 12 (99.9%)3.0至6.0;氯化钠NaCl和/或氯化钾KCl 4.5至5.5;乳化剂0.5至3.0;水24.0至27.0。;效果:对近井眼近井眼区域的复杂影响改善了近井眼面积的过滤和流体动力学特征,孔的形成和流速的渗透性显着增加。; 1 cl ,3 dwg,3 ex

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