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Effects of Erosion on TP140 Casing Strength Due to Sandblasting During Sleeve Hydraulic Fracturing in Keshen Tight Gas Reservoir

机译:KELEN LING燃气储层套管液压压裂时喷砂引起的TP140套管强度侵蚀的影响

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Keshen Gas Field is part of Kuqa Foreland thrust belt,located in northern margin of the Tarim basin,West China.It has extreme reservoir conditions of ultra-deep(6500-8000m),high temperature(170-190°C),high pressure(110-120MPa).Because of its low porosity(2-7%),low matrix permeability(0.001-0.5md),hydraulic fracturing has become an important way to enhance single well performance.However,sandblasting during sleeve hydraulic fracturing often induces the erosion of casing,which can further result in the decrease of casing callapse strength and deformation of casing.Understanding the effects of erosion on casing strength is of fundamental importance to realize efficient usage of sleeve hydraulic fracturing in the mentioned tight gas reservoir.In this study,experiments were conducted using self-made jet erosion device to investigate the effects of proppant impact angle,slurry flow velocity and poppant content on the weight loss rate of TP140 steel.The slurry was a mixture of 40/60 mesh high density ceramsite proppant and 0.2wt% guanidine gel fracturing fluid commonly used in Tarim oilfield.Based on the experimental results,an erosion rate calculation model for TP140 casing was established.The erosion rate was a function of slurry flow velocity,proppant impact angle and proppant content.The erosion rate calculation model was programmed and coupled to the numerical simulation software(FLUENT).The flow and erosion rate distribution around sleeve nozzle and perforation during hydraulic fracturing was discovered using numerical method.Results showed that during the fracturing process,fracturing fluid flowed from sliding sleeve nozzle to casing straightly,resulting in the largest loss of casing wall thickness in the area of sleeve nozzle outlet.Relatively speaking,the erosion of perforation is little during fracturing.And a case study was presented.For well KeS2-2-12,its total fracturing fluid volume was 2500m3 and delivery rate was 6m3/min,the wall thickness loss of TP140 casing would be 1.04~2.50mm when fracturing operation was completed.The residual collapse strength of casing suffered erosion was calculated.The results showed that for the worst case that the wall thickness loss of casing was 2.5mm,the residual callapse strength of casing was only 64.8% of the original strength before fracturing.Thus,it can be seen that erosion caused by sandblasting during hydraulic fracturing has a great influence on the TP140 casing strength,which brings us the challenge of well integrity.Therefore,hydraulic fracturing parameters should be optimized to reduce the erosion.Nowadays,hydraulic fracturing is a common and effective technology in tight gas reservoir.This paper discovered the effects of erosion on TP140 casing strength due to sandblasting during sleeve hydraulic fracturing in Keshen tight gas reservoir,providing a good reference for sleeve hydraulic fracturing parameters optimizing.
机译:喀什气田是库车前陆冲断带,位于塔里木盆地北缘的一部分,西China.It具有超深(6500-8000m),高温(170-190℃),高压的极端储层条件(110-120MPa)。由于其低的孔隙率(2-7%),低透气性矩阵(0.001-0.5md)的,水力压裂已成为以提高单井performance.However的重要途径,套筒水力压裂经常诱导期间喷砂套管的侵蚀,这可以进一步导致套管callapse强度和casing.Understanding上壳体强度侵蚀的效果的变形的降低是至关重要实现套筒水力压裂的有效使用所提到的致密气在reservoir.In此研究,实验使用自制的喷射侵蚀装置进行调查支撑剂冲击角度,浆料流速和poppant内容上TP140钢。浆料的重量损失率的效果而进行的是40/60目高的混合物密度陶粒支撑剂和0.2重量%胍凝胶压裂流体塔里木河oilfield.Based常用对实验结果,对于TP140壳体中的侵蚀速率的计算模型是established.The侵蚀率为淤浆流速,支撑剂冲击角和支撑剂的功能content.The侵蚀速率计算模型进行编程以及耦合到所述数值模拟软件(FLUENT)。该流动并围绕套筒喷嘴和穿孔侵蚀速率分布水力压裂过程中使用表明,在压裂过程中,压裂液数值method.Results被发现从滑动套筒喷嘴到壳体笔直,从而导致壳体壁厚在套筒喷嘴的面积outlet.Relatively发言的最大损失流动,穿孔的侵蚀fracturing.And期间是小的情况下,研究是presented.For以及KeS2-2 -12,其总压裂流体体积为2500立方米和输送速度为6立方米/分钟,TP140 CAS的管壁厚度损失ING将是1.04〜2.50毫米当压裂操作是的外壳遭受侵蚀完成进度残余崩溃强度calculated.The结果表明,最坏的情况下套管的管壁厚度损失是2.5毫米,套管的残余callapse强度为只有fracturing.Thus之前的原始强度64.8%,可以看出,造成水力压裂过程中喷砂侵蚀对TP140套管强度有很大的影响,这给我们带来的好integrity.Therefore,水力压裂参数应该是挑战优化,以减少所述erosion.Nowadays,水力压裂是一种常见的和有效的技术在致密气reservoir.This纸发现侵蚀对TP140套管强度由于在喀什致密气藏套筒水力压裂过程中喷砂,提供了良好的参考影响套筒水力压裂参数优化。

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