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Study of the Submersible Sand Separator in the Field of Centrifugal Forces for Increasing the Artificial Lift Efficiency

机译:对离心力领域潜水砂分离器的研究提高人工升力效率

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High mechanical impurities content in production fluid is one of the main causes high mechanical impurities content in production fluid.In the field practice there are many technologies to minimize solid phase flow from reservoir to the bottomhole and various technique units to protect submersible pumping equipment.However,currently there is no detailed study of technical and technological efficiency parameters.Different methods and technologies to solve the problems of oil(water)well production,complicated by solid phase flow,are used.In this paper the study results of the submersible sand centrifugal separation for artificial lift are presented,with consideration of the abnormal well conditions.In Gubkin University at Reservoir and Production Petroleum Engineering Department(RPPED)experimental stand unit to complex study of submersible sand separator(model "PSM")with hydraulic gate was constructed.Experimental stand unit allows determining submersible sand separator(SSS)efficiency.The submersible sand separator experimental stand studies have been conducted on model mixtures "water – solid particles(suspended solids content up to below 2 g/l)" and "water – gas(flow gas content up to 60%)– solid particles".The influence patterns of suspended solids content,inlet flow gas content and granulometric on "PSM" separation efficiency are determined.The "PSM" efficiency was experimentally confirmed and the separation coefficient values were obtained,which exceeded the performance of the similar devices.The workflow to select candidate-wells for this protective device application was developed.A new technological scheme to lift separated impurities bypassing submersible pumping equipment on the day surface is proposed.
机译:生产流体中的高机械杂质含量是生产流体中的高机械杂质含量之一。在现场实践中有许多技术可以最大限度地减少从储存器到底孔的固相流动和各种技术单元来保护潜水泵送设备。然而目前,使用了技术和技术效率参数的详细研究。使用了解决石油(水)井生产问题,通过固相流动复杂的方法和技术。本文研究了潜水砂离心的研究结果提出了人工升力的分离,考虑到异常的井条件。在储层和生产石油工程部(RPPED)实验台上建立了液压闸门的潜水砂分离器(型号“PSM”)复杂研究的潜水艇大学。实验台单元允许确定潜水砂分离器(SSS)效率。 E潜水砂分离器实验站研究已经在模型混合物“水 - 固体颗粒(悬浮固体含量高达2g / L)”和“水 - 气体(流动气体含量高达60%) - 固体颗粒”中进行。确定了悬浮固体含量,入口流动气体含量和粒度计的“PSM”分离效率的影响模式。获得了“PSM”效率,获得了分离系数值,超过类似装置的性能。工作流程为了选择该保护装置的候选井,提出了一种新的技术方案,提出了在日表面上绕过潜水泵设备的分离杂质。

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