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Brazil Field Experience of ESP Performance with Viscous Emulsions and High Gas Using Multi-Vane Pump MVP and High Power ESPs

机译:巴西特奥斯特野外经验,粘稠乳液和高气体使用多叶片泵MVP和高功率ESP

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This paper provides field experience for the Caisson ESP Technology in subsea boosting system with emulsions and high Gas Volumen Fraction (GVF) using the high power Electric Submersible Pumps (ESPs) systems. Field experience and experimental performance are compared regarding the effects of high viscous emulsion using conventional high capacity ESP systems and the effect of two phase (liquid & gas) fluids on ESP with new technology for high GVF fields and high viscous applications. The Electrical Submersible Pump (ESP) system is an important artificial lift method commonly used for subsea boosting systems. Multiphase flow and viscous fluids cause problems in pump applications. Free gas inside an ESP causes many operational problems such as loss of pump performance or gas lock condition. The objective of this paper is to understand MVP performance for high GVF and viscous emulsions. This paper provides a summary on the performance comparison for a high power ESP system for viscous emulsions and Multi-Vane Pump (MVP) for high GVF wells for Shell major Projects BC-10. These novel projects continue the long tradition of Shell’s leadership in the challenging deepwater environment. Presented is the capability and effects of viscosity and two phase (liquid & gas) fluids using a 1025 series pumps with a charge MVP in series; as well as a 875 series standard ESP system mixed-type pump, which is a multistage centrifugal pumps for deep boreholes. Extensive testing and qualification of the subsea boosting system was undertaken prior to field application. The subsea boosting system experience for offshore operations is reported with new technology, and the effects of viscosity and two phases in real conditions. MVP and high power pumps were proved to be a reliable technology to use in field application managing GVF higher than 50% and high viscous fluid as high as 1200cp as consequence of fluid emulsion. Correction factors needed to be applied to standard design curves to ensure proper field design at opearting conditions.
机译:本文提供了使用高功率电动潜水泵(ESPS)系统的乳液和高气体体积(GVF)的海底升压系统中的沉阳ESP技术的现场经验。使用常规高容量ESP系统对高粘性乳液的影响和实地经验和实验性能,以及两相(液体和气体)流体对高GVF场和高粘性应用的新技术的影响。电气潜水泵(ESP)系统是一种重要的人工升降方法,通常用于海底升压系统。多相流动和粘性流体导致泵应用中的问题。 ESP内的自由气导致许多操作问题,例如泵性能损失或气体锁定状态。本文的目的是了解高GVF和粘性乳液的MVP性能。本文介绍了高功率ESP系统的粘性乳液和多叶片泵(MVP)的性能比较,适用于壳牌主要项目BC-10的高GVF孔。这些新颖的项目在挑战深水环境中持续了贝壳领导的悠久传统。呈现是粘度和两相(液体和气体)流体使用1025系列泵的粘度和两相(液体和气体)流体串联电荷MVP;除了875系列标准ESP系统混合型泵,这是一个用于深层钻孔的多级离心泵。在现场申请之前进行了海底升压系统的广泛测试和资格。报告了新技术的海底运营的升压系统体验,以及粘度和两个阶段在真实条件下的影响。被证明,MVP和高功率泵被证明是在流体乳液的结果中管理GVF高于50%和高粘度流体的现场应用中的可靠技术。需要应用于标准设计曲线所需的校正因子,以确保在可调度条件下进行适当的现场设计。

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