Successful Development and Deployment of a Novel Chemical Package for Stimulation of Injection wells, Offshore UK

Author:

Alexis Dennis1,Pinnawala Gayani1,Kim Do Hoon1,Dwarakanath Varadarajan1,Hahn Ruth1,Solano Marlon1,Tao Emily1,Winslow Greg1,Thach Sophany1,Jackson Adam1,Wilhelm Aaron2,West Scott2,Pin Erica3,Aujla Sukhjit3

Affiliation:

1. Chevron Technical Center, a division of Chevron U.S.A. Inc.

2. Chevron Oronite, a division of Chevron U.S.A. Inc.

3. Kemira

Abstract

Abstract The work described in this paper details the development of a single stimulation package that was successfully used for treating an offshore horizontal polymer injection well to improve near wellbore injectivity in the Captain field, offshore UK. The practice was to pump these concentrated surfactant streams using multiple pumps from a stimulation vessel which is diluted with the polymer injection stream in the platform to be injected downhole. The operational challenges were maintaining steady injection rates of the different liquid streams which was exacerbated by the viscous nature of the concentrated surfactants that would require pre-dilution using cosolvent or heating the concentrated solutions before pumping to make them flowable. We have developed a single, concentrated liquid blend of surfactant, polymer and cosolvent that was used in near-wellbore remediation. This approach significantly simplifies the chemical remediation process in the field while also ensuring consistent product quality and efficiency. The developed single package is multiphase, multicomponent in nature that can be readily pumped. This blend was formulated based on the previous stimulation experience where concentrated surfactant packages were confirmed to work. Commercial blending of the single package was carried out based on lab scale to yard scale blending and dilution studies. About 420 MT of the blend was manufactured, stored, and transported by rail, road and offshore stimulation vessel to the field location and successfully injected.

Publisher

SPE

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