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- W2005192153 abstract "Abstract Most reservoirs cannot produce efficiently without stimulation. Multilateral wells are known to increase productivity but can be time consuming and challenging to implement. Stimulation methods such as hydraulic fracturing can be complex to deploy and difficult to direct. Multilateral stimulation technology (MST) used to stimulate carbonate reservoirs with efficiency and accuracy has been well documented through the concept, development and field trial stages (Freyer et al 2009, Freyer et al 2011, Rice et al 2014, Carvajal et al 2015). This paper will discuss the evolution of a new multilateral stimulation technology which has been developed and qualified as part of a Joint Industry Project (JIP) with Fishbones, Statoil, ENI, Lundin and Innovation Norway. The technology increases oil recovery rates from tight formations by means of an efficient pumping process which creates accurately placed laterals into the formation. Previous MST systems utilize jetting action along with the chemical reaction between hydrochloric acid (HCl) and carbonate formations to create the laterals. This paper will discuss the further progression of this technology to qualify a new method known as multilateral drilling stimulation technology (MDST), which can be applied in non-reactive formations and in those that are otherwise inefficient to jet. The MDST utilizes the existing fluid system in the wellbore and standard rig pumping equipment to create a significant number of pathways into the reservoir. The qualification testing to the current status of Technology Readiness Level 4 (TRL4), Qualified for First Use, will be discussed along with the reservoir simulation and installation planning for downhole deployment." @default.
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- W2005192153 date "2015-04-27" @default.
- W2005192153 modified "2023-10-18" @default.
- W2005192153 title "Technology Qualification and Installation Plan of Efficient and Accurate Multilaterals Drilling Stimulation Technology for Sandstone Oil Application" @default.
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- W2005192153 doi "https://doi.org/10.2118/174035-ms" @default.
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