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- W4386495611 abstract "ABSTRACT In this paper, we present an integrated workflow designed to characterize the natural fracture systems and to optimize fluid sampling in a very complex and heterogeneous fractured tight sandstone reservoir. Conventional techniques are not suited for tight formations, and to overcome this challenge it is imperative to implement and enhance new technology. This advanced workflow aims to decrease uncertainties at different stages of the reservoir lifecycle through combined advanced tools. Electrical and Acoustic borehole images, Full Acoustic Waveform, and MDT Dual packer were incorporated in this study to optimize fluid sampling and increase the success rate of economic recovery. INTRODUCTION Almost all hydrocarbon reservoirs are affected in some way by natural fractures, but the effects of fractures are often poorly understood and largely underestimated. In tight reservoirs, natural fractures created through complex tectonic activity help create secondary porosity and promote communication between reservoir compartments (Irofti et al., 2022). However, these highly permeable channels sometimes short-circuit fluid flow in the reservoir, causing premature production of water or gas and rendering secondary recovery initiatives ineffective (Bratton et al., 2006).Since the introduction of the wireline formation testers in 1955, these tools have provided the oil and gas industry with measurements for the determination of formation pressure, fluids in-situ as well as giving formation fluid samples for identification and analysis. This conventional technique is well suited for thick and permeable clastic formations. Under low porosity and low permeability conditions, the wireline formations testers become unsuitable as they may not be able to isolate the zone, may miss a thin zone or in a formation with very low permeability, the contact area with the packer may be too small to let the fluid flow. When testing is to be conducted out employing pricey rig operations, evaluation of heterogeneous reservoirs using open hole logs and cores carries some risk (Aoun, Soto, et al., 2022; Ifrene et al., 2023) The modest success rate of sampling operations, fluid sampling presents a challenge in tight reservoirs, therefore it is imperative to adopt innovative techniques. To overcome this challenge, we proposed in this article a workflow to increase and optimize the success rate. This includes the combination of borehole image logs and acoustic waveforms, two technologies aiming to enhance formation sampling and recovery rate." @default.
- W4386495611 created "2023-09-07" @default.
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- W4386495611 date "2023-06-25" @default.
- W4386495611 modified "2023-10-16" @default.
- W4386495611 title "Formation Sampling Optimization Using Borehole Images and Acoustic Data in Tight Gas Sand Reservoir" @default.
- W4386495611 doi "https://doi.org/10.56952/arma-2023-0606" @default.
- W4386495611 hasPublicationYear "2023" @default.
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