2021
DOI: 10.1021/acs.energyfuels.1c00049
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Experimental Study and Mathematical Model of Residual Oil Distribution during Gas Flooding in Unconventional Oil Reservoirs with Low-Field NMR

Abstract: Gas flooding is a promising way to enhance oil recovery in unconventional oil reservoirs, but accurate identification of the distributions of movable and residual oil during gas flooding is difficult. In this study, the movable and residual oil distributions of tight conglomerate oil reservoirs during gas flooding are monitored with low-field nuclear magnetic resonance (NMR). The NMR T 2 spectra are converted into pore throat size distributions using a nonlinear conversion method in conjunction with high-press… Show more

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Cited by 15 publications
(10 citation statements)
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“…The NMR distributions were measured at 25 °C using a RecCore NMR instrument. 33 For the NMR device, the waiting time was 3000 ms, the echo spacing was 300 μs, the number of echoes was 1024, and the 64 scans and stack numbers were set to generate the relaxation curve. The signal-to-noise ratio (SNR) of the NMR was ≥100 dB.…”
Section: Preparation Of Samples and Experimental Methodsmentioning
confidence: 99%
“…The NMR distributions were measured at 25 °C using a RecCore NMR instrument. 33 For the NMR device, the waiting time was 3000 ms, the echo spacing was 300 μs, the number of echoes was 1024, and the 64 scans and stack numbers were set to generate the relaxation curve. The signal-to-noise ratio (SNR) of the NMR was ≥100 dB.…”
Section: Preparation Of Samples and Experimental Methodsmentioning
confidence: 99%
“…The commercial recoverable reserves are 6.02 billion tons. Commercial production may remain at or exceed current North American tight oil production …”
Section: Global Tight Oil Resources and Distributionmentioning
confidence: 99%
“…Commercial production may remain at or exceed current North American tight oil production. 24 According to the United States Energy Information Administration's statistical prediction of tight oil resources in 2013, the world's recoverable reserves of tight oil technology are 48.3 billion tons, accounting for 11% of the world's conventional petroleum technology recoverable reserves (421.68 billion tons). 25−29 Among them, Russia has the largest amount of tight oil resources (Table 2).…”
Section: Statistics Of World Tight Oilmentioning
confidence: 99%
“…NMR can be used to record the relaxation times of hydrogen protons in static and pulsed magnetic fields and to evaluate the petrophysical properties (porosity, pore size distribution, permeability, and fluid status) of rocks. 21,39,40 If oil and water are used directly in the experiment, distinguishing the contributions of oil and water would be difficult to the NMR signal. In this study, manganese chloride was added to the simulated formation water for shielding.…”
Section: Nmr Analysis and Pore Structure Classificationmentioning
confidence: 99%