000 02519nab a2200229 4500
005 20260520004420.0
008 260224s2013 xxu ing
041 _aInglés
245 0 0 _aReduction of Fines Migration by Nanofluids Injection: An Experimental Study
260 _a
_b
_cabr. 2013
270 _a03/06/2013 ; 03/06/2013
300 _a9 p. ; 309-318
520 _aTranscripción del resumen del autor: Formation damage of oil reservoirs as a result of fines migration is a major reason for productivity decline. Formation fines are defined as unconfined solid particles present in the pore spaces of formations. Their migration, caused by fluid flow in the reservoir, can cause pore plugging and permeability reduction. In the last 3 decades, many studies have characterized fines and their migration effect on permeability reduction. There are many techniques in the industry to remediate the damage, especially in the near-wellbore region. Nanofluids (NFs) that contain nanoparticles (NPs) exhibit specific properties, including a high tendency for adsorption and being good candidates for injection into the nearwellbore region, because of the small nanoparticle sizes. In this paper, a packed column is used to study the use of different types of NPs to reduce fines migration in synthetic porous materials. Three types of NPs--MgO, SiO2, and Al2O3--are used here to investigate their effects on fines movement. The results indicate that fines may adhere to the matrix grains, hindering their migration, when the porous materials are soaked with NFs. Furthermore, to check the mechanisms of this remediation technique, the effect of nanoparticle concentration and fluid flow rates in the medium on fines detachment was studied. A theoretical model was used to calculate total energy of interaction for the surfaces to check experimental results, which was also validated with scanning electron microscopy (SEM) pictures for samples from synthetic cores. The results showed that addition of 0.1 wt% of MgO and SiO2 NPs reduced fines migration by 15% compared with the reference state. MgO NPs were found to be more effective, even at high fluid rates, when used at a higher concentration, as noticed in the macroscopic and microscopic results.
581 _a2
773 0 _tSPE Journal
_g18
942 _cARTICULO
100 1 _aHabibi, A.
_953270
100 1 _aAhmadi, M.
_953271
100 1 _aPourafshary, P.
_942875
100 1 _aAl-Wahabi, Y.
_953272
999 _c187737
_d187737