2017
DOI: 10.1016/j.powtec.2017.03.023
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Research on matching mechanism between polymer microspheres with different storage modulus and pore throats in the reservoir

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Cited by 66 publications
(27 citation statements)
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“…e traditional polymeric microsphere, which is mainly made of gel, does not have an outer layer. Polymeric microspheres or the gel core is a viscoelastic plugging agent with 3D structure which can absorb much more water if compared to its own mass [35][36][37]. e core-shell microsphere has a core-shell double-layered structure.…”
Section: Core-shell Microsphere Expansion Analysesmentioning
confidence: 99%
“…e traditional polymeric microsphere, which is mainly made of gel, does not have an outer layer. Polymeric microspheres or the gel core is a viscoelastic plugging agent with 3D structure which can absorb much more water if compared to its own mass [35][36][37]. e core-shell microsphere has a core-shell double-layered structure.…”
Section: Core-shell Microsphere Expansion Analysesmentioning
confidence: 99%
“…Rigid microspheres with size well matching with pore‐throats can be more easily injected and entered deep into the formation, thus mitigating the contradiction between injectability of the profile control agent and its profile control ability. Yang 18 constructed the comprehensive correlation equation among stable injection pressure, matching factor and storage modulus. The specific comprehensive correlation equation p in = 3.3072 × 10 −7 G ′ 2.6492 R 2.3882 G ′ −0.0568 was derived according to the laboratory physical simulation data and the stable injection pressure of polymer microsphere with different storage modulus in different matching factors was predicted.…”
Section: Introductionmentioning
confidence: 99%
“…If the stability is not good, the PMs will be absorbed in near the well-bore and plug the injection channel near the well-bore; thus, the purpose of in-deep profile control will not be achieved (Dai et al, 2017 ). In order to obtain PMs with better stability, many types of PMs have been developed (Hua et al, 2014 ; Mehta et al, 2015 ; Yang et al, 2017b ). All these polymer microsphere systems have shown excellent characteristics in laboratory evaluation studies.…”
Section: Introductionmentioning
confidence: 99%