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008 260224s2020 xxu ing
041 _aInglés
245 0 0 _aManaging negative fracture interactions with far-field diverters and liquid chemical tracers
_bThe effectiveness of far-field diverters was evaluated by a Permian Basin operator using tracers.
260 _a
_b
_csept. 2020
270 _a10/03/2021 ; 09/03/2021
300 _a[c.a.] 10 p.
520 _aFor operators developing shale reserves, determining an optimal infill well strategy can be technically challenging and plagued by multiple sources of uncertainty. Even under the best circumstances, multiple reservoir properties combine to create a complex blend of matrix permeability, natural faults and fractures, and landing interval properties that make ideal placement highly variable from pad to pad—especially within stacked reservoirs. While heterogeneity in the reservoir cannot be controlled, multiple strategies have been created to mitigate the risk of placing infill wells close enough for negative fracture interactions, instances where overlapping stimulated areas between wells undermines the economic value of one or both assets. These mitigation techniques almost exclusively focus on preventing fracture linkage, either by limiting fracture growth or by controlling the direction of propagation.
581 _a9
773 0 _tE & P
_g
942 _cARTICULO
100 1 _aBanerjee, Sudiptja
_959988
999 _c193891
_d193891
856 _uhttps://epplus.hartenergy.com/issue/september-2020/managing-negative-fracture-interactions-with-far-field-diverters-and-liquid-chemical-tracers/