
DY Ding / Near-Well Upscaling for Reservoir Simulations Among all these upscaling methods, the numerical ones are generally considered more accurate. However, the results of numerical upscaling depend greatly on boundary conditions used in fine grid simulation. Boundary effects in upscaling procedure have been greatly discussed in the
MoreDing introduced the layer potential for representing the 3D pressure distribution in the vicinity of wells (Ding, 1996), and proposed the nearwell upscaling technique to improve the coarse-grid ...
MoreNear-Well Upscaling for Reservoir Simulations . By D. Y. Ding. Abstract. Résumé — Mise à l’échelle au voisinage du puits pour simulations de réservoir — Les techniques de mise à l’échelle de perméabilité absolue (du modèle géologique ou géostatistique vers le
More2004-6-1 Reservoir simulators are used principally to investigate well productivities, such as oil production rate, water–oil ratio, etc. Near-well upscaling was proposed by Ding in 1995. The necessary and the importance of a particular treatment for permeability upscaling in the well vicinity were illustrated.
MoreUpscaling for Compositional Reservoir Simulation. ... The method of Ding for scaling-up in the near-well region is evaluated on a variety of two- and three-dimensional problems, including cases ...
MoreUpscaling is often applied in reservoir simulation to coarsen highly detailed geological descriptions. Flow in petroleum reservoirs is mainly driven by wells, thus upscaling of near-well flow is ...
More2012-7-30 A large number of upscaling approaches have been developed to coarsen detailed aquifer or reservoir models into those at an appropriate scale for numerical simulations (Wen and G¶omez-Hern¶andez, 1996; Renard and de Marsily, 1997). Many of them are proven quite e–cient for upscaling under the uniform °ow condition, where the
More2011-5-6 A large number of upscaling approaches have been developed to coarsen detailed aquifer or reservoir models into those at an appropriate scale for numerical simulations (Wen and Gomez-Hernandez, 1996; Renard and de Marsily, 1997). Many of them are proven quite efficient for upscaling under the uniform flow condition,
MoreWe propose DP/DP upscaling procedure to improve coarse-scale simulations of highly heterogeneous reservoirs. • The porous media is divided into primary and secondary systems to better represent the reservoir sub-grid heterogeneities. • Near-well upscaling is performed to improve the overall flow distribution in the wells. •
More2021-3-1 With this change, time can be saved with the upscaling calculations without jeopardizing the coarse-scale results for this type of reservoir. 2.2. Near-well upscaling procedure. After the DP/DP upscaling, special treatment was given to all the coarse-scale cells, and these present an increased capability of representing sub-grid heterogeneities.
MoreUpscaling of absolute permeability from geological/geostatistical models to reservoir flow simulation models has been discussed for a long time. It has been generally recognized that the main difficulty in upscaling is the dependence of upscaling results on boundary conditions, which lead to a
MoreUpscaling of absolute permeability from geological/geostatistical models to reservoir flow simulation models has been discussed for a long time. It has been generally recognized that the main difficulty in upscaling is the dependence of upscaling results on boundary conditions, which lead to a
MoreDownload PDF: Sorry, we are unable to provide the full text but you may find it at the following location(s): ogst.ifpenergiesnouvell... (external link)
More2004-6-1 Reservoir simulators are used principally to investigate well productivities, such as oil production rate, water–oil ratio, etc. Near-well upscaling was proposed by Ding in 1995. The necessary and the importance of a particular treatment for permeability upscaling in the well vicinity were illustrated.
MoreUpscaling for Compositional Reservoir Simulation. ... The method of Ding for scaling-up in the near-well region is evaluated on a variety of two- and three-dimensional problems, including cases ...
More2012-7-30 A large number of upscaling approaches have been developed to coarsen detailed aquifer or reservoir models into those at an appropriate scale for numerical simulations (Wen and G¶omez-Hern¶andez, 1996; Renard and de Marsily, 1997). Many of them are proven quite e–cient for upscaling under the uniform °ow condition, where the
More2011-5-6 A large number of upscaling approaches have been developed to coarsen detailed aquifer or reservoir models into those at an appropriate scale for numerical simulations (Wen and Gomez-Hernandez, 1996; Renard and de Marsily, 1997). Many of them are proven quite efficient for upscaling under the uniform flow condition,
More2003-6-9 Near-well upscaling allows to give equivalent well performance evaluation with fine grid and coarse grid simulations. The first near-well upscaling procedure is proposed by Ding 4 in 1995. In that paper, the author illustrated the necessary and the importance of a particular treatment for permeability upscaling in the well vicinity.
MoreDing, D.Y. Near-well upscaling for reservoir simulations. Oil Gas Sci. Technol. 2004, 59(2): 157-165. Ding, Y. A generalized 3D well model for reservoir simulation. SPE J. 1996, 1(4): 437-450. Ding, Y., Jeannin, L. A multi-point flux approximation scheme for well modelling in reservoir simulations. ECMOR VII-7th European Conference on the ...
More2009-5-27 Some models have been developed to study the near-wellbore formation damage (Minssieux et al. [1], Veerapen et al. [2], Ding et al. [3–4], Bedrikovetsky et al. [5], Moghadasi et al. [6], Civan [7]), but these models are mostly used for the modeling of formation damage around a single well and are decoupled from reservoir production scenarios.
MoreUpscaling of absolute permeability from geological/geostatistical models to reservoir flow simulation models has been discussed for a long time. It has been generally recognized that the main difficulty in upscaling is the dependence of upscaling results on boundary conditions, which lead to a
MoreUpscaling of absolute permeability from geological/geostatistical models to reservoir flow simulation models has been discussed for a long time. It has been generally recognized that the main difficulty in upscaling is the dependence of upscaling results on boundary conditions, which lead to a
MoreDownload PDF: Sorry, we are unable to provide the full text but you may find it at the following location(s): ogst.ifpenergiesnouvell... (external link)
More2004-6-1 Reservoir simulators are used principally to investigate well productivities, such as oil production rate, water–oil ratio, etc. Near-well upscaling was proposed by Ding in 1995. The necessary and the importance of a particular treatment for permeability upscaling in the well vicinity were illustrated.
More2009-12-4 putations. The overall upscaling methodology is developed flrst for oil-gas °ows. The procedures are then extended to three-phase (oil-gas-water) systems. The new upscaling techniques are applied to a variety of heterogeneous reservoir v
More2007-1-2 detailed for direct flow simulation, the need to generate coarse-scale reservoir models through upscaling persists. In this work, we develop and apply two-phase upscaling techniques for modeling well-driven, high-mobility-ratio, immiscible displacements and first-contact miscible displacements.
MoreDing, D.Y. Near-well upscaling for reservoir simulations. Oil Gas Sci. Technol. 2004, 59(2): 157-165. Ding, Y. A generalized 3D well model for reservoir simulation. SPE J. 1996, 1(4): 437-450. Ding, Y., Jeannin, L. A multi-point flux approximation scheme for well modelling in reservoir simulations. ECMOR VII-7th European Conference on the ...
More2021-7-3 Fig. 1. Kernel bandwidth-based upscaling process in one dimensional. In each row of data in two directions, the optimal bandwidth is calculated for both x and y directions. These values are required in the two-dimensional reservoir upscaling algorithm. The upscaling algorithm in two dimensions is a combination of two algorithms
More2021-6-19 singular flow behavior in the near-well region with coarse grid simulations. This concept was also extended for the modeling of fractured wells by Ding and Chaput (1999). For unconventional reservoir simulations, it is essential to model correctly long conductive fractures such as
More2021-5-25 modeling and upscaling steps for a proper geological representation in flow simulation (Ding, 2011; Panja et al., 2013; Ding et al., 2014). Assessing the viability of LGR in the representation and flow simulation of highly permeable thin layers also extends to challenges in gridding and upscaling. This is because highly laminated reservoirs have
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