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Yongchao Xue

Researcher at China University of Petroleum

Publications -  31
Citations -  307

Yongchao Xue is an academic researcher from China University of Petroleum. The author has contributed to research in topics: Fracture (geology) & Flow (mathematics). The author has an hindex of 9, co-authored 26 publications receiving 227 citations.

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A new fracture prediction method by combining genetic algorithm with neural network in low-permeability reservoirs

TL;DR: A new method of fracture identification in terms of deep-shallow laterolog curves as well as their amplitude difference and micro-electrode logging curves is proposed, which has good consistency with the oilfield development performance, which proves the reliability of the new method.
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Integrated characterization of the fracture network in fractured shale gas Reservoirs—Stochastic fracture modeling, simulation and assisted history matching

TL;DR: In this article, the authors presented an efficient method to characterize the complex fracture networks (CFNs) and reduce the uncertainties by integrating stochastic CFNs modeling, reservoir simulation, and assisted history matching.
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A comprehensive model combining Laplace-transform finite-difference and boundary-element method for the flow behavior of a two-zone system with discrete fracture network

TL;DR: In this paper, the Laplace transform finite-difference method is used to numerically model discrete fracture network flow, with sufficient flexibility to consider arbitrary fracture geometries and conductivity distributions.
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Dynamic coupling of analytical linear flow solution and numerical fracture model for simulating early-time flowback of fractured tight oil wells (planar fracture and complex fracture network)

TL;DR: In this paper, the authors proposed a new model to simulate flowback of fractured tight oil wells with planar fractures or a complex fracture network, where fractures are discretized into a number of segments and the fully numerical method is used to model fracture flow.
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Effect of flow mechanism with multi-nonlinearity on production of shale gas

TL;DR: In this article, the effect of nonlinear mechanism on production is analyzed, according to which, the enhanced ultimate recovery (EUR) schemes are proposed. And the results show that the effects of compressibility, multi-scale flow, stress sensitivity and non-Darcy flow in fractures on production are significant during early stage and should be considered in well testing model.