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Yuedong Yao
Researcher at China University of Petroleum
Publications - 9
Citations - 452
Yuedong Yao is an academic researcher from China University of Petroleum. The author has contributed to research in topics: Tight oil & Superheated steam. The author has an hindex of 8, co-authored 9 publications receiving 390 citations.
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A numerical approach for obtaining type curves of superheated multi-component thermal fluid flow in concentric dual-tubing wells
TL;DR: In this paper, the authors presented a novel model for predicting thermophysical properties of SMTF in concentric dual-tubing wells (CDTW), based on real gas state equation, a model comprised of mass, momentum and energy balance equation in the integral joint tubing and annuli was proposed for CDTW.
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Type curve analysis of superheated steam flow in offshore horizontal wells
TL;DR: In this paper, a series of theoretical studies were conducted to estimate the distributions of temperature and pressure of superheated steam (SHS) in offshore horizontal wells, based upon the mass, energy and momentum conservation equations in wellbores, and heat transfer models in seawater and formation, a mathematical model is established.
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A numerical study on the non-isothermal flow characteristics of superheated steam in ground pipelines and vertical wellbores
TL;DR: In this paper, a flow model inside the wellbores was proposed based on the energy and momentum balance equations, coupled with heat transfer model in formation or atmosphere, a comprehensive model was developed.
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The mass and heat transfer characteristics of superheated steam coupled with non-condensing gases in perforated horizontal wellbores
TL;DR: In this article, a novel mathematical model is proposed to analyze the flow behaviors of superheated multi-component thermal fluid (SMTF) in the perforated horizontal wellbores (PHWs).
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Analytical model for production performance analysis of multi-fractured horizontal well in tight oil reservoirs
TL;DR: In this paper, a new analytical model for multi-fractured horizontal well (MFHW) in tight oil reservoirs is presented, where the reservoir is subdivided into five continuous flow regions: the unstimulated reservoir volume (USRV) regions 1 and 2, the stimulated reservoir volume region 3 and 4, and the hydraulic fracture (HF) region 5.