World's Best Scientists 2026 revealed!

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Engineering and Technology

D-Index
48
Citations
9022
World Ranking
4557
National Ranking
892

Overview

Keliu Wu is affiliated with the China University of Petroleum, Beijing in China. The primary area of research is within Engineering, with a focus on several subfields including Mechanics of Materials, Ocean Engineering, Mechanical Engineering, Biomedical Engineering, and Computational Mechanics.

The scientist's research topics cover a broad range of subjects related to hydrocarbon exploration and reservoir analysis. Key topics of work include:

  • Hydrocarbon exploration and reservoir analysis
  • Enhanced Oil Recovery Techniques
  • Hydraulic Fracturing and Reservoir Analysis
  • Atmospheric and Environmental Gas Dynamics
  • Methane Hydrates and Related Phenomena
  • Reservoir Engineering and Simulation Methods
  • Lattice Boltzmann Simulation Studies

Frequent publication venues for Wu's research consist of:

  • Fuel
  • Energy & Fuels
  • Processes
  • Physics of Fluids
  • SPE Annual Technical Conference and Exhibition

Several coauthors have collaborated regularly with Wu, highlighting a network of researchers in related fields. These include:

  • Zhangxin Chen (54 joint publications)
  • Jing Li (25 joint publications)
  • Dong Feng (16 joint publications)
  • Yanling Gao (14 joint publications)
  • Qingyuan Zhu (13 joint publications)

Representative recent papers authored or coauthored by Keliu Wu are:

  • Wettability effects on phase behavior and interfacial tension in shale nanopores, 2020, Fuel
  • A Critical Review of Enhanced Oil Recovery by Imbibition: Theory and Practice, 2021, Energy & Fuels
  • Determination of CH4, C2H6 and CO2 adsorption in shale kerogens coupling sorption-induced swelling, 2020, Chemical Engineering Journal
  • Optimal nanocone geometry for water flow, 2021, AIChE Journal
  • Molecular dynamics computations of brine-CO2/CH4-shale contact angles: Implications for CO2 sequestration and enhanced gas recovery, 2020, Fuel

Best Publications

  • Wettability effect on nanoconfined water flow

    Keliu Wu;Zhangxin Chen;Jing Li;Xiangfang Li

  • Enhanced oil recovery techniques for heavy oil and oilsands reservoirs after steam injection

    Xiaohu Dong;Huiqing Liu;Zhangxin Chen;Zhangxin Chen;Keliu Wu

  • A Model for Multiple Transport Mechanisms Through Nanopores of Shale Gas Reservoirs with Real Gas Effect-Adsorption-Mechanic Coupling

    Keliu Wu;Zhangxin Chen;Xiangfang Li;Chaohua Guo

  • Model for Surface Diffusion of Adsorbed Gas in Nanopores of Shale Gas Reservoirs

    Keliu Wu;Xiangfang Li;Chenchen Wang;Wei Yu

  • Water distribution characteristic and effect on methane adsorption capacity in shale clay

    Jing Li;Xiangfang Li;Xiangzeng Wang;Yingying Li

  • Real gas transport through nanopores of varying cross-section type and shape in shale gas reservoirs

    Keliu Wu;Keliu Wu;Zhangxin Chen;Xiangfang Li

  • A Unified Model for Gas Transfer in Nanopores of Shale-Gas Reservoirs: Coupling Pore Diffusion and Surface Diffusion

    Keliu Wu;Xiangfang Li;Chaohua Guo;Chenchen Wang

  • Thickness and stability of water film confined inside nanoslits and nanocapillaries of shale and clay

    Jing Li;Jing Li;Xiangfang Li;Keliu Wu;Keliu Wu;Dong Feng

  • Phase Equilibria of Confined Fluids in Nanopores of Tight and Shale Rocks Considering the Effect of Capillary Pressure and Adsorption Film

    Xiaohu Dong;Xiaohu Dong;Huiqing Liu;Jirui Hou;Keliu Wu

  • Competitive adsorption of methane and ethane in montmorillonite nanopores of shale at supercritical conditions: A grand canonical Monte Carlo simulation study

    Sen Wang;Qihong Feng;Farzam Javadpour;Qinhong Hu

  • Study on Gas Flow through Nano Pores of Shale Gas Reservoirs

    Chaohua Guo;Jianchun Xu;Keliu Wu;Mingzhen Wei

  • Flow behavior of gas confined in nanoporous shale at high pressure: Real gas effect

    Keliu Wu;Zhangxin Chen;Xiangfang Li;Jinze Xu

  • A model for gas transport in microfractures of shale and tight gas reservoirs

    Keliu Wu;Xiangfang Li;Chenchen Wang;Zhangxin Chen

  • Water Sorption and Distribution Characteristics in Clay and Shale: Effect of Surface Force

    Jing Li;Xiangfang Li;Keliu Wu;Keliu Wu;Xiangzeng Wang

  • Methane diffusion in shales with multiple pore sizes at supercritical conditions

    Mingjun Chen;Yili Kang;Tingshan Zhang;Lijun You

  • Methane storage in nanoporous material at supercritical temperature over a wide range of pressures.

    Keliu Wu;Zhangxin Chen;Xiangfang Li;Xiaohu Dong;Xiaohu Dong

  • Apparent Permeability for Gas Flow in Shale Reservoirs Coupling Effects of Gas Diffusion and Desorption

    Keliu Wu;Xiangfang Li;Chenchen Wang;Wei Yu

  • A multi-site model to determine supercritical methane adsorption in energetically heterogeneous shales

    Jing Li;Jing Li;Zhangxin Chen;Zhangxin Chen;Keliu Wu;Keliu Wu;Kun Wang

  • Optimal Nanocone Geometry for Water Flow

    Unknown

  • Wettability effects on phase behavior and interfacial tension in shale nanopores

    Dong Feng;Dong Feng;Sahar Bakhshian;Keliu Wu;Zhaojie Song

  • Gas Flow Behavior through Inorganic Nanopores in Shale Considering Confinement Effect and Moisture Content

    Zheng Sun;Juntai Shi;Keliu Wu;Xiangfang Li

  • An apparent liquid permeability model of dual-wettability nanoporous media: A case study of shale

    Tao Zhang;Xiangfang Li;Juntai Shi;Zheng Sun

Frequent Co-Authors

Zhangxin Chen
Zhangxin Chen University of Calgary
Xiangfang Li
Xiangfang Li China University of Petroleum, Beijing
Huiqing Liu
Huiqing Liu China University of Petroleum, Beijing
Wei Yu
Wei Yu The University of Texas at Austin
Fengrui Sun
Fengrui Sun China University of Petroleum, Beijing
Yili Kang
Yili Kang Southwest Petroleum University
Jirui Hou
Jirui Hou China University of Petroleum, Beijing
Xiongqi Pang
Xiongqi Pang China University of Petroleum, Beijing
Qinhong Hu
Qinhong Hu The University of Texas at Arlington
Ole Torsæter
Ole Torsæter Norwegian University of Science and Technology

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