World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
44
Citations
7788
World Ranking
1610
National Ranking
194

Overview

Guodong Xia is affiliated with Beijing University of Technology in China. Their primary research area is engineering, with a focus on mechanical engineering and related subfields. The scientist has contributed extensively to the study of heat transfer, thermodynamics, and fluid mechanics, particularly concentrating on boiling heat transfer and fluid flow phenomena at micro and nanoscale levels.

Their research encompasses a broad spectrum of topics including:

  • Heat Transfer and Boiling Studies
  • Heat Transfer and Optimization
  • Heat Transfer Mechanisms
  • Fluid Dynamics and Thin Films
  • Particle Dynamics in Fluid Flows
  • Nanopore and Nanochannel Transport Studies
  • Nanofluid Flow and Heat Transfer

Guodong Xia has a significant publication record, with major frequent publication venues including:

  • SSRN Electronic Journal
  • International Journal of Heat and Mass Transfer
  • International Communications in Heat and Mass Transfer
  • Applied Thermal Engineering
  • Heat Transfer Engineering

Among their recent papers are:

  • "Molecular dynamics study on enhanced nucleate boiling heat transfer on nanostructured surfaces with rectangular cavities" (2022) published in International Journal of Heat and Mass Transfer
  • "Experimental investigation of flow boiling performance in sinusoidal wavy microchannels with secondary channels" (2021) published in Applied Thermal Engineering
  • "Maximal enhancement of nanoscale boiling heat transfer on superhydrophilic surfaces by improving solid-liquid interactions: Insights from molecular dynamics" (2022) published in Applied Surface Science
  • "Flow boiling heat transfer and two-phase flow phenomena of CO2 in macro- and micro-channel evaporators: Fundamentals, applications and engineering design" (2021) published in Applied Thermal Engineering
  • "Flow patterns and flow pattern maps for adiabatic and diabatic gas liquid two phase flow in microchannels: fundamentals, mechanisms and applications" (2023) published in Experimental Thermal and Fluid Science

Collaborative research is an evident component of Guodong Xia's work. Frequent co-authors include:

  • Jun Wang
  • Wenbin Zhou
  • Lixin Cheng
  • Dandan Ma
  • Ran Li

The scientist's focus on both experimental and molecular dynamics studies reflects the integration of computational and empirical methodologies across their research projects. Their contributions leverage insights into nanostructured surfaces, microchannel heat transfer, and two-phase flow dynamics, spanning theoretical fundamentals to engineering applications.

Best Publications

  • A review on battery thermal management in electric vehicle application

    Guodong Xia;Lei Cao;Guanglong Bi

  • Heat transfer enhancement in microchannel heat sinks with periodic expansion–constriction cross-sections

    Lei Chai;Lei Chai;Guodong Xia;Liang Wang;Mingzheng Zhou

  • Characteristics of laminar flow and heat transfer in microchannel heat sink with triangular cavities and rectangular ribs

    Y.F. Li;G.D. Xia;D.D. Ma;Y.T. Jia

  • Numerical study of laminar flow and heat transfer in microchannel heat sink with offset ribs on sidewalls

    Lei Chai;Lei Chai;Guo Dong Xia;Hua Sheng Wang

  • Optimum thermal design of microchannel heat sink with triangular reentrant cavities

    Guodong Xia;Lei Chai;Haiyan Wang;Mingzheng Zhou

  • Optimum thermal design of interrupted microchannel heat sink with rectangular ribs in the transverse microchambers

    Lei Chai;Lei Chai;Guodong Xia;Mingzheng Zhou;Jian Li

  • Effects of surfactant on the stability and thermal conductivity of Al2O3/de-ionized water nanofluids

    Guodong Xia;Huanming Jiang;Ran Liu;Yuling Zhai

  • Effects of different geometric structures on fluid flow and heat transfer performance in microchannel heat sinks

    G.D. Xia;J. Jiang;J. Wang;Y.L. Zhai

  • Development and experimental study on organic Rankine cycle system with single-screw expander for waste heat recovery from exhaust of diesel engine

    Ye-Qiang Zhang;Yu-Ting Wu;Guo-Dong Xia;Chong-Fang Ma

  • Numerical simulation of fluid flow and heat transfer in a microchannel heat sink with offset fan-shaped reentrant cavities in sidewall ☆

    Lei Chai;Guodong Xia;Mingzheng Zhou;Jian Li

  • Fundamental issues, mechanisms and models of flow boiling heat transfer in microscale channels

    Lixin Cheng;Lixin Cheng;Guodong Xia

  • Heat transfer in the microchannels with fan-shaped reentrant cavities and different ribs based on field synergy principle and entropy generation analysis

    Y.L. Zhai;G.D. Xia;X.F. Liu;Y.F. Li

  • Numerical investigation of thermal enhancement in a micro heat sink with fan-shaped reentrant cavities and internal ribs

    Guodong Xia;Yuling Zhai;Zhenzhen Cui

  • Effects of structural parameters on fluid flow and heat transfer in a microchannel with aligned fan-shaped reentrant cavities

    Guodong Xia;Lei Chai;Mingzheng Zhou;Haiyan Wang

  • Experimental and numerical study of fluid flow and heat transfer characteristics in microchannel heat sink with complex structure

    Guodong Xia;Dandan Ma;Yuling Zhai;Yunfei Li

  • Laminar flow and heat transfer characteristics of interrupted microchannel heat sink with ribs in the transverse microchambers

    Lei Chai;Guo Dong Xia;Hua Sheng Wang

  • Exergy analysis and performance evaluation of flow and heat transfer in different micro heat sinks with complex structure

    Y.L. Zhai;G.D. Xia;X.F. Liu;Y.F. Li

  • Parametric study on thermal and hydraulic characteristics of laminar flow in microchannel heat sink with fan-shaped ribs on sidewalls – Part 1: Heat transfer

    Lei Chai;Guo Dong Xia;Hua Sheng Wang

  • The characteristics of convective heat transfer in microchannel heat sinks using Al2O3 and TiO2 nanofluids

    G.D. Xia;R. Liu;J. Wang;M. Du

  • Parametric study on thermal and hydraulic characteristics of laminar flow in microchannel heat sink with fan-shaped ribs on sidewalls – Part 3: Performance evaluation

    Lei Chai;Guo Dong Xia;Hua Sheng Wang

Frequent Co-Authors

John R. Thome
John R. Thome École Polytechnique Fédérale de Lausanne
Fubin Yang
Fubin Yang Beijing University of Technology
Jinliang Xu
Jinliang Xu North China Electric Power University

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