World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
35
Citations
3569
World Ranking
9089
National Ranking
1527

Overview

Hetang Wang is affiliated with the China University of Mining and Technology in China, focusing primarily on engineering disciplines. Their research contributions largely span across various subfields such as ocean engineering, computational mechanics, electrical and electronic engineering, aerospace engineering, and mechanical engineering.

The main topics of their scientific work include coal properties and utilization, combustion and detonation processes, particle dynamics in fluid flows, fluid dynamics and heat transfer, aerosol filtration and electrostatic precipitation, coal combustion and slurry processing, and surface modification and superhydrophobicity.

Hetang Wang has published numerous papers, with some recent notable works including:

  • "Risk assessment of gas explosion in coal mines based on fuzzy AHP and bayesian network" (2020) in Process Safety and Environmental Protection
  • "A review of physical and chemical methods to improve the performance of water for dust reduction" (2022) in Process Safety and Environmental Protection
  • "Synthesis and properties of coal dust suppressant based on microalgae oil extraction" (2022) in Fuel
  • "Exploration on molecular dynamics simulation methods of microscopic wetting process for coal dust" (2021) in International Journal of Coal Science & Technology
  • "Improvement of Foaming Ability of Surfactant Solutions by Water-Soluble Polymers: Experiment and Molecular Dynamics Simulation" (2020) in Polymers

The most frequent publication venues for Wang's research include:

  • SSRN Electronic Journal
  • Fuel
  • Colloids and Surfaces A Physicochemical and Engineering Aspects
  • Process Safety and Environmental Protection
  • Journal of Molecular Liquids

Collaborative efforts have involved several frequent coauthors, including:

  • Fangwei Han
  • Chaohang Xu
  • Wendong Zhou
  • Xiaolong Zhu
  • Hongyang Zhao

Their comprehensive work within engineering chiefly concentrates on addressing challenges related to coal dust control, gas explosion risk assessment, and improving surfactant-based materials for industrial applications. This demonstrates an interdisciplinary approach integrating theoretical, experimental, and simulation methods to address practical issues in mining safety and environmental protection.

Best Publications

  • Risk assessment of gas explosion in coal mines based on fuzzy AHP and bayesian network

    Min Li;Min Li;Hetang Wang;Deming Wang;Zhenlu Shao

  • Experimental analysis of the pore structure and fractal characteristics of different metamorphic coal based on mercury intrusion-nitrogen adsorption porosimetry

    Weibo Han;Gang Zhou;Gang Zhou;Danhong Gao;Zhixue Zhang

  • Experimental investigation of coal dust wetting ability of anionic surfactants with different structures

    Chaohang Xu;Chaohang Xu;Deming Wang;Deming Wang;Hetang Wang;Hetang Wang;Liyang Ma;Liyang Ma

  • Effect of Temperature on Foaming Ability and Foam Stability of Typical Surfactants Used for Foaming Agent

    Hetang Wang;Wangbiao Guo;Wangbiao Guo;Chuanbao Zheng;Deming Wang

  • Effects of chemical properties of coal dust on its wettability

    Chaohang Xu;Deming Wang;Hetang Wang;Haihui Xin

  • Experimental investigation on the wettability of respirable coal dust based on infrared spectroscopy and contact angle analysis

    Hetang Wang;Lin Zhang;Deming Wang;Xinxin He

  • Effect of water-soluble polymers on the performance of dust-suppression foams: Wettability, surface viscosity and stability

    Hetang Wang;Xiaobin Wei;Yunhe Du;Deming Wang

  • Application of foam to suppress rock dust in a large cross-section rock roadway driven with roadheader

    Hetang Wang;Deming Wang;Wanxing Ren;Xinxiao Lu

  • The influence of forced ventilation airflow on water spray for dust suppression on heading face in underground coal mine

    Hetang Wang;Chen Wang;Deming Wang

  • Modelling of ventilation and dust control effects during tunnel construction

    Wenjie Zhou;Wen Nie;Wen Nie;Changqi Liu;Qiang Liu

  • Effects of droplet formation patterns on the atomization characteristics of a dust removal spray in a coal cutter

    Qun Zhou;Botao Qin;Fei Wang;Hetang Wang

  • Large-area goaf fires: a numerical method for locating high-temperature zones and assessing the effect of liquid nitrogen fire control

    Botao Qin;Hetang Wang;Junzhe Yang;Leizheng Liu

  • Experimental study on synergistic wetting of a coal dust with dust suppressant compounded with noncationic surfactants and its mechanism analysis

    Guo-Qing Shi;Cong Han;Yan-ming Wang;He-Tang Wang

  • Effects of preparation parameters on the wetting features of surfactant-magnetized water for dust control in Luwa mine, China

    Qun Zhou;Botao Qin;Jun Wang;Hetang Wang

  • Experimental investigations on the performance of a new design of foaming agent adding device used for dust control in underground coal mines

    Hetang Wang;Deming Wang;Xinxiao Lu;Qingcong Gao

  • Experimental investigation on the changes of the wettability and surface characteristics of coal dust with different fractal dimensions

    Qun Zhou;Botao Qin;Jun Wang;Hetang Wang

  • Experimental investigation on the dilatational interfacial rheology of dust-suppressing foam and its effect on foam performance

    Hetang Wang;Xiaobin Wei;Yunhe Du;Deming Wang

  • A review of physical and chemical methods to improve the performance of water for dust reduction

    Unknown

  • Experimental investigation of the performance of a novel foam generator for dust suppression in underground coal mines

    Hetang Wang;Deming Wang;Yan Tang;Botao Qin

  • Optimization and implementation of a foam system to suppress dust in coal mine excavation face

    Qingguo Wang;Deming Wang;Hetang Wang;Fangwei Han

  • Investigation on the atomization characteristics of a solid-cone spray for dust reduction at low and medium pressures

    Hetang Wang;Jinlong Wu;Yunhe Du;Deming Wang

  • The effect of geometries and cutting parameters of conical pick on the characteristics of dust generation: Experimental investigation and theoretical exploration

    Wendong Zhou;Hetang Wang;Deming Wang;Kang Zhang

  • Experimental investigation of the properties of dust suppressants after magnetic-field treatment and mechanism exploration

    Hetang Wang;Wufan Xuan;Zuzhuo Zhang;Botao Qin

  • Experimental investigation on the performance of a novel magnetized apparatus used to improve the dust suppression ability of surfactant-magnetized water

    Qun Zhou;Botao Qin;Fei Wang;Hetang Wang

  • Exploration on molecular dynamics simulation methods of microscopic wetting process for coal dust

    Qi Zhang;Xinyi Chen;Hetang Wang;Chaohang Xu

Frequent Co-Authors

Ronald G. Larson
Ronald G. Larson University of Michigan–Ann Arbor

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