World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
60
Citations
10001
World Ranking
2262
National Ranking
458

Overview

Wen Nie is affiliated with Shandong University of Science and Technology in China and has a research portfolio predominantly centered around Engineering, with a total of 207 publications. Their work spans several specific subfields, including Ocean Engineering, Electrical and Electronic Engineering, Aerospace Engineering, Computational Mechanics, and Environmental Engineering.

The core topics addressed in Wen Nie's research relate to coal properties and utilization, aerosol filtration and electrostatic precipitation, combustion and detonation processes, particle dynamics in fluid flows, cyclone separators and fluid dynamics, vehicle emissions and performance, as well as wind and air flow studies.

Recent publications by Wen Nie and close collaborators include studies covering mechanisms of coal dust wetting and control, simulation comparisons of surfactants on lignite adsorption, and numerical analysis of coal dust diffusion in mining contexts. Notable recent papers are:

  • Study of the microscopic mechanism of lauryl glucoside wetting coal dust: Environmental pollution prevention and control, 2021, Journal of Hazardous Materials
  • Effect of spraying on coal dust diffusion in a coal mine based on a numerical simulation, 2020, Environmental Pollution
  • Dynamic dispersion and high-rise release of coal dust in the working surface of a large-scale mine and application of a new wet dust reduction technology, 2022, Journal of Cleaner Production

Their frequent coauthors comprise several researchers with whom they have collaborated extensively, such as Huitian Peng, Yun Hua, Wenjin Niu, Qiu Bao, and Lidian Guo.

Publication venues where Wen Nie's work most frequently appears include the SSRN Electronic Journal, Powder Technology, Fuel, Building and Environment, and Energy. These distributions reflect the interdisciplinary nature of the research, covering topics in environmental and energy engineering.

Best Publications

  • Research on tunnel ventilation systems: Dust Diffusion and Pollution Behaviour by air curtains based on CFD technology and field measurement

    Qiang Liu;Wen Nie;Yun Hua;Huitian Peng

  • Numerical simulation study on dust pollution characteristics and optimal dust control air flow rates during coal mine production

    Zihao Xiu;Wen Nie;Jiayi Yan;Dawei Chen

  • Effect of air flowrate on pollutant dispersion pattern of coal dust particles at fully mechanized mining face based on numerical simulation

    Peng Cai;Wen Nie;Dawei Chen;Shibo Yang

  • The preparation of a novel hydrogel based on crosslinked polymers for suppressing coal dusts

    Qiu Bao;Wen Nie;Changqi Liu;Haihan Zhang

  • Multi-factor numerical simulation study on spray dust suppression device in coal mining process

    Changwei Xu;Wen Nie;Zhiqiang Liu;Huitian Peng

  • Effects of air volume ratio parameters on air curtain dust suppression in a rock tunnel’s fully-mechanized working face

    Hao Wang;Wen Nie;Weimin Cheng;Qiang Liu

  • Study of the microscopic mechanism of lauryl glucoside wetting coal dust: Environmental pollution prevention and control.

    Wenjin Niu;Wen Nie;Mingyue Yuan;Qiu Bao

  • Effects of spraying pressure and installation angle of nozzles on atomization characteristics of external spraying system at a fully-mechanized mining face

    Shibo Yang;Wen Nie;Shasha Lv;Zhiqiang Liu

  • Determining the effect of the non-ionic surfactant AEO9 on lignite adsorption and wetting via molecular dynamics (MD) simulation and experiment comparisons

    Mingyue Yuan;Wen Nie;Weiwei Zhou;Jiayi Yan

  • Effect of spraying on coal dust diffusion in a coal mine based on a numerical simulation.

    Qingxin Ma;Wen Nie;Shibo Yang;Changwei Xu

  • Preparation and experimental dust suppression performance characterization of a novel guar gum-modification-based environmentally-friendly degradable dust suppressant

    Haihan Zhang;Wen Nie;Hongkun Wang;Qiu Bao

  • Transient CFD modelling of space-time evolution of dust pollutants and air-curtain generator position during tunneling

    Shuai Yin;Wen Nie;Qiang Liu;Yun Hua

  • The effects of the installation position of a multi-radial swirling air-curtain generator on dust diffusion and pollution rules in a fully-mechanized excavation face: A case study

    Qiang Liu;Qiang Liu;Wen Nie;Wen Nie;Yun Hua;Yun Hua;Huitian Peng;Huitian Peng

  • Dynamic dispersion and high-rise release of coal dust in the working surface of a large-scale mine and application of a new wet dust reduction technology

    Unknown

  • Solidifying dust suppressant based on modified chitosan and experimental study on its dust suppression performance

    Yanghao Liu;Wen Nie;Hu Jin;He Ma

  • A Novel Hybrid Method for Landslide Susceptibility Mapping-Based GeoDetector and Machine Learning Cluster: A Case of Xiaojin County, China

    Unknown

  • Effects of Oxygen Element and Oxygen-Containing Functional Groups on Surface Wettability of Coal Dust with Various Metamorphic Degrees Based on XPS Experiment

    Gang Zhou;Cuicui Xu;Weimin Cheng;Qi Zhang

  • Preparation and performance study of a novel polymeric spraying dust suppression agent with enhanced wetting and coagulation properties for coal mine

    Haihan Zhang;Wen Nie;Jiayi Yan;Qiu Bao

  • Pattern characterization concerning spatial and temporal evolution of dust pollution associated with two typical ventilation methods at fully mechanized excavation faces in rock tunnels

    Yun Hua;Wen Nie;Peng Cai;Yanghao Liu

  • Research and practice on fluctuation water injection technology at low permeability coal seam

    Wei-min Cheng;Wen Nie;Gang Zhou;Yanbin Yu

  • Simulation experiments on the controllability of dust diffusion by means of multi-radial vortex airflow

    Wen Nie;Wen Nie;Wenle Wei;Peng Cai;Zhiqiang Liu

  • The diffusion of dust in a fully-mechanized mining face with a mining height of 7 m and the application of wet dust-collecting nets

    Dawei Chen;Wen Nie;Peng Cai;Zhiqiang Liu

  • Preparation and characterization of a novel environmentally friendly coal dust suppressant

    Hu Jin;Wen Nie;Haihan Zhang;Yanghao Liu

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