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Zunqing Zheng

Zunqing Zheng

D-Index & Metrics

Engineering and Technology

D-Index
49
Citations
8081
World Ranking
4376
National Ranking
868

Overview

Zunqing Zheng is affiliated with Tianjin University in China and has a research focus primarily in engineering and chemical engineering. Their work extensively covers the subfields of fluid flow and transfer processes, computational mechanics, automotive engineering, biomedical engineering, and materials chemistry.

The research topics addressed by Zunqing Zheng include advanced combustion engine technologies, combustion and flame dynamics, vehicle emissions and performance, biodiesel production and applications, catalytic processes in materials science, heat transfer and supercritical fluids, and combustion and detonation processes.

Frequent publication venues for Zheng's work include:

  • Fuel
  • SSRN Electronic Journal
  • Energy
  • Energies
  • International Journal of Engine Research

Zheng has collaborated extensively with a number of coauthors, most notably Mingfa Yao, Hu Wang, Haifeng Liu, Zongyu Yue, and Yanqing Cui.

Selected recent papers authored or coauthored by Zunqing Zheng include:

  • Investigation on the ignition delay prediction model of multi-component surrogates based on back propagation (BP) neural network, 2021, Combustion and Flame
  • Optical diagnostics and chemical kinetic analysis on the dual-fuel combustion of methanol and high reactivity fuels, 2021, Fuel
  • The effects of EGR rates and ternary blends of biodiesel/n-pentanol/diesel on the combustion and emission characteristics of a CRDI diesel engine, 2020, Fuel
  • Effects of 2-ethylhexyl nitrate (EHN) on combustion and emissions on a compression ignition engine fueling high-pressure direct-injection pure methanol fuel, 2023, Fuel
  • Numerical investigation on the combustion and emission characteristics of a heavy-duty natural gas-diesel dual-fuel engine, 2021, Fuel

Best Publications

  • Experimental study of n-butanol additive and multi-injection on HD diesel engine performance and emissions

    Mingfa Yao;Hu Wang;Zunqing Zheng;Yan Yue

  • Effect of two-stage injection on combustion and emissions under high EGR rate on a diesel engine by fueling blends of diesel/gasoline, diesel/n-butanol, diesel/gasoline/n-butanol and pure diesel

    Zunqing Zheng;Lang Yue;Haifeng Liu;Yuxuan Zhu

  • Experimental investigation of the effects of diesel injection strategy on gasoline/diesel dual-fuel combustion

    Shuaiying Ma;Zunqing Zheng;Haifeng Liu;Quanchang Zhang

  • Experimental study on combustion and emission characteristics of a diesel engine fueled with 2,5-dimethylfuran–diesel, n-butanol–diesel and gasoline–diesel blends

    Guisheng Chen;Guisheng Chen;Yinggang Shen;Quanchang Zhang;Mingfa Yao

  • Effects of diesel/PODE (polyoxymethylene dimethyl ethers) blends on combustion and emission characteristics in a heavy duty diesel engine

    Jialin Liu;Hu Wang;Ying Li;Zunqing Zheng

  • Effects of n-butanol, 2-butanol, and methyl octynoate addition to diesel fuel on combustion and emissions over a wide range of exhaust gas recirculation (EGR) rates

    Haifeng Liu;Shanju Li;Zunqing Zheng;Jia Xu

  • Experimental study on diesel conventional and low temperature combustion by fueling four isomers of butanol

    Zunqing Zheng;Changle Li;Haifeng Liu;Yan Zhang

  • Experimental study on combustion and emissions of dual fuel RCCI mode fueled with biodiesel/n-butanol, biodiesel/2,5-dimethylfuran and biodiesel/ethanol

    Zunqing Zheng;Mingtao Xia;Haifeng Liu;Xiaofeng Wang

  • Experimental and numerical study on different dual-fuel combustion modes fuelled with gasoline and diesel

    Binbin Yang;Mingfa Yao;Wai K. Cheng;Yu Li

  • Experimental and simulation investigation of the combustion characteristics and emissions using n-butanol/biodiesel dual-fuel injection on a diesel engine

    Haifeng Liu;Xin Wang;Zunqing Zheng;Jingbo Gu

  • Study of the control strategies on soot reduction under early-injection conditions on a diesel engine

    Haifeng Liu;Shuaiying Ma;Zhong Zhang;Zunqing Zheng

  • Experimental study of n-butanol addition on performance and emissions with diesel low temperature combustion

    Quanchang Zhang;Mingfa Yao;Zunqing Zheng;Haifeng Liu

  • Experimental study on combustion and emissions of n-butanol/biodiesel under both blended fuel mode and dual fuel RCCI mode

    Zunqing Zheng;Mingtao Xia;Haifeng Liu;Ran Shang

  • Experimental study of RCCI combustion and load extension in a compression ignition engine fueled with gasoline and PODE

    Laihui Tong;Hu Wang;Zunqing Zheng;Rolf Reitz

  • Study on the controlling strategies of homogeneous charge compression ignition combustion with fuel of dimethyl ether and methanol

    Mingfa Yao;Zheng Chen;Zunqing Zheng;Bo Zhang

  • Combustion and emissions of 2,5-dimethylfuran addition on a diesel engine with low temperature combustion

    Quanchang Zhang;Guisheng Chen;Zunqing Zheng;Haifeng Liu

  • Development of a combined reduced primary reference fuel-alcohols (methanol/ethanol/propanols/butanols/n-pentanol) mechanism for engine applications

    Xinlei Liu;Hu Wang;Zunqing Zheng;Jialin Liu

  • A parametric study for enabling reactivity controlled compression ignition (RCCI) operation in diesel engines at various engine loads

    Yifeng Wang;Mingfa Yao;Tie Li;Weijing Zhang

  • Experimental study on the combustion and emissions fueling biodiesel/n-butanol, biodiesel/ethanol and biodiesel/2,5-dimethylfuran on a diesel engine

    Zunqing Zheng;XiaoFeng Wang;Xiaofan Zhong;Bin Hu

  • Effects of Inlet Pressure and Octane Numbers on Combustion and Emissions of a Homogeneous Charge Compression Ignition (HCCI) Engine

    Haifeng Liu;Mingfa Yao;Bo Zhang;Zunqing Zheng

Frequent Co-Authors

Mingfa Yao
Mingfa Yao Tianjin University
Haifeng Liu
Haifeng Liu Tianjin University
Hu Wang
Hu Wang Tianjin University
Rolf D. Reitz
Rolf D. Reitz University of Wisconsin–Madison
Zhandong Wang
Zhandong Wang University of Science and Technology of China
Haozhong Huang
Haozhong Huang Guangxi University
Hongming Xu
Hongming Xu University of Birmingham

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