H-Index & Metrics Best Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Engineering and Technology D-index 76 Citations 17,756 369 World Ranking 175 National Ranking 15

Overview

What is he best known for?

The fields of study he is best known for:

  • Thermodynamics
  • Combustion
  • Hydrogen

His primary areas of study are Combustion, Analytical chemistry, Hydrogen, Thermodynamics and Laminar flow. His Combustion study incorporates themes from Waste management, Natural gas, Chemical engineering and Volume. His studies examine the connections between Analytical chemistry and genetics, as well as such issues in Dilution, with regards to Nitrogen and Diluent.

His work carried out in the field of Hydrogen brings together such families of science as CHEMKIN, Stoichiometry, Chemical kinetics, Methane and Fraction. His work on Shock tube as part of general Thermodynamics research is often related to Critical radius, thus linking different fields of science. His studies in Laminar flow integrate themes in fields like Laminar flame speed, Premixed flame, Flame structure and Adiabatic flame temperature.

His most cited work include:

  • Measurements of laminar burning velocities for natural gas–hydrogen–air mixtures (379 citations)
  • Experimental and numerical study on laminar burning characteristics of premixed methane–hydrogen–air flames (308 citations)
  • Combustion and emissions of a DI diesel engine fuelled with diesel-oxygenate blends (253 citations)

What are the main themes of his work throughout his whole career to date?

His main research concerns Combustion, Analytical chemistry, Thermodynamics, Laminar flow and Hydrogen. The Combustion study combines topics in areas such as Waste management, Diesel fuel, Natural gas, Volume and Mechanics. His Analytical chemistry study combines topics in areas such as Premixed flame, Dilution, Adiabatic flame temperature and Methane.

Zuohua Huang has included themes like Turbulence and Diffusion flame in his Premixed flame study. His Laminar flow study integrates concerns from other disciplines, such as Laminar flame speed, Organic chemistry and Instability. His Hydrogen research is multidisciplinary, incorporating perspectives in NOx, Fraction, Biogas and Stoichiometry.

He most often published in these fields:

  • Combustion (40.46%)
  • Analytical chemistry (33.33%)
  • Thermodynamics (28.93%)

What were the highlights of his more recent work (between 2017-2021)?

  • Mechanics (16.98%)
  • Combustion (40.46%)
  • Thermodynamics (28.93%)

In recent papers he was focusing on the following fields of study:

Zuohua Huang spends much of his time researching Mechanics, Combustion, Thermodynamics, Laminar flow and Analytical chemistry. His studies in Mechanics integrate themes in fields like Premixed flame, Ignition system and Flame structure. In his research, Biogas and Nozzle is intimately related to Hydrogen, which falls under the overarching field of Combustion.

The study incorporates disciplines such as Chemical kinetics and Temperature coefficient in addition to Thermodynamics. As a part of the same scientific family, Zuohua Huang mostly works in the field of Laminar flow, focusing on Laminar flame speed and, on occasion, Methanol. His research in Analytical chemistry intersects with topics in NOx, Atmospheric temperature range and Dilution.

Between 2017 and 2021, his most popular works were:

  • An experimental and chemical kinetic modeling study of 1,3-butadiene combustion: Ignition delay time and laminar flame speed measurements (146 citations)
  • Effect of equivalence ratio on combustion and emissions of a dual-fuel natural gas engine ignited with diesel (52 citations)
  • Experimental investigation on effect of ethanol and di-ethyl ether addition on the spray characteristics of diesel/biodiesel blends under high injection pressure (31 citations)

In his most recent research, the most cited papers focused on:

  • Thermodynamics
  • Organic chemistry
  • Hydrogen

Zuohua Huang mainly investigates Mechanics, Combustion, Laminar flow, Turbulence and Thermodynamics. His research integrates issues of Particle image velocimetry, Ignition system, Syngas and Natural gas in his study of Combustion. His Laminar flow study incorporates themes from Gasoline and Laminar flame speed, Premixed flame.

His Laminar flame speed research integrates issues from Chemical kinetics, Thermochemistry and Analytical chemistry. Zuohua Huang interconnects Length scale, Hydrogen, Thermal diffusivity and Bunsen burner in the investigation of issues within Turbulence. He focuses mostly in the field of Thermodynamics, narrowing it down to topics relating to Temperature coefficient and, in certain cases, Hydrocarbon.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Measurements of laminar burning velocities for natural gas–hydrogen–air mixtures

Zuohua Huang;Yong Zhang;Ke Zeng;Bing Liu.
Combustion and Flame (2006)

565 Citations

Experimental and numerical study on laminar burning characteristics of premixed methane–hydrogen–air flames

Erjiang Hu;Zuohua Huang;Jiajia He;Chun Jin.
International Journal of Hydrogen Energy (2009)

415 Citations

Emission characteristics of a spark-ignition engine fuelled with gasoline-n-butanol blends in combination with EGR

Xiaolei Gu;Zuohua Huang;Jian Cai;Jing Gong.
Fuel (2012)

331 Citations

Experimental and analytical study on biodiesel and diesel spray characteristics under ultra-high injection pressure

Xiangang Wang;Zuohua Huang;Olawole Abiola Kuti;Wu Zhang.
International Journal of Heat and Fluid Flow (2010)

330 Citations

Combustion and emissions of a DI diesel engine fuelled with diesel-oxygenate blends

Yi Ren;Zuohua Huang;Haiyan Miao;Yage Di.
Fuel (2008)

322 Citations

Experimental investigation on regulated and unregulated emissions of a diesel engine fueled with ultra-low sulfur diesel fuel blended with biodiesel from waste cooking oil

Yage Di;C.S. Cheung;Zuohua Huang.
Science of The Total Environment (2009)

306 Citations

Experimental and modeling study on ignition delays of lean mixtures of methane, hydrogen, oxygen, and argon at elevated pressures

Yingjia Zhang;Zuohua Huang;Liangjie Wei;Jiaxiang Zhang.
Combustion and Flame (2012)

272 Citations

Experimental study on combustion characteristics of a spark-ignition engine fueled with natural gas–hydrogen blends combining with EGR

Erjiang Hu;Zuohua Huang;Bing Liu;Jianjun Zheng.
International Journal of Hydrogen Energy (2009)

259 Citations

Combustion behaviors of a direct-injection engine operating on various fractions of natural gas-hydrogen blends

Jinhua Wang;Zuohua Huang;Yu Fang;Bing Liu.
International Journal of Hydrogen Energy (2007)

232 Citations

Experimental investigation on performance and emissions of a spark-ignition engine fuelled with natural gas–hydrogen blends combined with EGR

Erjiang Hu;Zuohua Huang;Bing Liu;Jianjun Zheng.
International Journal of Hydrogen Energy (2009)

230 Citations

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