H-Index & Metrics Best Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Chemistry D-index 55 Citations 9,479 358 World Ranking 6778 National Ranking 907

Overview

What is he best known for?

The fields of study he is best known for:

  • Thermodynamics
  • Oxygen
  • Carbon dioxide

Hydrate, Methane, Clathrate hydrate, Porous medium and Mineralogy are his primary areas of study. His research in Hydrate intersects with topics in Petroleum engineering, Thermodynamics, Dissociation, Saturation and Cabin pressurization. His Methane research is multidisciplinary, incorporating elements of Natural gas, Geotechnical engineering, Shear, Triaxial shear test and Heat transfer.

His study in Clathrate hydrate is interdisciplinary in nature, drawing from both Inorganic chemistry, Fossil fuel, Tetrahydrofuran and Gas separation. Yongchen Song has researched Porous medium in several fields, including Chemical engineering and Relative permeability. The various areas that Yongchen Song examines in his Mineralogy study include Global warming, Composite material, Carbon dioxide and Hydrate bearing sediments.

His most cited work include:

  • Evaluation of gas production from methane hydrates using depressurization, thermal stimulation and combined methods (184 citations)
  • Analyzing the process of gas production for natural gas hydrate using depressurization (177 citations)
  • Hydrogen production from catalytic steam reforming of biodiesel byproduct glycerol: Issues and challenges (152 citations)

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

Yongchen Song mainly focuses on Hydrate, Porous medium, Clathrate hydrate, Methane and Saturation. His Hydrate research integrates issues from Natural gas, Thermodynamics, Mineralogy, Dissociation and Chemical engineering. His Porous medium course of study focuses on Relative permeability and Capillary pressure.

As a part of the same scientific study, Yongchen Song usually deals with the Clathrate hydrate, concentrating on Inorganic chemistry and frequently concerns with Molecule. His Methane research is multidisciplinary, relying on both Hydrate dissociation, Geotechnical engineering, Overburden pressure, Heat transfer and Cabin pressurization. His Saturation study combines topics in areas such as Capillary action, Capillary number, Permeability and Supercritical fluid.

He most often published in these fields:

  • Hydrate (43.48%)
  • Porous medium (30.64%)
  • Clathrate hydrate (28.99%)

What were the highlights of his more recent work (between 2019-2021)?

  • Hydrate (43.48%)
  • Clathrate hydrate (28.99%)
  • Chemical engineering (18.84%)

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

Yongchen Song mostly deals with Hydrate, Clathrate hydrate, Chemical engineering, Methane and Natural gas. The concepts of his Hydrate study are interwoven with issues in Permeability, Petroleum engineering, Saturation, Cabin pressurization and Bearing. His Saturation study combines topics from a wide range of disciplines, such as Geotechnical engineering and Porous medium.

His Clathrate hydrate research includes themes of Chemical physics, In situ, Thermodynamics, Nucleation and Kinetics. His study in the field of Graphene is also linked to topics like Macromolecule. As part of one scientific family, Yongchen Song deals mainly with the area of Methane, narrowing it down to issues related to the Overburden pressure, and often Composite material.

Between 2019 and 2021, his most popular works were:

  • Kinetic enhancement of capturing and storing greenhouse gas and volatile organic compound: Micro-mechanism and micro-structure of hydrate growth (33 citations)
  • Cementation Failure Behavior of Consolidated Gas Hydrate‐Bearing Sand (23 citations)
  • Microstructure Evolution of Hydrate-Bearing Sands During Thermal Dissociation and Ensued Impacts on the Mechanical and Seepage Characteristics (18 citations)

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

  • Thermodynamics
  • Oxygen
  • Carbon dioxide

Yongchen Song mainly investigates Hydrate, Clathrate hydrate, Chemical engineering, Saturation and Natural gas. He combines subjects such as Multiphase flow, Bearing and Petroleum engineering with his study of Hydrate. His work carried out in the field of Clathrate hydrate brings together such families of science as Phase transition, Thermodynamics, Permeability, Mineralogy and Methane.

Yongchen Song interconnects Kinetics, Scientific method, Adsorption and Lamellar structure in the investigation of issues within Chemical engineering. His research integrates issues of Relative permeability, Consolidation, Geotechnical engineering, Shear and Porous medium in his study of Saturation. His Porous medium research is multidisciplinary, incorporating perspectives in Convection, Petrology and Reservoir heterogeneity.

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

Analyzing the process of gas production for natural gas hydrate using depressurization

Jiafei Zhao;Zihao Zhu;Yongchen Song;Weiguo Liu.
Applied Energy (2015)

267 Citations

Evaluation of gas production from methane hydrates using depressurization, thermal stimulation and combined methods

Yongchen Song;Chuanxiao Cheng;Jiafei Zhao;Zihao Zhu.
Applied Energy (2015)

210 Citations

Hydrogen production from catalytic steam reforming of biodiesel byproduct glycerol: Issues and challenges

Binlin Dou;Yongchen Song;Chao Wang;Haisheng Chen.
Renewable & Sustainable Energy Reviews (2014)

199 Citations

The status of natural gas hydrate research in China: A review

Yongchen Song;Lei Yang;Jiafei Zhao;Weiguo Liu.
Renewable & Sustainable Energy Reviews (2014)

160 Citations

Solar radiation transfer and performance analysis of an optimum photovoltaic/thermal system

Jiafei Zhao;Yongchen Song;Wei-Haur Lam;Weiguo Liu.
Energy Conversion and Management (2011)

138 Citations

Solid sorbents for in-situ CO2 removal during sorption-enhanced steam reforming process: A review

Binlin Dou;Chao Wang;Yongchen Song;Haisheng Chen.
Renewable & Sustainable Energy Reviews (2016)

135 Citations

Enhanced CH4 recovery and CO2 storage via thermal stimulation in the CH4/CO2 replacement of methane hydrate

Lunxiang Zhang;Lei Yang;Jiaqi Wang;Jiafei Zhao.
Chemical Engineering Journal (2017)

125 Citations

Mechanical behavior of gas‐saturated methane hydrate‐bearing sediments

Masayuki Hyodo;Yanghui Li;Yanghui Li;Jun Yoneda;Yukio Nakata.
Journal of Geophysical Research (2013)

118 Citations

Analysis of heat transfer effects on gas production from methane hydrate by depressurization

Jiafei Zhao;Di Liu;Mingjun Yang;Yongchen Song.
International Journal of Heat and Mass Transfer (2014)

114 Citations

Fractal analysis and its impact factors on pore structure of artificial cores based on the images obtained using magnetic resonance imaging

Heming Wang;Yu Liu;Yongchen Song;Yuechao Zhao.
Journal of Applied Geophysics (2012)

111 Citations

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