外文期刊订阅>期刊> INTERNATIONAL JOURNAL OF ENERGY RESEARCH

(被订阅7次)

  出版社: JOHN WILEY & SONS LTD
  期刊类型: 月刊
  影响因子: 1.928
  ISSN: 0363-907X
  所在领域: 化学化工   
 
 

The International Journal of Energy Research is dedicated to providing a multidisciplinary platform for the discussion of issues arising in energy research without the constraints imposed by...

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The International Journal of Energy Research is dedicated to providing a multidisciplinary platform for the discussion of issues arising in energy research without the constraints imposed by aiming at a restricted audience. It aims to reach all researchers, scientists, engineers, technology developers, planners and policy makers working in the areas of energy management, production, conversion, conservation, systems, technologies and applications, and their impact on the environment and sustainable development.

The subject matter of the Journal is concerned with the development and exploitation of both traditional and new energy sources, systems, technologies and applications. Interdisciplinary subjects in the area of novel energy systems and applications are also encouraged. High-quality research papers are solicited in, but are not limited to, the following areas:

  • Energy conversion, conservation and management
  • Energy storage
  • Hydrogen energy and fuel cells
  • Hydrogen production technologies
  • Micro- and nano-energy systems and technologies
  • Exergy analysis
  • Thermodynamic optimization
  • Electronics cooling
  • Nuclear energy
  • Renewable energy (e.g. geothermal, solar, wind, hydro, tidal wave, biomass)
  • Energy and sustainable development
  • Energy and environmental impact
  • CO2 capturing and storage technologies
  • Clean coal technologies
  • Biofuels and alternatives
  • Life cycle assessment
  • Hybrid/integrated energy systems
  • Heat pumps and heat pipes
  • Advanced power generation and refrigeration systems
  • Energy system analysis and modelling

Submitted manuscripts should report on original works in the area of novel energy systems and applications which may be expected to address current technical, technological, economic, environmental, performance, sustainability problems and bring potential solutions through improvements in efficiency, cost effectiveness, use of resources and sustainability, as well as improved energy security and improvements to the environment.

IJER publishes high-quality original papers, review articles and short communications in the area of novel energy systems and applications. Those pertaining to modeling, theory, analysis, simulations, technology development, experiments, visualization and measurement techniques are also appropriate for the journal. IJER will also include letters to the editor, book reviews, an events calendar etc.

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INTERNATIONAL JOURNAL OF ENERGY RESEARCH

中文名:   缩写名: Int. J. Energy Res.

收入刊期 2012年   2010年   2009年  

最新期2012年36-6期内容

1 A review on conversion of triglycerides to on-specification diesel fuels without additional inputs
2 Numerical method for determining the allowable medium temperature during the heating operation of a thick-walled boiler element in a supercritical steam power plant
3 Development of a steady-state mathematical model for multistage flash (MSF) desalination plant
4 Comparative study based on exergy analysis of solar air heater collector using thermal energy storage
5 Foresight analysis of wind power in Turkey
6 Optimization of autonomous hybrid systems with hydrogen storage: Life cycle assessment
7 A modeling approach for investigating climate change impacts on renewable energy utilization
8 Design for a BlackLight Power multi-cell thermally coupled reactor based on hydrogen catalyst systems
9 Non-gray modeling of radiative heat transfer in hydrogen combustion scenarios
10 Numerical analysis of operation conditions and design aspects of a sulfur trioxide decomposer for solar energy conversion
11 Microbial electrolysis cells for production of methane from CO2: long-term performance and perspectives
12 An experimental comparison between LPG and engine exhaust gas as energy source for an absorption refrigeration system
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