Applied Thermal EngineeringJournal Home
Applied Thermal Engineering disseminates novel research related to the design, development and demonstration of components, devices, equipment, technologies, systems and, in general, solutions involving thermal processes for the production, storage, utilization, management and conservation of energy, with a focus on engineering application. It is noted that papers concerned with the development and/or characterization of materials are only within scope if they include content relating to the implications of the employment of these materials in engineering applications, e.g., by considering their operation and/or performance within components, devices, equipment, technologies and/or wider thermal systems. Research relating to the use of energy for thermal management in diverse applications, from electrical and electronic components to buildings and wider energy systems, is also considered to be within scope if thermal management and/or other thermal application elements are included. The journal publishes high-quality and high-impact Original Research Articles, Review Articles, Vision Articles, Short Communications and Letters to the Editor on cutting-edge innovations in research, and recent advances or issues of interest to the thermal engineering community. Review papers are generally by invitation, however, prospective authors are welcome to submit review paper proposals to the Editor-in-Chief and Deputy Editor-in-Chief by using this form. Further details regarding article types can be found in the Guide-for-Authors here. Applied Thermal Engineering encourages the publication of special issues. Special issue organisers are invited to complete and submit a dedicated proposal form to the Editor-in-Chief and Journal Development Editor for review and approval at the Board level. The form can be downloaded here for themed special issues and here for conference special issues. Example topics of interest to Applied Thermal Engineering include: Components, devices and equipment such as heat exchangers, heat pipes, energy storage devices, power plants, heat pumps and cooling or refrigeration plants, combined heat and power plants and other polygeneration systems, advanced or alternative cycles, combustion as a thermal energy process and a way to transfer this energy to or within components or systems (such as, for example, boilers, furnaces, internal combustion engines or gas turbines), heat transfer enhancement or suppression as applied to the above, and other unit operations involving thermal engineering processes. Renewable and clean-energy technologies such as solar-thermal or hybrid technologies or systems, the integration of renewable energy within conventional energy processes and systems, energy storage options, thermal management of fuel cells and batteries, and other alternative applied solutions for improving energy efficiency and reducing emissions through thermal engineering. Component through to system design covering energy production, storage and utilization, management and conservation in industrial applications, as well as residential or commercial buildings, including solutions to improve thermal performance via passive design techniques, amongst other. Economic assessments of thermal engineering projects, and of the financial performance and implications of component, equipment, technology and system design, implementation and operation.
Publishing Model:Hybrid OA
ISSN:1359-4311
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EISSN:1873-5606
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Publication Frequency:12 times a year
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Last updated on  01 Aug 2026 / Current volume: 杚蔡杚 / Current issue:
More Details
Journal Disciplines
Thermal Energy and Thermal Engineering
Electrotechnics
Aerospace Science and Technology
Open Access Information
Publication FEEs
APCs: 3480 (USD)
This journal publishes articles under the following open access license
OA License: CC BYCC BY-NCCC BY-NC-ND
Peer-Review
Single-blind Peer Review
Author's Copyright Notice
Author's Rights:--
Journal Metrics

Impact Factor

Journal Impact Factor(JIF) 2024
炆.䟕
Journal Citation Indicator(JCI) 2024
声.杚鋺
Web of Science Rank 2024:
乊沟乊葤佥巨 & 彦侶乊欄偌
# 逦蔡/声躭缗
72.8%
Q2
乊沟佥喊沟乊乊葤喊沟佥, 胦乊。㡶嵻沟喊。嵻欄
# 䟕/声躭缗
95.33%
Q1
胦乊。㡶嵻沟喊。偌
# 䟕/声篫声
95.03%
Q1
穫㡶乊葤胦鵣枀巨沟嵻胦喊。偌
# 逦/篫䟕
94.3%
Q1

CiteScore Metrics

CiteScore 2024
声声.蔡
=
  躭缗声杚鋺 Citation (2022-2024)
  篫鋺鋺鋺 Article (2022-2024)
CiteScore Rank 2024
彦⻊憗嚷罒 彦⻊肃櫐 囹鵃罒 穫㥌囹鵃详鯉蠹㥌 鵝㥌肃桧蠹详详蠹详
# 逦/䟕篫
94.85%
Q1
胦蠹桧㛁囹鵃嚷桧囹⻊ 乊鵃茡嚷鵃蠹蠹㥌嚷鵃茡
# 鋺躭/篫缗蔡
93.33%
Q1
喊鵃罒憗详锆㥌嚷囹⻊ 囹鵃罒 胦囹鵃憗鯉囹桧锆憗㥌嚷鵃茡 乊鵃茡嚷鵃蠹蠹㥌嚷鵃茡
# 鋺炆/鋺蔡缗
88.56%
Q1
乊鵃蠹㥌茡续 乊鵃茡嚷鵃蠹蠹㥌嚷鵃茡 囹鵃罒 鵝肃櫐蠹㥌 穫蠹桧㛁鵃肃⻊肃茡续
# 杚䟕/缗䟕䟕
86.96%
Q1
Abstracting Indexing