SCOPUS
International Journal of Ambient Energy
Taylor & Francis, United Kingdom
International Journal of Ambient Energy is an academic journal published by Taylor & Francis (United Kingdom). Identifiers: ISSN 0143-0750, eISSN 2162-8246. Indexed in SCOPUS. Metrics: CiteScore 6.3, SJR 0.442, SNIP 0.81. tlooto lists 3,491 papers from this journal.
CiteScore
6.30
Scopus citation metric
SJR
0.442
SCImago rank
SNIP
0.81
Source normalized impact
Percentage rank
-
JIF percentile rank
Journal profile
- ISSN
- 0143-0750
- eISSN
- 2162-8246
- Abbreviation
- -
- Publisher
- Taylor & Francis
- Country
- United Kingdom
Web of Science categories
No Web of Science category data available.
Scopus ASJC categories
2105 Renewable Energy2215 Building and Construction
Papers in this journal
Recent papers
- Energy storage technologies for sustainable power systems: a review on decarbonisation, decentralisation, and digitalisation
2026
- Thermo-hydrodynamic analysis of Al
2
O
3
nanofluid convection in a porous vertical annulus: a comparative investigation of ethylene glycol, engine oil, and kerosene base fluids under MHD radiative, and thermo-diffusive conditions
2026
- Hybrid time series forecasting of poultry manure–based biogas potential: a global renewable energy and greenhouse gas mitigation perspective
2026
- Dynamic load scheduling based on virtual energy storage and solar power prediction in smart grid
2026
- Dissipative heat and nanoparticle aggregation impact on the radiative heat effect of time-dependent micropolar nanofluid considering Brugman with Maxwell model
2026 · 1 citations
Most cited papers
- Low temperature heat storage with phase change materials
1980 · 263 citations
- An efficient LoRa-based smart agriculture management and monitoring system using wireless sensor networks
2021 · 202 citations
- A comprehensive review of different types of solar photovoltaic cells and their applications
2019 · 169 citations
- Wave power conversion by point absorbers - A Norwegian project
1982 · 152 citations
- Energy and exergy analysis of 36 W solar photovoltaic module
2014 · 146 citations