Alessia Arteconi

3.6k total citations · 1 hit paper
115 papers, 2.8k citations indexed

About

Alessia Arteconi is a scholar working on Building and Construction, Electrical and Electronic Engineering and Mechanical Engineering. According to data from OpenAlex, Alessia Arteconi has authored 115 papers receiving a total of 2.8k indexed citations (citations by other indexed papers that have themselves been cited), including 53 papers in Building and Construction, 48 papers in Electrical and Electronic Engineering and 46 papers in Mechanical Engineering. Recurrent topics in Alessia Arteconi's work include Building Energy and Comfort Optimization (52 papers), Smart Grid Energy Management (36 papers) and Refrigeration and Air Conditioning Technologies (25 papers). Alessia Arteconi is often cited by papers focused on Building Energy and Comfort Optimization (52 papers), Smart Grid Energy Management (36 papers) and Refrigeration and Air Conditioning Technologies (25 papers). Alessia Arteconi collaborates with scholars based in Italy, Belgium and United Kingdom. Alessia Arteconi's co-authors include Fabio Polonara, Neil Hewitt, Alice Mugnini, Caterina Brandoni, Lieve Helsen, Giovanni Di Nicola, Gabriele Comodi, Dieter Patteeuw, Luca Cioccolanti and William D’haeseleer and has published in prestigious journals such as SHILAP Revista de lepidopterología, Applied Energy and Energy Policy.

In The Last Decade

Alessia Arteconi

111 papers receiving 2.7k citations

Hit Papers

State of the art of thermal storage for demand-side manag... 2012 2026 2016 2021 2012 100 200 300 400

Peers

Alessia Arteconi
Alessia Arteconi
Citations per year, relative to Alessia Arteconi Alessia Arteconi (= 1×) peers Gabriele Comodi

Countries citing papers authored by Alessia Arteconi

Since Specialization
Citations

This map shows the geographic impact of Alessia Arteconi's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Alessia Arteconi with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Alessia Arteconi more than expected).

Fields of papers citing papers by Alessia Arteconi

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Alessia Arteconi. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Alessia Arteconi. The network helps show where Alessia Arteconi may publish in the future.

Co-authorship network of co-authors of Alessia Arteconi

This figure shows the co-authorship network connecting the top 25 collaborators of Alessia Arteconi. A scholar is included among the top collaborators of Alessia Arteconi based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Alessia Arteconi. Alessia Arteconi is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Mugnini, Alice, et al.. (2024). Charge reduction analysis in a water-cooling machine working with R290. International Journal of Refrigeration. 171. 66–81. 2 indexed citations
2.
Mugnini, Alice, et al.. (2024). Model predictive controls for residential buildings with heat pumps: Experimentally validated archetypes to simplify the large-scale application. Energy and Buildings. 320. 114632–114632. 9 indexed citations
3.
Arteconi, Alessia, et al.. (2024). Design energy flexibility within a comfort and climate box – An experimental evaluation of the internal heat pump control effects. Applied Thermal Engineering. 254. 123842–123842. 7 indexed citations
4.
Mugnini, Alice, Gabriele Comodi, & Alessia Arteconi. (2024). Heat pumps to upgrade existing CHP-DHN systems towards new generation thermal networks. Energy Reports. 12. 820–833. 4 indexed citations
6.
Najafabadi, Hamed Abedini, et al.. (2023). A comprehensive analysis of binary mixtures as working fluid in high temperature heat pumps. Energy Conversion and Management. 277. 116652–116652. 53 indexed citations
7.
Najafabadi, Hamed Abedini, Sebastiano Tomassetti, Giovanni Di Nicola, Sylvain Quoilin, & Alessia Arteconi. (2023). Zeotropic mixtures R1234ze(Z)/acetone and R1234ze(Z)/isohexane as refrigerants in high temperature heat pumps: Influence of the accuracy in thermodynamic properties evaluations. International Journal of Refrigeration. 152. 93–109. 7 indexed citations
8.
Mugnini, Alice, Fabio Polonara, & Alessia Arteconi. (2023). Quantification of the energy flexibility of residential building clusters: Impact of long-term refurbishment strategies of the italian building stock. Energy and Buildings. 296. 113416–113416. 8 indexed citations
9.
Mugnini, Alice, et al.. (2023). Role of Non-Adiabatic Capillary Tube in Water Cooler Performance. Energies. 16(3). 1322–1322. 1 indexed citations
10.
Arteconi, Alessia, et al.. (2022). Energy and exergy analysis of a pilot plant for the combined production of cooling and electricity from a low temperature heat source through an absorption process. SPIRE - Sciences Po Institutional REpository. 2 indexed citations
11.
Arteconi, Alessia, et al.. (2021). Influence of internal control simplifications in heat pump system modelling for energy flexibility evaluations. Building Simulation Conference proceedings. 17. 3 indexed citations
12.
Coccia, Gianluca, Alice Mugnini, Fabio Polonara, & Alessia Arteconi. (2021). Artificial-neural-network-based model predictive control to exploit energy flexibility in multi-energy systems comprising district cooling. Energy. 222. 119958–119958. 46 indexed citations
13.
Mugnini, Alice, Gianluca Coccia, Fabio Polonara, & Alessia Arteconi. (2021). Energy Flexibility as Additional Energy Source in Multi-Energy Systems with District Cooling. Energies. 14(2). 519–519. 11 indexed citations
14.
Mugnini, Alice, Gianluca Coccia, Fabio Polonara, & Alessia Arteconi. (2019). Potential of District Cooling Systems: A Case Study on Recovering Cold Energy from Liquefied Natural Gas Vaporization. Energies. 12(15). 3027–3027. 12 indexed citations
15.
Arteconi, Alessia, Luca Del Zotto, Khamid Mahkamov, et al.. (2018). Multi-Country Analysis on Energy Savings in Buildings by Means of a Micro-Solar Organic Rankine Cycle System: A Simulation Study. Environments. 5(11). 119–119. 2 indexed citations
16.
Arteconi, Alessia, et al.. (2014). Performance analysis of a carbon dioxide heat pump installed in a residential application. IRIS eCampus Telematic University (Università degli Studi eCampus). 1 indexed citations
17.
Arteconi, Alessia, et al.. (2012). A techno-economic optimization for micro-scale LNG plants. IRIS eCampus Telematic University (Università degli Studi eCampus). 1 indexed citations
18.
Arteconi, Alessia, et al.. (2010). Greenhouse Gas emissions of heavy-duty vehicles fuelled by natural gas. IRIS eCampus Telematic University (Università degli Studi eCampus). 2 indexed citations
19.
Arteconi, Alessia, et al.. (2010). Prospects for micro-CHP technology in the residential sector. IRIS eCampus Telematic University (Università degli Studi eCampus). 1 indexed citations
20.
Arteconi, Alessia, et al.. (2009). Energy and economic analysis of small-scale distributed generation in the residential sector. IRIS eCampus Telematic University (Università degli Studi eCampus). 2 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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