Baki M. Cetegen

5.9k total citations · 1 hit paper
108 papers, 4.7k citations indexed

About

Baki M. Cetegen is a scholar working on Computational Mechanics, Aerospace Engineering and Safety, Risk, Reliability and Quality. According to data from OpenAlex, Baki M. Cetegen has authored 108 papers receiving a total of 4.7k indexed citations (citations by other indexed papers that have themselves been cited), including 68 papers in Computational Mechanics, 50 papers in Aerospace Engineering and 31 papers in Safety, Risk, Reliability and Quality. Recurrent topics in Baki M. Cetegen's work include Combustion and flame dynamics (45 papers), Fire dynamics and safety research (31 papers) and Fluid Dynamics and Turbulent Flows (25 papers). Baki M. Cetegen is often cited by papers focused on Combustion and flame dynamics (45 papers), Fire dynamics and safety research (31 papers) and Fluid Dynamics and Turbulent Flows (25 papers). Baki M. Cetegen collaborates with scholars based in United States, Ireland and Finland. Baki M. Cetegen's co-authors include E. E. Zukoski, TOSHI KUBOTA, Michael W. Renfro, Alper Ozturk, Swetaprovo Chaudhuri, Tarek A. Ahmed, Saptarshi Basu, Eric H. Jordan, Stanislav Kostka and Maurice Gell and has published in prestigious journals such as Journal of Fluid Mechanics, Journal of Power Sources and Journal of The Electrochemical Society.

In The Last Decade

Baki M. Cetegen

108 papers receiving 4.5k citations

Hit Papers

Entrainment in fire plumes 1981 2026 1996 2011 1981 100 200 300 400

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Baki M. Cetegen United States 38 2.3k 2.1k 1.9k 874 755 108 4.7k
Derek Dunn‐Rankin United States 31 1.8k 0.8× 990 0.5× 463 0.2× 941 1.1× 518 0.7× 150 3.6k
M. G. Mungal United States 45 6.3k 2.7× 3.6k 1.7× 690 0.4× 2.0k 2.3× 155 0.2× 161 7.8k
Simone Hochgreb United Kingdom 40 3.4k 1.5× 977 0.5× 806 0.4× 3.3k 3.7× 659 0.9× 201 5.3k
Liang Gong China 40 1.1k 0.5× 1.1k 0.5× 545 0.3× 355 0.4× 374 0.5× 198 4.6k
Thomas Sattelmayer Germany 41 5.3k 2.3× 2.3k 1.1× 1.7k 0.9× 3.5k 4.0× 319 0.4× 445 6.6k
Michael F. Modest United States 43 5.1k 2.2× 1.3k 0.6× 398 0.2× 635 0.7× 270 0.4× 267 6.0k
Yannis Hardalupas United Kingdom 34 3.0k 1.3× 566 0.3× 262 0.1× 1.6k 1.8× 194 0.3× 209 4.1k
David L. Urban United States 28 839 0.4× 907 0.4× 1.3k 0.7× 349 0.4× 166 0.2× 142 2.1k
James S. T’ien United States 29 1.8k 0.8× 1.4k 0.7× 1.8k 0.9× 538 0.6× 119 0.2× 144 2.8k
J.A. van Oijen Netherlands 39 4.6k 2.0× 1.5k 0.7× 1.8k 0.9× 3.7k 4.3× 394 0.5× 206 5.5k

Countries citing papers authored by Baki M. Cetegen

Since Specialization
Citations

This map shows the geographic impact of Baki M. Cetegen'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 Baki M. Cetegen with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Baki M. Cetegen more than expected).

Fields of papers citing papers by Baki M. Cetegen

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Baki M. Cetegen. 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 Baki M. Cetegen. The network helps show where Baki M. Cetegen may publish in the future.

Co-authorship network of co-authors of Baki M. Cetegen

This figure shows the co-authorship network connecting the top 25 collaborators of Baki M. Cetegen. A scholar is included among the top collaborators of Baki M. Cetegen 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 Baki M. Cetegen. Baki M. Cetegen 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.
Chaudhuri, Swetaprovo, Stanislav Kostka, Michael W. Renfro, & Baki M. Cetegen. (2010). Blowoff dynamics of bluff body stabilized turbulent premixed flames. Combustion and Flame. 157(4). 790–802. 197 indexed citations
2.
Chaudhuri, Swetaprovo, Stanislav Kostka, Steven G. Tuttle, Michael W. Renfro, & Baki M. Cetegen. (2010). Blowoff mechanism of two dimensional bluff-body stabilized turbulent premixed flames in a prototypical combustor. Combustion and Flame. 158(7). 1358–1371. 76 indexed citations
3.
Roy, Arnab, Mustafa Fazıl Serincan, Ugur Pasaogullari, Michael W. Renfro, & Baki M. Cetegen. (2009). Transient Computational Analysis of Proton Exchange Membrane Fuel Cells During Load Change and Non-Isothermal Start-Up. 429–438. 3 indexed citations
5.
Basu, Saptarshi & Baki M. Cetegen. (2008). Modeling of Thermophysical Processes in Liquid Ceramic Precursor Droplets Heated by Monochromatic Irradiation. Journal of Heat Transfer. 130(7). 9 indexed citations
6.
Basu, Saptarshi & Baki M. Cetegen. (2008). Modeling of liquid ceramic precursor droplets in a high velocity oxy-fuel flame jet. Acta Materialia. 56(12). 2750–2759. 33 indexed citations
7.
Ozturk, Alper & Baki M. Cetegen. (2004). Modeling of plasma assisted formation of precipitates in zirconium containing liquid precursor droplets. Materials Science and Engineering A. 384(1-2). 331–351. 45 indexed citations
8.
Ozturk, Alper & Baki M. Cetegen. (2004). Modeling of plasma assisted formation of precipitates in zirconium containing liquid precursor droplets. Materials Science and Engineering A. 384(1-2). 331–351. 38 indexed citations
9.
Xie, Lijing, Maurice Gell, Nitin P. Padture, et al.. (2004). Superior Thermal Barrier Coatings Using Solution Precursor Plasma Spray. Journal of Thermal Spray Technology. 13(1). 57–65. 6 indexed citations
10.
Cetegen, Baki M.. (1999). In-Situ Particle Temperature, Velocity, and Size Measurements in DC Arc Plasma Thermal Sprays. Journal of Thermal Spray Technology. 8(1). 57–67. 34 indexed citations
11.
Cetegen, Baki M.. (1998). A phenomenological model of near-field fire entrainment. Fire Safety Journal. 31(4). 299–312. 23 indexed citations
12.
Cetegen, Baki M., Yuhong Dong, & Marios Soteriou. (1998). Experiments on stability and oscillatory behavior of planar buoyant plumes. Physics of Fluids. 10(7). 1658–1665. 65 indexed citations
13.
Hermanson, James C. & Baki M. Cetegen. (1998). Mixing enhancement of non-uniform density turbulent jets interacting with normal shock waves. Symposium (International) on Combustion. 27(2). 2047–2053. 4 indexed citations
14.
Cetegen, Baki M., et al.. (1996). Experiments on the oscillatory behavior of buoyant plumes of helium and helium-air mixtures. Physics of Fluids. 8(11). 2974–2984. 104 indexed citations
15.
Cetegen, Baki M., et al.. (1992). Combustion of a stretched carbon monoxide ligament with radiative heat losses. Combustion and Flame. 91(2). 143–152. 4 indexed citations
16.
Cetegen, Baki M. & William A. Sirignano. (1990). Study of Mixing and Reaction in the Field of A Vortex. Combustion Science and Technology. 72(4-6). 157–181. 31 indexed citations
17.
Cetegen, Baki M., et al.. (1987). Effective mixing processes for SOx, sorbent, and coal-combustion products. Final report, October 1984-July 1986. OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information). 1 indexed citations
18.
Cetegen, Baki M. & William A. Sirignano. (1987). Study of mixing and reaction in the field of a vortex. 1 indexed citations
19.
Zukoski, E. E., Baki M. Cetegen, & TOSHI KUBOTA. (1985). Visible structure of buoyant diffusion flames. Symposium (International) on Combustion. 20(1). 361–366. 330 indexed citations
20.
Zukoski, E. E., TOSHI KUBOTA, & Baki M. Cetegen. (1981). Entrainment in the near field of a fire plume. NASA STI/Recon Technical Report N. 82. 26517. 6 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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