Guoming Chen

9.1k total citations · 1 hit paper
293 papers, 6.0k citations indexed

About

Guoming Chen is a scholar working on Mechanical Engineering, Statistics, Probability and Uncertainty and Mechanics of Materials. According to data from OpenAlex, Guoming Chen has authored 293 papers receiving a total of 6.0k indexed citations (citations by other indexed papers that have themselves been cited), including 128 papers in Mechanical Engineering, 98 papers in Statistics, Probability and Uncertainty and 94 papers in Mechanics of Materials. Recurrent topics in Guoming Chen's work include Risk and Safety Analysis (95 papers), Structural Integrity and Reliability Analysis (60 papers) and Non-Destructive Testing Techniques (58 papers). Guoming Chen is often cited by papers focused on Risk and Safety Analysis (95 papers), Structural Integrity and Reliability Analysis (60 papers) and Non-Destructive Testing Techniques (58 papers). Guoming Chen collaborates with scholars based in China, Canada and United States. Guoming Chen's co-authors include Xinhong Li, Yuanjiang Chang, Jihao Shi, Hongwei Zhu, Depeng Kong, Ping Ping, Changhang Xu, Xiaokang Yin, Rongqi Peng and Yuan Zhu and has published in prestigious journals such as Renewable and Sustainable Energy Reviews, Journal of Hazardous Materials and Journal of Cleaner Production.

In The Last Decade

Guoming Chen

284 papers receiving 5.8k citations

Hit Papers

A novel battery thermal m... 2019 2026 2021 2023 2019 100 200 300

Author Peers

Peers are selected by citation overlap in the author's most active subfields. citations · hero ref

Author Last Decade Papers Cites
Guoming Chen 2.2k 1.7k 1.3k 1.3k 1.0k 293 6.0k
Baoping Cai 2.8k 1.3× 2.3k 1.4× 1.3k 1.0× 1.0k 0.8× 883 0.9× 235 8.5k
Vikram Garaniya 1.2k 0.6× 1.6k 1.0× 463 0.3× 1.0k 0.8× 390 0.4× 152 4.7k
Athanasios Kolios 1.5k 0.7× 653 0.4× 865 0.6× 935 0.7× 1.1k 1.0× 199 5.5k
N.C. Markatos 1.5k 0.7× 413 0.2× 260 0.2× 529 0.4× 195 0.2× 161 6.0k
Ming Yang 633 0.3× 1.9k 1.1× 171 0.1× 722 0.6× 543 0.5× 250 4.3k
Zhirong Wang 609 0.3× 1.1k 0.6× 552 0.4× 413 0.3× 453 0.4× 334 7.5k
Paolo Gardoni 764 0.3× 2.5k 1.5× 569 0.4× 738 0.6× 8.1k 7.9× 338 10.9k
John Dalsgaard Sørensen 933 0.4× 2.0k 1.2× 1.0k 0.8× 610 0.5× 2.4k 2.3× 285 5.2k
Shun‐Peng Zhu 5.6k 2.5× 3.2k 1.9× 6.7k 5.0× 184 0.1× 2.5k 2.5× 252 11.6k
Yongming Liu 1.8k 0.8× 723 0.4× 2.3k 1.7× 170 0.1× 2.3k 2.2× 288 5.7k

Countries citing papers authored by Guoming Chen

Since Specialization
Citations

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

Fields of papers citing papers by Guoming Chen

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Guoming Chen. 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 Guoming Chen. The network helps show where Guoming Chen may publish in the future.

Co-authorship network of co-authors of Guoming Chen

This figure shows the co-authorship network connecting the top 25 collaborators of Guoming Chen. A scholar is included among the top collaborators of Guoming Chen 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 Guoming Chen. Guoming Chen 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.
Liu, Xiuquan, et al.. (2024). Recoil control of workover riser system via fuzzy controller optimized by ACO. Ocean Engineering. 312. 119305–119305. 2 indexed citations
2.
Qiu, Na, Xiuquan Liu, Zhaowei Liu, et al.. (2024). Failure probability estimation of deepwater mooring platform/riser/wellhead coupled system under ISW. Ocean Engineering. 309. 118339–118339. 7 indexed citations
3.
Li, Xinhong, et al.. (2024). A risk-based maintenance decision model for subsea pipeline considering pitting corrosion growth. Process Safety and Environmental Protection. 184. 1306–1317. 14 indexed citations
4.
Chang, Yuanjiang, et al.. (2024). Stability of the wellbore wall during marine hydrate depressurization production based on a modified Drucker-Prager model. Fuel. 362. 130624–130624. 3 indexed citations
5.
Zhang, Xinqi, Jihao Shi, Junjie Li, et al.. (2024). Hydrogen jet and diffusion modeling by physics-informed graph neural network. Renewable and Sustainable Energy Reviews. 207. 114898–114898. 18 indexed citations
6.
Liu, Xiuquan, et al.. (2024). Three-dimensional VIV characteristics of the top-tensioned riser considering platform motion and pipe-soil coupling. Ocean Engineering. 313. 119626–119626. 4 indexed citations
8.
Qiu, Na, Xiuquan Liu, Yanwei Li, et al.. (2024). Dynamic catastrophe analysis of deepwater mooring platform/riser/wellhead coupled system under ISW. Reliability Engineering & System Safety. 246. 110084–110084. 18 indexed citations
9.
Li, Yanan, et al.. (2023). Experimental and Numerical Study for Gas Release and Dispersion on Offshore Platforms. Processes. 11(12). 3437–3437.
10.
Zhang, Xinqi, Jihao Shi, Ming Yang, et al.. (2023). Real-time pipeline leak detection and localization using an attention-based LSTM approach. Process Safety and Environmental Protection. 174. 460–472. 58 indexed citations
11.
Li, Xinhong, et al.. (2023). Dispersion modeling of underwater oil released from buried subsea pipeline considering current and wave. Ocean Engineering. 272. 113924–113924. 10 indexed citations
12.
Shi, Jihao, He Zhang, Junjie Li, et al.. (2023). Real-time natural gas explosion modeling of offshore platforms by using deep learning probability approach. Ocean Engineering. 276. 114244–114244. 30 indexed citations
13.
Yin, Xiaokang, et al.. (2023). A Dual Mode Nondestructive Evaluation Sensor With Simultaneous Inductive and Capacitive Outputs. IEEE Sensors Journal. 23(6). 6214–6224. 5 indexed citations
14.
Yuan, Xin’an, Wei Li, Guoming Chen, et al.. (2022). Visual Inspection of Irregular Cracks in Steel Structure by Double Gradient Fusion Algorithm Using Alternating Current Field Measurement Technique. IEEE Sensors Journal. 22(9). 8881–8890. 11 indexed citations
15.
Yin, Xiaokang, et al.. (2021). A Combined Inductive and Capacitive Non-Destructive Evaluation Technique Using a Single Spiral Coil Sensor. IEEE Sensors Journal. 21(16). 18187–18196. 21 indexed citations
16.
Chen, Guoming, Haihong Ma, Zhengfa Zhou, Fengmei Ren, & Weibing Xu. (2021). Effect of interaction from the reaction of carboxyl/epoxy hyperbranched polyesters on properties of feedstocks for metal injection molding. Materials Research Express. 9(1). 16506–16506. 4 indexed citations
17.
Wang, Kefan, et al.. (2019). Capacitive Imaging Technique for the Inspection of Composite Sucker Rod. Chinese Journal of Mechanical Engineering. 32(1). 15 indexed citations
18.
Yuan, Xin’an, Wei Li, Guoming Chen, et al.. (2018). Inner circumferential current field testing system with TMR sensor arrays for inner-wall cracks inspection in aluminum tubes. Measurement. 122. 232–239. 21 indexed citations
19.
Yuan, Xiaobing, Baoping Cai, Yunpeng Ma, et al.. (2018). Reliability Evaluation Methodology of Complex Systems Based on Dynamic Object-Oriented Bayesian Networks. IEEE Access. 6. 11289–11300. 19 indexed citations
20.
Yuan, Xin’an, Wei Li, Guoming Chen, et al.. (2017). Two-Step Interpolation Algorithm for Measurement of Longitudinal Cracks on Pipe Strings Using Circumferential Current Field Testing System. IEEE Transactions on Industrial Informatics. 14(2). 394–402. 36 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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