C
Chong Ding
Researcher at Taiyuan University of Technology
Publications - 6
Citations - 229
Chong Ding is an academic researcher from Taiyuan University of Technology. The author has contributed to research in topics: Combustion & Flue gas. The author has an hindex of 4, co-authored 6 publications receiving 105 citations.
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Journal ArticleDOI
Performance of a novel-type of heat flue in a coke oven based on high-temperature and low-oxygen diffusion combustion technology
Qian Xu,Zhenwei Zou,Yushi Chen,Kang Wang,Zhiwei Du,Junxiao Feng,Chong Ding,Ziqi Bai,Yong Zang,Yaxuan Xiong +9 more
TL;DR: Based on high-temperature and low-oxygen diffusion clean combustion technology, a novel type of heat flue in a coke oven was designed in this article, by changing the internal structure of the flue and the supply mode of the combustion-supporting gas, fuel zoning and diffusion combustion in the heat fue are achieved.
Journal ArticleDOI
A comparative investigation on the effect of different nanofluids on the thermal performance of two-phase closed thermosyphon
Qian Xu,Lin Liu,Junxiao Feng,Lihong Qiao,Chuqiao Yu,Shi Wenjun,Chong Ding,Yong Zang,Chun Chang,Yaxuan Xiong,Yulong Ding +10 more
TL;DR: In this article, the heat transfer performance of single and hybrid nanofluids in a two-phase closed thermosyphon was experimentally studied and compared with deionized water (DW).
Journal ArticleDOI
Performance Analysis of Novel Flue Gas Self-Circulated Burner Based on Low-NOx Combustion
TL;DR: In this paper, a self-circulating structure for flue gas was designed, with a corresponding low-nitrogen oxides (NOx) burner, and a three-dimensional finite element model was established.
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Performance analysis of a novel W-type radiant tube
TL;DR: In this article, a W-type radiant tube with a flue gas circulation structure was developed to improve the heating uniformity of the radiator tube and the heating efficiency of the workpiece.
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Influence of the operating parameters and nozzle characteristics on flat double-P radiant tube performance
TL;DR: In this article, a flat double-P radiant tube was designed to improve the heating uniformity of the radiator tube and the heating efficiency of the workpiece, and a new three-dimensional computational fluid dynamics modeling was conducted to discuss the heat transfer and combustion phenomenon.