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Assist. Prof. Dr. Jinhong Liu | Flow Assurances | Best Researcher Award

Lecturer | Changzhou University | China

Chuanshuo Wang serves as a Graduate Tutor at Changzhou University, specializing in Petroleum and Natural Gas Engineering with a research focus on waxy crude oil pipeline flow assurance, drag reducer mechanisms, and energy-efficient oil-gas transportation technologies. He has led interdisciplinary research projects in collaboration with industry leaders including SINOPEC, PetroChina, and CNOOC, contributing to the optimization of pipeline transport of waxy oils and advancing industrial energy-saving practices. His work on drag reducer application mechanisms has demonstrated that low concentrations of drag reducer effectively reduce wax deposition and improve flow performance, providing both theoretical and practical guidance for pipeline operations. Wang has secured multiple research grants, including support from the National Natural Science Foundation of China and key provincial projects, reflecting the high impact and recognition of his research. He has published in high-impact journals such as The Canadian Journal of Chemical Engineering, RSC Advances, ACS Omega, Energy & Fuels, and contributed to patents in the field, demonstrating innovation in heat transfer optimization and pipeline energy management. His studies have clarified the dual mechanisms of wax deposition mitigation through heat transfer weakening and gelation/adhesion control, significantly influencing both academic understanding and industrial application of flow assurance strategies. Wang’s research bridges fundamental science and engineering practice, aiming to enhance pipeline efficiency, reduce operational energy costs, and ensure safe transport of waxy crude oil, positioning him as a leading figure in petroleum engineering research.

Featured Publications:

 

Lv, Q., Wang, C., Xu, X., Lv, X., Xia, W., Shang, J., Qin, A., Ma, Q., Liu, Y., Zhou, S., et al. Study on deposition characteristics and mechanism of waxy oil under the effect of drag reducer. The Canadian Journal of Chemical Engineering.

Wang, C., Liu, Y., Hu, S., Lv, X., Zhao, B., Ma, Q., & Zhou, S. Experimental study of the effects of a magnetic field/magnetic field-ferromagnetic nanocomposite pour point depressant on wax deposition. RSC Advances.

Wu, Z., Wang, C., Yang, G., Chen, S., Duan, J., & Chen, Y. Numerical investigation of film formation characteristics and mechanisms through airless spraying on spherical surfaces. Coatings.

Lv, X., Ni, X., Xiao, Y., Liu, Y., Peng, M., Ma, Q., Wang, C., Zhou, S., & Song, S. Experimental study on gas separation from the oil–water-emulsion mixture via hydrate method. Chemical Engineering Science.

Wang, C., Ma, Q., Lv, X., Zhang, J., Liu, Y., & Zhou, S. Experimental study on wax deposition of highly paraffinic oil in intermittent gas-oil flow in pipelines. Petroleum Science.

Lv, X., Chen, S., Zeng, W., Liu, Y., Wang, C., Zhou, S., Song, S., & Shi, B. Study of hydrate generation risk in gas-saturated oil-water emulsion system based on artificial intelligence. Chemical Engineering Research and Design. Liu, Y., Chen, J., Lv, X., Mu, Y., Ma, Q., Meng, J., Li, P., Zhou, S., Wang, C., & Sun, B. Inhibiting hydrate formation and agglomeration in water-in-waxy oil systems by combined anti-agglomerant: The synergistic effect between surfactants. Journal of Molecular Liquids.

Jinhong Liu | Flow Assurances | Best Researcher Award

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