论文著作:
[1]. Zhu, S., Zhang, D., Wang, Y., Wang, K., & Qiu, L. (2026). Balancing power density and storage capacity in cryogenic energy storage: A dynamic optimization of nano-enhanced phase change materials. Energy, 141275.
[2].Zhu, S., Zhang, D., Wang, Y., Fang, S., Wang, K., & Qiu, L. (2025). Toward flexible liquefied natural gas cold energy recovery: metal foam-enhanced phase change storage. Journal of Energy Storage, 137, 118713.
[3]. Zhu, S., Wang, Y., Zhang, D., Wang, K., & Qiu, L. (2025). Modeling and porosity configuration for enhanced metal foam and cryogenic phase change material composite performance. Energy, 341,139570.
[4]. Zhu, S., Wei, X., Teng, J., Wang, J., Fang, S., Wang, K., & Qiu, L. (2025). Exploration of Energy Transfer and Catalytic Processes in Continuous Conversion Heat Exchangers for Hydrogen Liquefaction. Renewable Energy, 239, 122157.
[5]. Zhu, S., Fang, S., Bao, S., Zhi, X., Wang, K., & Qiu, L. (2024). Efficient Cooling Strategies for Liquid Hydrogen Pipelines: A Comparative Analysis. Renewable Energy, 236, 121488.
[6]. Zhu, S., Teng, J., Zhi, X., Bao, S., Qiu, L., & Wang, K. (2023). Numerical study on comprehensive performance of flow and heat transfer coupled with ortho-para hydrogen conversion. International Journal of Heat and Mass Transfer, 201, 123653.
[7]. Zhu, S., Luo, Z., Zhi, X., Wang, K., & Qiu, L. (2022). Numerical simulation of nitrogen vapor condensation on microstructure surface. Applied Thermal Engineering, 210, 118332.
[8]. Zhu, S., Zhi, X., Gu, C., Wang, K., & Qiu, L. (2021). Enhancing heat transfer performance of nitrogen condensation on vertical plate with microstructure. International Journal of Heat and Mass Transfer, 172, 121219.
[9]. Zhu, S., Zhi, X., Gu, C., Qiu, L., & Wang, K. (2021). Characteristic analysis of fluctuating liquid film flow behavior and heat transfer in nitrogen condensation. Applied Thermal Engineering, 184, 116249.
[10]. Zhu, S., Li, Y., Zhi, X., Gu, C., Tang, Y., & Qiu, L. (2020). Numerical analysis of nitrogen condensation heat transfer enhancement with liquid film fluctuation at cryogenic temperature. International Journal of Heat and Mass Transfer, 149, 119151.