Chen, Q.; Tan, Y.; Hu, S.; Wang, X.; Zhao, H.; Liu, P.; Liu, X.
Tidal-Phase Discharge Strategy Significantly Enhances Sewage Dilution Trapped in Deep Tidal Passages. Oceans 2025, 6, 73.
https://doi.org/10.3390/oceans6040073
AMA Style
Chen Q, Tan Y, Hu S, Wang X, Zhao H, Liu P, Liu X.
Tidal-Phase Discharge Strategy Significantly Enhances Sewage Dilution Trapped in Deep Tidal Passages. Oceans. 2025; 6(4):73.
https://doi.org/10.3390/oceans6040073
Chicago/Turabian Style
Chen, Qinsi, Yingyu Tan, Song Hu, Xiaohua Wang, Heng Zhao, Pengxia Liu, and Xing Liu.
2025. "Tidal-Phase Discharge Strategy Significantly Enhances Sewage Dilution Trapped in Deep Tidal Passages" Oceans 6, no. 4: 73.
https://doi.org/10.3390/oceans6040073
APA Style
Chen, Q., Tan, Y., Hu, S., Wang, X., Zhao, H., Liu, P., & Liu, X.
(2025). Tidal-Phase Discharge Strategy Significantly Enhances Sewage Dilution Trapped in Deep Tidal Passages. Oceans, 6(4), 73.
https://doi.org/10.3390/oceans6040073