Page 143 - 《水产学报》2026年第01期
P. 143
1 期 水 产 学 报 50 卷
ming behavior of Schizothorax prenanti using an open-channel Shi X T, Deng X Y, Chen X L, et al. Simulation of the
flume with spatially heterogeneous turbulent flow[J]. Animals, upstream behavior of Schizothorax wangchiachii in vertical slot
2022, 12(6): 752. fishway[J]. Transactions of the Chinese Society of Agricultural
[16] 杨宇, 谭细畅, 常剑波, 等. 三维水动力学数值模拟获得中华 Engineering, 2025, 41(2): 175-184 (in Chinese).
鲟偏好流速曲线 [J]. 水利学报, 2007(S1): 531-534,541. [21] 齐亮, 杨宇, 王悦, 等. 鱼类对水动力环境变化的行为响应特
Yang Y, Tan X C, Chang J B, et al. Chinese sturgeon 征 [J]. 河海大学学报 (自然科学版), 2012, 40(4): 438-445.
(Acipensor sinensis) preference velocities from river simula- Qi L, Yang Y, Wang Y, et al. Fish behavior characteristics in
tion[J]. Journal of Hydraulic Engineering, 2007(S1): 531- response to change of hydrodynamic environment[J]. Journal of
534,541 (in Chinese). Hohai University (Natural Sciences), 2012, 40(4): 438-445 (in
[17] 龚丽, 吴一红, 白音包力皋, 等. 草鱼幼鱼游泳能力及游泳行 Chinese).
为试验研究 [J]. 中国水利水电科学研究院学报, 2015, 13(3): [22] Liao J C, Beal D N, Lauder G V, et al. Fish exploiting vortices
211-216. decrease muscle activity[J]. Science, 2003, 302(5650): 1566-
Gong L, Wu Y H, Bai Y B L G, et al. Experimental study on 1569.
swimming capability and swimming behavior of juvenile grass [23] Rodriguez Á, Bermúdez M, Rabuñal J R, et al. Optical fish tra-
carp[J]. Journal of China Institute of Water Resources and jectory measurement in fishways through computer vision and
Hydropower Research, 2015, 13(3): 211-216 (in Chinese). artificial neural networks[J]. Journal of Computing in Civil
[18] 李广宁, 孙双科, 郭子琪, 等. 仿自然鱼道水力及过鱼性能物 Engineering, 2011, 25(4): 291-301.
理模型试验 [J]. 农业工程学报, 2019, 35(9): 147-154. [24] Ruiz-Coello M X, Bottacin-Busolin A, Marion A. A Eulerian-
Li G N, Sun S K, Guo Z Q, et al. Physical model test on Lagrangian model for simulating fish pathline distributions in
hydraulic characteristics and fish passing performance of nature- vertical slot fishways[J]. Ecological Engineering, 2024, 203:
like fishway[J]. Transactions of the Chinese Society of Agricul- 107264.
tural Engineering, 2019, 35(9): 147-154 (in Chinese). [25] 林晨宇, 罗佳, 刘德富, 等. 鳙幼鱼在下行过程中应对加速流
[19] 雷青松, 涂志英, 李志敏, 等. 马口鱼自主上溯游泳行为及对 的行为响应研究 [J]. 水生生物学报, 2017, 41(3): 560-564.
流场选择策略研究 [J]. 武汉大学学报 (工学版), 2020, 53(6): Lin C Y, Luo J, Liu D F, et al. The behavior response of juven-
483-491. ile Aristichthys nobilis to the accelerating flow during their
Lei Q S, Tu Z Y, Li Z M, et al. Swimming performance and downstream migration[J]. Acta Hydrobiologica Sinica, 2017,
flow-field selection strategy of Opsariichthys bidend during 41(3): 560-564 (in Chinese).
upstream migration[J]. Engineering Journal of Wuhan Uni- [26] 林俊强, 彭期冬. 河流栖息地保护与修复 [M]. 北京: 中国水
versity, 2020, 53(6): 483-491 (in Chinese). 利水电出版社, 2019: 9, 164.
[20] 石小涛, 邓星勇, 陈小龙, 等. 竖缝式鱼道内短须裂腹鱼上溯 Lin J Q, Peng Q D. River habitat protection and restoration[M].
行为模拟 [J]. 农业工程学报, 2025, 41(2): 175-184. Beijing: China Water & Power Press, 2019: 9, 164 (in Chinese).
https://www.china-fishery.cn 中国水产学会主办 sponsored by China Society of Fisheries
10

