Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station

[Objective] With the continuous expansion of China’s water conservancy infrastructure, hydraulic structures such as dams and sluice gates have obstructed fish migration routes and altered hydrological regimes both upstream and downstream. These changes have led to fragmentation of fish habitats, pop...

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Main Author: SHEN Chun-ying, WANG Jing-chao, QIN Xin, CHEN Yu-bin, XUE Ru-zhan
Format: Article
Language:zho
Published: Editorial Office of Journal of Changjiang River Scientific Research Institute 2025-06-01
Series:长江科学院院报
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Online Access:http://ckyyb.crsri.cn/fileup/1001-5485/PDF/1735211239771-720244322.pdf
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author SHEN Chun-ying, WANG Jing-chao, QIN Xin, CHEN Yu-bin, XUE Ru-zhan
author_facet SHEN Chun-ying, WANG Jing-chao, QIN Xin, CHEN Yu-bin, XUE Ru-zhan
author_sort SHEN Chun-ying, WANG Jing-chao, QIN Xin, CHEN Yu-bin, XUE Ru-zhan
collection DOAJ
description [Objective] With the continuous expansion of China’s water conservancy infrastructure, hydraulic structures such as dams and sluice gates have obstructed fish migration routes and altered hydrological regimes both upstream and downstream. These changes have led to fragmentation of fish habitats, population declines, and even pushed some endemic fish species to the brink of extinction. To protect aquatic biodiversity and restore river connectivity, fishways have been widely implemented as critical passage facilities. Post-construction monitoring of fishway effectiveness is essential for verifying performance and identifying potential design improvements to enhance functionality and operational management. [Methods] This study evaluated the performance of the nature-like fishway at Sanghe River Secondary Hydropower Station through comprehensive monitoring. Hydrodynamic conditions were assessed using an Acoustic Doppler Current Profiler (ADCP) and 3D acoustic Doppler velocimeter (ADV) to measure water depth, temperature, and velocity parameters, ensuring they met fish passage requirements. Fish passage was monitored using infrared underwater video surveillance and capture methods during periodic dewatering, with data collected on species composition, abundance, size distribution, and movement patterns, providing references for domestic studies on nature-like fishway construction and fish passage monitoring. [Results] Results indicated all hydrodynamic parameters met design specifications. During monitoring, reservoir levels remained stable at 75 m, with fishway depths fluctuating between 0.03-1.22 m. Average velocities were 0.79 m/s in boulder crevices and 0.635 m/s in main channels, creating suitable migratory conditions. A total of 3 954 fish from 24 species (9 orders, 14 families) were recorded, dominated by Cypriniformes (75.99%). The most abundant species were Crossocheilus reticulatus, followed by Sikukia flavicaudata and Hampala macrolepidota, with most fish measuring 10-20 cm in length and 0-5 cm in width. Migration patterns showed distinct temporal variations: 68% of fish moved upstream, with significantly greater passage efficiency during daylight hours (06:00-18:00). Peak migration occurred in July-August, validating the design assumption of April-August being the primary migration season. [Conclusions] Measures to improve fish passage effectiveness include optimizing power generation-fishway coordination, removing debris in front of dam,dredging and maintaining fishway, and regular cleaning of monitoring equipment to improve reliability. The nature-like fishway at Sanghe River has successfully reestablished connectivity and created favorable hydrodynamic conditions for fish migration, demonstrating significant conservation value for the basin’s ichthyofauna.
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publisher Editorial Office of Journal of Changjiang River Scientific Research Institute
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series 长江科学院院报
spelling doaj-art-abfb3596b0c6450b9323aa7c27653c8e2025-08-20T03:21:26ZzhoEditorial Office of Journal of Changjiang River Scientific Research Institute长江科学院院报1001-54852025-06-0142612413010.11988/ckyyb.20240280Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower StationSHEN Chun-ying, WANG Jing-chao, QIN Xin, CHEN Yu-bin, XUE Ru-zhan01 School of Electric Power Engineering, Kunming University of Science and Technology, Kunming 650500, China;2 Huaneng Lancang River Hydropower Inc., Kunming 650214, China[Objective] With the continuous expansion of China’s water conservancy infrastructure, hydraulic structures such as dams and sluice gates have obstructed fish migration routes and altered hydrological regimes both upstream and downstream. These changes have led to fragmentation of fish habitats, population declines, and even pushed some endemic fish species to the brink of extinction. To protect aquatic biodiversity and restore river connectivity, fishways have been widely implemented as critical passage facilities. Post-construction monitoring of fishway effectiveness is essential for verifying performance and identifying potential design improvements to enhance functionality and operational management. [Methods] This study evaluated the performance of the nature-like fishway at Sanghe River Secondary Hydropower Station through comprehensive monitoring. Hydrodynamic conditions were assessed using an Acoustic Doppler Current Profiler (ADCP) and 3D acoustic Doppler velocimeter (ADV) to measure water depth, temperature, and velocity parameters, ensuring they met fish passage requirements. Fish passage was monitored using infrared underwater video surveillance and capture methods during periodic dewatering, with data collected on species composition, abundance, size distribution, and movement patterns, providing references for domestic studies on nature-like fishway construction and fish passage monitoring. [Results] Results indicated all hydrodynamic parameters met design specifications. During monitoring, reservoir levels remained stable at 75 m, with fishway depths fluctuating between 0.03-1.22 m. Average velocities were 0.79 m/s in boulder crevices and 0.635 m/s in main channels, creating suitable migratory conditions. A total of 3 954 fish from 24 species (9 orders, 14 families) were recorded, dominated by Cypriniformes (75.99%). The most abundant species were Crossocheilus reticulatus, followed by Sikukia flavicaudata and Hampala macrolepidota, with most fish measuring 10-20 cm in length and 0-5 cm in width. Migration patterns showed distinct temporal variations: 68% of fish moved upstream, with significantly greater passage efficiency during daylight hours (06:00-18:00). Peak migration occurred in July-August, validating the design assumption of April-August being the primary migration season. [Conclusions] Measures to improve fish passage effectiveness include optimizing power generation-fishway coordination, removing debris in front of dam,dredging and maintaining fishway, and regular cleaning of monitoring equipment to improve reliability. The nature-like fishway at Sanghe River has successfully reestablished connectivity and created favorable hydrodynamic conditions for fish migration, demonstrating significant conservation value for the basin’s ichthyofauna.http://ckyyb.crsri.cn/fileup/1001-5485/PDF/1735211239771-720244322.pdfnature-like fishway|fish passage monitoring|fish passage effect|sanghe river secondary hydropower station
spellingShingle SHEN Chun-ying, WANG Jing-chao, QIN Xin, CHEN Yu-bin, XUE Ru-zhan
Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station
长江科学院院报
nature-like fishway|fish passage monitoring|fish passage effect|sanghe river secondary hydropower station
title Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station
title_full Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station
title_fullStr Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station
title_full_unstemmed Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station
title_short Monitoring and Evaluation of Fish Passage Effectiveness in Nature-like Fishway of Sanghe River Secondary Hydropower Station
title_sort monitoring and evaluation of fish passage effectiveness in nature like fishway of sanghe river secondary hydropower station
topic nature-like fishway|fish passage monitoring|fish passage effect|sanghe river secondary hydropower station
url http://ckyyb.crsri.cn/fileup/1001-5485/PDF/1735211239771-720244322.pdf
work_keys_str_mv AT shenchunyingwangjingchaoqinxinchenyubinxueruzhan monitoringandevaluationoffishpassageeffectivenessinnaturelikefishwayofsangheriversecondaryhydropowerstation