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Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China

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Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China. / Wen, Zhaofei; Yang, Hong; Zhang, Ce et al.
In: Remote Sensing, Vol. 12, No. 3, 409, 28.01.2020, p. 1-21.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Wen, Z, Yang, H, Zhang, C, Shao, G & Wu, S 2020, 'Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China', Remote Sensing, vol. 12, no. 3, 409, pp. 1-21. https://doi.org/10.3390/rs12030409

APA

Wen, Z., Yang, H., Zhang, C., Shao, G., & Wu, S. (2020). Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China. Remote Sensing, 12(3), 1-21. Article 409. https://doi.org/10.3390/rs12030409

Vancouver

Wen Z, Yang H, Zhang C, Shao G, Wu S. Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China. Remote Sensing. 2020 Jan 28;12(3):1-21. 409. doi: 10.3390/rs12030409

Author

Wen, Zhaofei ; Yang, Hong ; Zhang, Ce et al. / Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China. In: Remote Sensing. 2020 ; Vol. 12, No. 3. pp. 1-21.

Bibtex

@article{87162e54fbfc4a2d8d1425dfd3fa2ae0,
title = "Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China",
abstract = "The downstream reach of the Three Gorges Dam (TGD) along the Yangtze River (1560 km) hosts numerous mid-channel bars (MCBs). MCBs dynamics are crucial to the river{\textquoteright}s hydrological processes and local ecological function. However, a systematic understanding of such dynamics and their linkage to TGD remains largely unknown. Using Landsat-image-extracted MCBs and several spatial-temporal analysis methods, this study presents a comprehensive understanding of MCB dynamics in terms of number, area, and shape, over downstream of TGD during the period 1985–2018. On average, a total of 140 MCBs were detected and grouped into four types representing small (< 2 km2), middle (2 km2 – 7 km2), large (7 km2 – 33 km2) and extra-large size (>33 km2) MCBs, respectively. MCBs number decreased after TGD closure but most of these happened in the lower reach. The area of total MCBs experienced an increasing trend (2.77 km2/yr, p-value < 0.01) over the last three decades. The extra-large MCBs gained the largest area increasing rate than the other sizes of MCBs. Small MCBs tended to become relatively round, whereas the others became elongate in shape after TGD operation. Impacts of TGD operation generally diminished in the longitudinal direction from TGD to Hankou and from TGD to Jiujiang for shape and area dynamics, respectively. The quantified longitudinal and temporal dynamics of MCBs across the entire Yangtze River downstream of TGD provides a crucial monitoring basis for continuous investigation of the changing mechanisms affecting the morphology of the Yangtze River system.",
keywords = "Landsat images, Remote sensing, Time series analysis, Three Gorges Dam, Dam effects, Geomorphic dynamics, River bar, River island",
author = "Zhaofei Wen and Hong Yang and Ce Zhang and Guofan Shao and Shengjun Wu",
year = "2020",
month = jan,
day = "28",
doi = "10.3390/rs12030409",
language = "English",
volume = "12",
pages = "1--21",
journal = "Remote Sensing",
issn = "2072-4292",
publisher = "MDPI AG",
number = "3",

}

RIS

TY - JOUR

T1 - Remotely Sensed Mid-Channel Bar Dynamics in Downstream of the Three Gorges Dam, China

AU - Wen, Zhaofei

AU - Yang, Hong

AU - Zhang, Ce

AU - Shao, Guofan

AU - Wu, Shengjun

PY - 2020/1/28

Y1 - 2020/1/28

N2 - The downstream reach of the Three Gorges Dam (TGD) along the Yangtze River (1560 km) hosts numerous mid-channel bars (MCBs). MCBs dynamics are crucial to the river’s hydrological processes and local ecological function. However, a systematic understanding of such dynamics and their linkage to TGD remains largely unknown. Using Landsat-image-extracted MCBs and several spatial-temporal analysis methods, this study presents a comprehensive understanding of MCB dynamics in terms of number, area, and shape, over downstream of TGD during the period 1985–2018. On average, a total of 140 MCBs were detected and grouped into four types representing small (< 2 km2), middle (2 km2 – 7 km2), large (7 km2 – 33 km2) and extra-large size (>33 km2) MCBs, respectively. MCBs number decreased after TGD closure but most of these happened in the lower reach. The area of total MCBs experienced an increasing trend (2.77 km2/yr, p-value < 0.01) over the last three decades. The extra-large MCBs gained the largest area increasing rate than the other sizes of MCBs. Small MCBs tended to become relatively round, whereas the others became elongate in shape after TGD operation. Impacts of TGD operation generally diminished in the longitudinal direction from TGD to Hankou and from TGD to Jiujiang for shape and area dynamics, respectively. The quantified longitudinal and temporal dynamics of MCBs across the entire Yangtze River downstream of TGD provides a crucial monitoring basis for continuous investigation of the changing mechanisms affecting the morphology of the Yangtze River system.

AB - The downstream reach of the Three Gorges Dam (TGD) along the Yangtze River (1560 km) hosts numerous mid-channel bars (MCBs). MCBs dynamics are crucial to the river’s hydrological processes and local ecological function. However, a systematic understanding of such dynamics and their linkage to TGD remains largely unknown. Using Landsat-image-extracted MCBs and several spatial-temporal analysis methods, this study presents a comprehensive understanding of MCB dynamics in terms of number, area, and shape, over downstream of TGD during the period 1985–2018. On average, a total of 140 MCBs were detected and grouped into four types representing small (< 2 km2), middle (2 km2 – 7 km2), large (7 km2 – 33 km2) and extra-large size (>33 km2) MCBs, respectively. MCBs number decreased after TGD closure but most of these happened in the lower reach. The area of total MCBs experienced an increasing trend (2.77 km2/yr, p-value < 0.01) over the last three decades. The extra-large MCBs gained the largest area increasing rate than the other sizes of MCBs. Small MCBs tended to become relatively round, whereas the others became elongate in shape after TGD operation. Impacts of TGD operation generally diminished in the longitudinal direction from TGD to Hankou and from TGD to Jiujiang for shape and area dynamics, respectively. The quantified longitudinal and temporal dynamics of MCBs across the entire Yangtze River downstream of TGD provides a crucial monitoring basis for continuous investigation of the changing mechanisms affecting the morphology of the Yangtze River system.

KW - Landsat images

KW - Remote sensing

KW - Time series analysis

KW - Three Gorges Dam

KW - Dam effects

KW - Geomorphic dynamics

KW - River bar

KW - River island

U2 - 10.3390/rs12030409

DO - 10.3390/rs12030409

M3 - Journal article

VL - 12

SP - 1

EP - 21

JO - Remote Sensing

JF - Remote Sensing

SN - 2072-4292

IS - 3

M1 - 409

ER -