Department of Ecosystem Management, School of Environmental and Rural Science, University of New England, Armidale, NSW, 2351, Australia.
Environ Monit Assess. 2018 Sep 11;190(10):582. doi: 10.1007/s10661-018-6944-4.
This study presents the spatial and temporal dynamics of tidal channels in the Bangladesh Sundarbans. Parts of the Passur River system were considered for this investigation. Tidal channel bank layers were extracted from aerial photographs from 1974 and 2011 and a Sentinel-2 image from 2017. On-screen digitizing of a tidal channel was undertaken to create the tidal channel layers, and special care was taken during digitization to obtain more accurate results. Layers were overlaid together so that the tidal channel position could be seen for each date. Tidal channel positions were highlighted to infer the erosion/accretion sectors along the channel, and the tidal channel dynamics were calculated. Remote sensing and Geographic Information System (GIS) platforms were used to analyse, interpret and visualize data on accretion and erosion, as well as the locations of the tidal channel bank over different years. The results revealed that erosion was severe in the larger channels, whereas accretion was dominant in the smaller channels. These erosion and accretion processes played an active role in the displacement of tidal channel banks during the period under investigation. Displacement of the tidal channel bank has had a profound impact on the Sundarbans mangrove ecosystem, and continued erosion and accretion processes are of concern for the future sustainability of biodiversity in the Sundarbans. While in the short term, these changes may not have much impact; over decades, the dynamics of tidal channels may significantly contribute to the imbalance of fauna and flora in the Sundarbans.
本研究展示了孟加拉国孙德尔本斯潮汐通道的时空动态。该研究考虑了帕斯库尔河系统的部分地区。从 1974 年和 2011 年的航空照片以及 2017 年的 Sentinel-2 图像中提取了潮汐通道岸层。通过屏幕数字化对潮汐通道进行了数字化处理,以创建潮汐通道层,并在数字化过程中特别注意以获得更准确的结果。将层重叠在一起,以便可以看到每个日期的潮汐通道位置。突出显示潮汐通道位置以推断沿通道的侵蚀/堆积扇区,并计算潮汐通道动态。遥感和地理信息系统 (GIS) 平台用于分析、解释和可视化不同年份潮汐通道岸层、侵蚀和堆积以及潮汐通道位置的数据。结果表明,较大的通道侵蚀严重,而较小的通道则以堆积为主。在研究期间,这些侵蚀和堆积过程在潮汐通道岸的位移中发挥了积极作用。潮汐通道岸的位移对孙德尔本斯红树林生态系统产生了深远的影响,持续的侵蚀和堆积过程是孙德尔本斯生物多样性未来可持续性的关注点。虽然短期内这些变化可能影响不大,但在几十年内,潮汐通道的动态可能会对孙德尔本斯的动植物群失衡产生重大影响。