...
首页> 外文期刊>Remote Sensing >Monitoring Thermal Pollution in Rivers Downstream of Dams with Landsat ETM+ Thermal Infrared Images
【24h】

Monitoring Thermal Pollution in Rivers Downstream of Dams with Landsat ETM+ Thermal Infrared Images

机译:使用Landsat ETM +热红外图像监测大坝下游河流的热污染

获取原文
           

摘要

Dams play a significant role in altering the spatial pattern of temperature in rivers and contribute to thermal pollution, which greatly affects the river aquatic ecosystems. Understanding the temporal and spatial variation of thermal pollution caused by dams is important to prevent or mitigate its harmful effect. Assessments based on in-situ measurements are often limited in practice because of the inaccessibility of water temperature records and the scarcity of gauges along rivers. By contrast, thermal infrared remote sensing provides an alternative approach to monitor thermal pollution downstream of dams in large rivers, because it can cover a large area and observe the same zone repeatedly. In this study, Landsat Enhanced Thematic Mapper Plus (ETM+) thermal infrared imagery were applied to assess the thermal pollution caused by two dams, the Geheyan Dam and the Gaobazhou Dam, located on the Qingjiang River, a tributary of the Yangtze River downstream of the Three Gorges Reservoir in Central China. The spatial and temporal characteristics of thermal pollution were analyzed with water temperatures estimated from 54 cloud-free Landsat ETM+ scenes acquired in the period from 2000 to 2014. The results show that water temperatures downstream of both dams are much cooler than those upstream of both dams in summer, and the water temperature remains stable along the river in winter, showing evident characteristic of the thermal pollution caused by dams. The area affected by the Geheyan Dam reaches beyond 20 km along the downstream river, and that affected by the Gaobazhou Dam extends beyond the point where the Qingjiang River enters the Yangtze River. Considering the long time series and global coverage of Landsat ETM+ imagery, the proposed technique in the current study provides a promising method for globally monitoring the thermal pollution caused by dams in large rivers.
机译:大坝在改变河流温度的空间格局中起着重要作用,并造成热污染,这极大地影响了河流水生生态系统。了解大坝造成的热污染的时空变化对于预防或减轻其有害影响很重要。由于无法获得水温记录以及沿江水位仪的匮乏,基于现场测量的评估通常在实践中受到限制。相比之下,热红外遥感提供了一种替代方法来监视大河中大坝下游的热污染,因为它可以覆盖大面积并重复观察同一区域。在这项研究中,Landsat增强型专题制图仪(ETM +)热红外图像被用于评估位于清江(长江下游的支流)的两个大坝,即葛河堰大坝和高坝州大坝所造成的热污染。中国中部的三峡水库。分析了2000年至2014年期间获得的54个无云Landsat ETM +场景中的水温,估算了热污染的时空特征。结果表明,两个大坝下游的水温均比两个大坝上游的水温低。在夏季,水温沿河保持稳定,在冬季,显示出由大坝引起的热污染的明显特征。受隔河岩大坝影响的区域沿下游河道延伸超过20公里,受高坝洲大坝影响的区域延伸到清江入长江的范围之外。考虑到Landsat ETM +图像的长期序列和全球覆盖范围,当前研究中提出的技术为全球监测大河流中大坝引起的热污染提供了一种有前途的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号