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Assessing stream temperature variation in the Pacific Northwest using airborne thermal infrared remote sensing

机译:利用机载热红外遥感评估西北太平洋的溪流温度变化

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The objective of this paper is to evaluate the temporal and spatial variability of stream temperatures and how stream temperatures are affected by land use through the use of airborne thermal infrared (TIR) imagery. Both five-meter and fifteen-meter MODIS/ASTER (MASTER) imagery were acquired along the main channel of the Green-Duwamish River in Washington State, U.S. in multiple straight line passes with image overlaps occurring at time intervals of between 3 and 45 min. Five- and fifteen-meter data were collected on August 25th, 2001, with a few additional five-meter images collected on August 27th. Image overlaps were studied to evaluate the time dependence between acquisition time and observed water temperature. Temperature change between adjacent images over the course of a few minutes was found to be negligible, but became significant at times greater than 45 min, with an estimated increase in water temperature of 2-3 ℃ between the first and last image collected for the complete five-meter resolution survey. Images captured from different days help identify persistent localized temperature differences. While accounting for temperature changes that occurred during the acquisition process, we still found that average stream reach temperatures increased with urbanization, while variability decreased. The same occurred in the immediate presence of a reservoir. This study suggests that urbanization affects stream temperature not only through the removal of riparian zone vegetation, but also through changes to sources in in-stream variability including the presence of rocks, woody debris and sandbars.
机译:本文的目的是通过使用机载热红外(TIR)图像来评估河流温度的时空变化以及土地利用对河流温度的影响。沿美国华盛顿州格林杜瓦米希河的主要河道采集了5米和15米的MODIS / ASTER(MASTER)影像,这些影像是在美国多次直线通过中发生的,影像重叠发生的时间间隔为3至45分钟。在2001年8月25日收集了5米和15米的数据,并在8月27日收集了一些另外的5米的图像。研究了图像重叠以评估采集时间与观测水温之间的时间依赖性。在几分钟的过程中,相邻图像之间的温度变化可以忽略不计,但在大于45分钟的时间处变得很显着,在收集的第一个和最后一个图像之间,估计水温升高了2-3℃五米分辨率调查。从不同日期拍摄的图像有助于识别持续的局部温度差异。在考虑采集过程中发生的温度变化的同时,我们仍然发现,随着城市化的发展,平均水流到达的温度升高,而变异性降低。在水库直接存在时也发生了同样的情况。这项研究表明,城市化不仅通过去除河岸带植被来影响河流温度,而且还通过改变包括岩石,木屑和沙洲在内的河流内变化的来源。

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