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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Retrieving sand dune movements using sub-pixel correlation of multi-temporal optical remote sensing imagery, northwest Sinai Peninsula, Egypt
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Retrieving sand dune movements using sub-pixel correlation of multi-temporal optical remote sensing imagery, northwest Sinai Peninsula, Egypt

机译:利用多时相光学遥感影像的亚像素相关性检索沙丘运动,埃及西奈半岛西北部

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Sand dune movements pose potential hazards against various land use activities in Egypt. To avoid or to minimize the hazards associated with sand dunes, it is critical to determine their rates and patterns of migration at high accuracy and over wide spatial coverage. This is, however, a real challenge using field work and traditional remote sensing approaches. The co-registration of optically sensed images and correlation (COSI-Corr) complements traditional approaches to provide accurate measurements at wide spatial coverage. Applying the COSI-Corr technique to two SPOT 4 panchromatic images acquired above North Sinai, we measured lateral migration of 6.0 to 19.4. m/yr with an average of 7.7. m/yr, and 9.3 to 15.0. m/yr with an average of 11.9. m/yr for the whole barchans dune areas and a selected sample of barchan dunes, respectively. We also detected that the lateral movements along the crest lines of linear dunes ranged from 4.0 to 20.1. m/yr with an average of 6.8. m/yr for the whole area occupied by linear dunes. For a selected linear dune within the study area, the lateral migration of peaks and saddles along the crest lines ranged from 5.5 to 16.7. m/yr with an average of 12.4. m/yr. The lateral migration of both barchans dunes and linear dunes showed high spatial variability. Validation of these results against the previously measured migration rates indicated high degree of accuracy of the technique. In addition, the displacement field produced from the correlation indicated that the direction of sand dune movements occurred towards the east and southeast, which is well aligned with the previously determined sand dune drifting potentials.
机译:沙丘运动对埃及的各种土地利用活动构成潜在危害。为了避免或最大程度降低与沙丘相关的危害,至关重要的是确定沙丘的沙丘迁移速率和分布模式,以确保其准确性和覆盖范围广。但是,这是使用现场工作和传统遥感方法的真正挑战。光学感测图像和相关性的共配准(COSI-Corr)补充了传统方法,可在较宽的空间范围内提供精确的测量。将COSI-Corr技术应用于在北西奈以上采集的两个SPOT 4全色图像,我们测得的横向偏移为6.0至19.4。 m / yr,平均为7.7。 m / yr,以及9.3至15.0。 m / yr,平均为11.9。整个Barchans沙丘地区的m / yr和选定的Barchan沙丘样本。我们还检测到,沿线性沙丘波峰线的横向运动范围为4.0至20.1。 m / yr,平均为6.8。线性沙丘所占整个区域的年m / yr。对于研究区域内选定的线性沙丘,峰和鞍峰沿波峰线的横向迁移范围为5.5至16.7。 m / yr,平均为12.4。每年Barchans沙丘和线性沙丘的横向迁移都显示出较高的空间变异性。根据先前测得的迁移率对这些结果进行验证,表明该技术具有很高的准确性。另外,由相关性产生的位移场表明,沙丘运动的方向朝着东部和东南方向发生,与先前确定的沙丘漂移势很好地对齐。

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