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首页> 外文期刊>Geomorphology >Long-term bed load transport rate based on aerial-photo and ground penetrating radar surveys of fan-delta growth, Coast Mountains, British Columbia
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Long-term bed load transport rate based on aerial-photo and ground penetrating radar surveys of fan-delta growth, Coast Mountains, British Columbia

机译:根据不列颠哥伦比亚省海岸山脉的扇形三角洲增长的航拍照片和地面穿透雷达调查得出的长期床载运输速率

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摘要

Sequential aerial photography, sonar bathymetry, ground-penetrating radar (GPR), and sediment sampling and analysis provide the basis for calculating the volumetric and mass rate of progradation of the delta of Fitzsimmons Creek, a steep, high-energy, debris-flow-dominated channel draining about 100 km~2 of the southern Coast Mountains of British Columbia. Fitzsimmons Creek is typical of small mountain rivers in the region. GPR imaging is used to define the pre-depositional morphology of the receiving basin, a technique that improves the accuracy of the volumetric survey. The 52-year record (1947-1999) of progradation yielded an average annual volumetric transport rate of 1.00 +- 0.16 x 10~4 m~3 year~(-1) for bed load, corresponding to a mass transport rate of 1.60 +- 0.28 x 10~4 Mg year~(-1). Bed load yields are consistent with those obtained in hydrogeomorphically similar basins in the region and elsewhere. Decade-based annual rates, which vary from 0.64 +- 0.11 x 10~4 to 2.85 +- 0.38 x 10~4 Mg year~(-1), provide poor estimates of the 52-year average. Indeed, the 52-year record may also not be long enough to fully integrate the significant fluctuations in the sediment efflux from Fitzsimmons Creek. The methodology proposed in this paper can be transferred to other comparable mountain environments worldwide.
机译:顺序航空摄影,声纳测深法,探地雷达(GPR)以及沉积物采样和分析为计算Fitzsimmons Creek三角洲(陡峭,高能,泥石流)的体积和质量增长率提供了基础。不列颠哥伦比亚省南部海岸山脉约100 km〜2的主要河道排水。菲茨西蒙斯河(Fitzsimmons Creek)是该地区山区河流的典型代表。 GPR成像用于定义接收盆的沉积前形态,该技术可提高体积测量的准确性。长达52年的记录(1947-1999)产生的床载平均年体积运输率为1.00 +-0.16 x 10〜4 m〜3年〜(-1),对应的质量运输率为1.60 + -0.28 x 10〜4 Mg年〜(-1)。床荷产量与该地区及其他地区水文地貌相似盆地获得的产量一致。基于十年的年费率从0.64 +-0.11 x 10〜4到2.85 +-0.38 x 10〜4 Mg年〜(-1)不等,因此对52年平均值的估算很差。的确,52年的记录可能还不够长,无法完全整合Fitzsimmons Creek泥沙流出的显着波动。本文提出的方法可以转移到全球其他类似的山区环境中。

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