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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Aeolian sand strip mobility and protodune development on a drying beach: Examining surface moisture and surface roughness patterns measured by terrestrial laser scanning
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Aeolian sand strip mobility and protodune development on a drying beach: Examining surface moisture and surface roughness patterns measured by terrestrial laser scanning

机译:风沙带流动性和干燥海滩上的原形发育:检查通过地面激光扫描测量的表面水分和表面粗糙度图

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摘要

Ephemeral aeolian sand strips are commonplace on beaches. Their formation during high energy sand transport events often precedes the development of protodunes and their dynamics present interesting feedback mechanisms with surface moisture patterns. However, due to their temporary nature, little is known of their formation, mobility or the specifics of their interaction with beach surface characteristics. Similarly surface moisture has an important influence on sediment availability and transport in aeolian beach systems, yet it is difficult to quantify accurately due to its inherent variability over both short spatial and temporal scales. Whilst soil moisture probes and remote sensing imagery techniques can quantify large changes well, their resolution over mainly dry sand, close to the aeolian transport threshold is not ideal, particularly where moisture gradients close to the surface are large. In this study we employed a terrestrial laser scanner to monitor beach surface moisture variability during a three and a half hour period after a rain event and investigated relationships between bedform development, surface roughness and surface moisture. Our results demonstrate that as the beach surface dries, sand transport increases, with sediment erosion occurring at the wet/dry surface boundary, and deposition further downwind. This dynamic structure, dependent upon changing surface moisture characteristics, results in the formation of a rippled sand strip and ultimately a protodune. Our findings highlight dynamic mobility relationships and confirm the need to consider transient bedforms and surface moisture across a variety of scales when measuring aeolian transport in beach settings. The terrestrial laser scanner provides a suitable apparatus with which to accomplish this.
机译:短暂的风沙带在海滩上很常见。它们在高能砂传输事件期间的形成通常先于produdunes的发展,并且它们的动力学表现出有趣的具有表面水分模式的反馈机制。然而,由于它们的暂时性,人们对其形成,流动性或与海滩表面特征相互作用的细节知之甚少。同样,地表水分对风沙海滩系统中的沉积物可利用性和输运具有重要影响,但由于其在短时空尺度上的固有变异性,因此难以准确定量。尽管土壤湿度探测器和遥感影像技术可以很好地量化大的变化,但它们在主要是干燥的沙子上(接近风沙输送阈值)的分辨率并不理想,特别是在靠近地面的湿度梯度较大的地方。在这项研究中,我们使用了地面激光扫描仪来监测下雨事件后三个半小时内海滩表面的湿度变化,并研究了床形发育,表面粗糙度和表面湿度之间的关系。我们的结果表明,随着海滩表面的干燥,沙子的输送增加,在干/湿表面边界处发生泥沙侵蚀,并且在顺风处进一步沉积。这种动态结构取决于变化的表面水分特征,导致形成波纹状的砂条,并最终形成原型。我们的研究结果突出了动态迁移率的关系,并确认了在海滩环境中测量风向时,需要考虑各种尺度的瞬态床形和表面水分。地面激光扫描仪提供了一种合适的设备来完成此任务。

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