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Internal structure of sand dunes in the Badain Jaran Desert revealed by GPR and Its implications to inter-dune lake hydrology

机译:GPR的Badain Jaran沙漠中沙丘的内部结构及其对沙丘间水文中的影响

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Badain Jaran Desert in northwestern China has the world's highest stationary sand dunes, which are up to 500 m tall from bottom to top. Despite the prevailing dry and windy climate conditions the mega dunes were relatively moist underneath a dry surface layer of less than 1 m. It is very common to find a salt lake directly at the foot of the leeward side of a mega dune. Using 50- and 100-MHz antennas we have conducted ground penetrating radar (GPR) surveys on both the windward and leeward sides of the mega dunes in southeastern Badain Jaran Desert. The GPR surveys clearly revealed the existence of numerous, almost evenly spaced bedding features on the windward side of the mega dunes. The reason for the existing beddings is on the leeward side sand dune surface can be cemented by moisture with annual precipitation and the caliches generated by these calcareous cement will be likely inducing more infiltration flow toward the leeward side and consequently channeling more recharging water to the lake than to the windward side. This trend may be one of the key factors that kept the lake exist in a very arid environment with high evaporation rate. The GPR profile also clearly revealed the shape of the water table beneath the mega dunes, which is gradually elevated toward the peak area from both toes, implies that the desert lakes are possibly recharged at least partly by the groundwater from the precipitation. Numerical simulation reconstructed the proposed internal structure.
机译:中国西北地区的Badain Jaran沙漠拥有世界上最高的静止沙丘,从底部到顶部高达500米。尽管普遍存在的干燥和风气候条件,但巨型沙丘在少于1米的干燥表面层下面比较湿润。很常见的是,直接在兆瓦沙丘的背风侧找到盐湖。使用50-和100MHz天线我们在梅戈阿兰沙漠东南部的Mega沙丘的迎风和背衬侧进行了地面穿透雷达(GPR)调查。 GPR调查清楚地揭示了Mega沙丘的迎风侧的众多几乎均匀间隔的床上用品特征。现有寝具的原因在Leeward侧砂沙丘表面上可以通过随着年降水的水分巩固,并且这些钙质水泥产生的墨水可能会导致更多的渗透流向Leeward侧,并因此将更多的渗透流朝向后侧流入湖泊而不是迎风侧。这种趋势可能是使湖泊存在于极其干旱的环境中具有高蒸发速率的关键因素之一。 GPR型材还清楚地揭示了Mega沙丘下面的水位的形状,该射门逐渐升高到两个脚趾的峰面积,意味着沙漠湖泊可能至少部分地通过地下水从沉淀部分充电。数值模拟重建所提出的内部结构。

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