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Sliding Rocks on Racetrack Playa, Death Valley National Park: First Observation of Rocks in Motion

机译:死亡谷国家公园赛马场Playa上的滑石:运动中的岩石的首次观测

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摘要

The engraved trails of rocks on the nearly flat, dry mud surface of Racetrack Playa, Death Valley National Park, have excited speculation about the movement mechanism since the 1940s. Rock movement has been variously attributed to high winds, liquid water, ice, or ice flotation, but has not been previously observed in action. We recorded the first direct scientific observation of rock movements using GPS-instrumented rocks and photography, in conjunction with a weather station and time-lapse cameras. The largest observed rock movement involved u3e60 rocks on December 20, 2013 and some instrumented rocks moved up to 224 m between December 2013 and January 2014 in multiple move events. In contrast with previous hypotheses of powerful winds or thick ice floating rocks off the playa surface, the process of rock movement that we have observed occurs when the thin, 3 to 6 mm, “windowpane” ice sheet covering the playa pool begins to melt in late morning sun and breaks up under light winds of ~4–5 m/s. Floating ice panels 10 s of meters in size push multiple rocks at low speeds of 2–5 m/min. along trajectories determined by the direction and velocity of the wind as well as that of the water flowing under the ice.
机译:自1940年代以来,在死亡谷国家公园赛马场普拉亚(Racetrack Playa)几乎平坦,干燥的泥土表面上刻有岩石的踪迹引起了人们对运动机制的猜测。岩石运动被不同程度地归因于强风,液态水,冰或浮冰,但以前尚未在行动中观察到。我们使用GPS仪表辅助的岩石和摄影技术,结合气象站和定时摄影机,对岩石运动进行了首次直接科学观测。 2013年12月20日,观测到的最大岩石运动涉及 u3e60岩石,并且在2013年12月至2014年1月之间,多次移动事件中一些仪器化岩石运动至224 m。与先前关于强风或厚冰在岩石表面上漂浮岩石的假设相反,我们观察到的岩石运动过程发生在覆盖在岩石池中的3至6毫米薄的“窗玻璃”冰盖开始融化时。清晨的阳光,并在约4-5 m / s的微风下破裂。大小为10 s米的浮冰板以2–5 m / min的低速推动多块岩石。沿着由风的方向和速度以及在冰下流动的水的方向和速度确定的轨迹。

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