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首页> 外文期刊>Water resources research >Interpreting seasonal convective mixing in Devils Hole, Death Valley National Park, from temperature profiles observed by fiber-optic distributed temperature sensing
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Interpreting seasonal convective mixing in Devils Hole, Death Valley National Park, from temperature profiles observed by fiber-optic distributed temperature sensing

机译:根据光纤分布温度传感观测到的温度剖面解释死亡谷国家公园魔鬼洞的季节性对流混合

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摘要

Devils Hole, a groundwater-filled fracture in the carbonate aquifer of the southern Nevada Mojave Desert, represents a unique ecohydrological setting, as home to the only extant population of Cyprinodon diabolis, the endangered Devils Hole pupfish. Using water column temperatures collected with a fiber-optic distributed temperature sensor (DTS) during four field campaigns in 2009, evidence of deep circulation and nutrient export are, for the first time, documented. The DTS was deployed to measure vertical temperature profiles in the system, and the raw data returned were postprocessed to refine the calibration beyond the precision of the instrument's native calibration routines. Calibrated temperature data serve as a tracer for water movement and reveal a seasonal pattern of convective mixing that is supported by numerical simulations of the system. The periodic presence of divers in the water is considered, and their impacts on the temperature profiles are examined and found to be minimal. The seasonal mixing cycle may deplete the pupfish's food supplies when nutrients are at their scarcest. The spatial and temporal scales of the DTS observations make it possible to observe temperature gradients on the order of 0.001 ℃ m~(-1), revealing phenomena that would have been lost in instrument noise and uncertainty.
机译:魔鬼洞是内华达州莫哈韦沙漠南部碳酸盐岩含水层中充满地下水的裂缝,代表着独特的生态水文环境,是唯一现存的濒危的魔鬼洞Cy(Cyprinodon diabolis)的家园。在2009年的四次野外运动中,利用光纤分布式温度传感器(DTS)收集的水柱温度首次记录了深循环和养分输出的证据。部署了DTS来测量系统中的垂直温度曲线,并对返回的原始数据进行后处理,以完善校准,使其超出仪器固有校准程序的精度。校准后的温度数据可作为水运动的示踪剂,并显示对流混合的季节性模式,该模式受系统数值模拟的支持。考虑潜水者在水中的周期性存在,并检查了它们对温度分布的影响,发现这种影响很小。当营养最稀缺时,季节性混合周期可能会耗尽fish鱼的食物。 DTS观测的时空尺度使观测0.001℃m〜(-1)量级的温度梯度成为可能,揭示了在仪器噪声和不确定性中已经消失的现象。

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  • 来源
    《Water resources research》 |2012年第5期|p.W05513.1-W05513.12|共12页
  • 作者单位

    Department of Geologic Sciences and Engineering, University of Nevada, Reno, MS 172, Reno, NV 89557, USA;

    Resource Management Div., Death Valley National Park, 1321 S. Hwy. 160, Pahrump, NV 89048, USA;

    Resource Management Div., Death Valley National Park, 1321 S. Hwy. 160, Pahrump, NV 89048, USA;

    Department of Geologic Sciences and Engineering, University of Nevada, Reno, MS 172, Reno, NV 89557, USA;

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