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Instruments and Methods Assessing the accuracy of Greenland ice sheet ice ablation measurements by pressure transducer

机译:仪器和方法通过压力传感器评估格陵兰冰盖冰消融测量的准确性

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We present a method of measuring ice ablation using an absolute pressure transducer as part of an automatic weather Station (AWS) System, which we have installed in 17 locations on the Greenland ice sheet. The pressure transducer assembly is drilled into the ice, enclosed in a hose filled with antifreeze liquid. The pressure Signal registered by the transducer is that of the vertical column of liquid over the sensor, which can be translated to depth, and ice ablation rate, knowing the density of the liquid. Measuring at sub-daily timescales, this assembly is well suited to monitoring ice ablation in remote regions, with clear advantages over other, well-established methods. The pressure transducer System has the potential to monitor ice ablation for several years without re-drilling, and the System is suitable for high-ablation areas (>5ma). A routine to transform raw measurements into ablation values is presented, including a physically based method to remove air-pressure variability from the signal. The pressure transducer time series is compared to that recorded by a sonic ranger for the climatically hostile setting on the Greenland ice sheet.
机译:我们介绍了一种使用绝对压力传感器作为自动气象站(AWS)系统一部分的冰消融测量方法,该系统已安装在格陵兰冰原上的17个位置。将压力传感器组件钻入冰中,并装入装有防冻液的软管中。由换能器记录的压力信号是传感器上方液体的垂直列的压力信号,在知道液体密度的情况下,可以将其转换为深度和冰消融速率。在次日尺度上进行测量,该组件非常适合于监视偏远地区的冰消融,与其他公认的方法相比具有明显的优势。压力传感器系统具有在不重新钻孔的情况下监视冰消融长达数年的潜力,并且该系统适用于高消融区域(> 5ma)。给出了将原始测量值转换为消融值的例程,包括从信号中消除气压变化的基于物理的方法。将压力传感器的时间序列与声波测距仪记录的时间序列进行比较,以了解格陵兰冰盖上的气候不利环境。

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