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Evaporation from weighing precipitation gauges: impacts on automated gauge measurements and quality assurance methods

机译:称重雨量计的蒸发:对自动雨量计测量和质量保证方法的影响

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Evaporation from a precipitation gauge can cause errors in the amount of measured precipitation. For automated weighing-bucket gauges, the World Meteorological Organization (WMO) suggests the use of evaporative suppressants and frequent observations to limit these biases. However, the use of evaporation suppressants is not always feasible due to environmental hazards and the added cost of maintenance, transport, and disposal of the gauge additive. In addition, research has suggested that evaporation prior to precipitation may affect precipitation measurements from auto-recording gauges operating at sub-hourly frequencies. For further evaluation, a field campaign was conducted to monitor evaporation and its impacts on the quality of precipitation measurements from gauges used at U.S. Climate Reference Network (USCRN) stations. Two Geonor gauges were collocated, with one gauge using an evaporative suppressant (referred to as Geonor-NonEvap) and the other with no suppressant (referred to as Geonor-Evap) to evaluate evaporative losses and evaporation biases on precipitation measurements. From June to August, evaporative losses from the Geonor-Evap gauge exceeded accumulated precipitation, with an average loss of 0.12 mm hsupa??1/sup. The impact of evaporation on precipitation measurements was sensitive to the choice of calculation method. In general, the pairwise method that utilized a longer time series to smooth out sensor noise was more sensitive to gauge evaporation (a??4.6% bias with respect to control) than the weighted-average method that calculated depth change over a smaller window (+1% bias). These results indicate that while climate and gauge design affect gauge evaporation rates, computational methods also influence the magnitude of evaporation biases on precipitation measurements. This study can be used to advance quality insurance (QA) techniques used in other automated networks to mitigate the impact of evaporation biases on precipitation measurements.
机译:降水量计的蒸发会导致所测量的降水量误差。对于自动称重式桶规,世界气象组织(WMO)建议使用蒸发抑制剂和频繁观察来限制这些偏差。然而,由于环境危害以及量规添加剂的维护,运输和处置的额外成本,使用蒸发抑制剂并非总是可行的。此外,研究表明,降水之前的蒸发可能会影响以亚小时频率运行的自动记录仪的降水测量。为了进行进一步评估,美国进行了一场野外活动,以监测蒸发及其对美国气候参考网(USCRN)站所使用的仪表的降水测量质量的影响。并置了两个Geonor仪表,其中一个使用蒸发抑制剂(称为Geonor-NonEvap),另一个不使用抑制剂(称为Geonor-Evap)来评估降水测量中的蒸发损失和蒸发偏差。从6月到8月,Geonor-Evap计的蒸发损失超过了累积的降水,平均损失为0.12 mm h a ?? 1 。蒸发对降水量测量的影响对计算方法的选择很敏感。通常,成对方法使用较长的时间序列来消除传感器噪声,比起在较小窗口上计算深度变化的加权平均方法(对控制而言,偏差为?? 4.6%)(对控制而言,偏差为4.6%)。 <+ 1%偏差)。这些结果表明,尽管气候和仪表设计会影响仪表的蒸发速率,但计算方法也会影响降水测量中蒸发偏差的大小。这项研究可用于推进其他自动化网络中使用的质量保险(QA)技术,以减轻蒸发偏差对降水测量的影响。

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