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Measuring precipitation with a geolysimeter

机译:用地理位仪测量沉淀

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Using the relationship between measured ground-water pressures in deep observation wells and total surface loading, a geological weighing lysimeter (geolysimeter) has the capability of measuring precipitation event totals independently of conventional precipitation gauge observations. Correlations between groundwater pressure change and event precipitation were observed at a co-located site near Duck Lake, SK, over a multi-year and multi-season period. Correlation coefficients (r(2)) varied from 0.99 for rainfall to 0.94 for snowfall. The geolysimeter was shown to underestimate rainfall by 7% while overestimating snowfall by 9% as compared to the unadjusted gauge precipitation. It is speculated that the underestimation of rainfall is due to un-measured run-off and evapotranspiration within the response area of the geolysimeter during larger rainfall events, while the overestimation of snow is at least partially due to the systematic undercatch common to most precipitation gauges due to wind. Using recently developed transfer functions from the World Meteorological Organization's (WMO) Solid Precipitation Intercomparison Experiment (SPICE), bias adjustments were applied to the Alter-shielded, Geonor T-200B precipitation gauge measurements of snowfall to mitigate wind-induced errors. The bias between the gauge and geolysimeter measurements was reduced to 3 %. This suggests that the geolysimeter is capable of accurately measuring solid precipitation and can be used as an independent and representative reference of true precipitation.
机译:利用在深度观察孔中测得的地下水压力之间的关系和总表面负荷,地质称重立体计(GeoLysimeter)具有独立于常规沉淀计观察测量降水事件总量的能力。在鸭子湖,SK附近的共同位点观察地下水压力变化和事件降水之间的相关性。相关系数(R(2))从0.99变化,降雨量为0.94用于降雪。与未经调整的仪表降水相比,地理仪被显示为降雨降雨量,而在高估降雪中升高了9%。据推测,降雨的低估是由于在较大的降雨事件期间GeoLysimeter的响应区域内未测量的径向和蒸发,而雪的高估至少部分地是由于大多数沉淀仪的系统腋下常见由于风。使用最近开发的转移功能来自世界气象组织(WMO)固体降水离心实验(SPICE),将偏置调整应用于换挡,地理T-200B降水量测量降雪测量,以减轻风力诱导的误差。测量仪和地理仪测量之间的偏差降至3%。这表明地理位置能够精确测量固体沉淀,可用作真正沉淀的独立和代表性的参考。

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