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Reflecting on the status of precipitation data collection in Alaska: a case study

机译:关于阿拉斯加降水数据收集状况的反思:一个案例研究

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Measuring precipitation, especially solid, at high latitudes is a challenge, In Alaska (USA), the extreme topography, large regional extent, and varying climate result in annual precipitation values ranging from 120 in. (3,050 mm) to 10 in. (254 mm). The state's precipitation network recently has expanded significantly, but there is still room for improvement. A recent intensity-duration-frequency (idf) exercise for the state showed that: (1) although density and spatial coverage of stations have increased, large areas in northern and western Alaska are still without gauge coverage; (2) the number of gauges at higher elevations is insufficient, although growing (e.g., the number of stations above 1,000 ft (305 m) increased from 26 gauges in 1963 to 134 gauges in 2012); (3) solid precipitation is difficult to quantify, and at unmanned sites, the phase of precipitation (liquid or solid) is hard to determine, as air temperature is often the only other measured variable; (4) corrections for gauge undercatch need to be made but too often information on the shielded status of gauges and wind speed is lacking; and (5) in the recent idf analysis only about one-third of the existing and historical stations were used because of data-quality issues, Obviously, overall improvements in precipitation data collection can and should be made.
机译:在高纬度地区测量降水,尤其是固体降水是一个挑战,在阿拉斯加(美国),极端的地形,较大的区域范围以及气候变化导致的年降水量范围从120英寸(3,050毫米)到10英寸(254)毫米)。该州的降水网络最近已大大扩展,但仍有改善的空间。该州最近进行的强度-持续时间-频率(idf)演算表明:(1)尽管站点的密度和空间覆盖范围有所增加,但阿拉斯加北部和西部的大片区域仍未覆盖测量范围; (2)高海拔的轨距数量虽然增长(例如,1,000英尺(305 m)以上的站点数量从1963年的26轨数量增加到2012年的134轨),但仍然不够; (3)固体降水难以量化,在无人值守的地点,很难确定降水的相(液态或固态),因为气温通常是唯一的其他测量变量; (4)需要对水位计的不足进行校正,但往往缺乏有关水位计的屏蔽状态和风速的信息; (5)在最近的idf分析中,由于数据质量问题,仅使用了约三分之一的现有和历史台站。显然,可以而且应该对降水数据收集进行总体改进。

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