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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >A new instrumental precipitation dataset for the greater alpine region for the period 1800-2002
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A new instrumental precipitation dataset for the greater alpine region for the period 1800-2002

机译:1800-2002年期间较大的高山地区新的仪器降水数据集

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The paper describes the development of a dataset of 192 monthly precipitation series covering the greater alpine region (GAR, 4-18°E by 43-49°N). A few of the time series extend back to 1800. A description is provided of the sometimes laborious processes that were involved in this work: from locating the original sources of the data to homogenizing the records and eliminating as many of the outliers as possible. Locating the records required exhaustive searches of archives currently held in yearbooks and other sources of the states, countries and smaller regional authorities that existed at various times during the last 200 years. Homogeneity of each record was assessed by comparison with neighbouring series, although this becomes difficult when the density of stations reduces in the earliest years. An additional 47 series were used, but the density of the sites in Austria and Switzerland was reduced to maintain an even coverage in space across the whole of the GAR. We are confident of the series back to 1840, but the quality of data before this date must be considered poorer. Of all of the issues involved in homogenizing these data, perhaps the most serious problem is associated with the differences in the height above ground of the precipitation gauges, in particular the general lowering of gauge heights in the late 19th century for all countries, with the exception of Italy. The standard gauge height in the early-to-mid 19th century was 15-30 m above the ground, with gauges being generally sited on rooftops. Adjustments to some series of the order of 30-50% are necessary for compatibility with the near-ground location of gauges during much of the 20th century. Adjustments are sometimes larger in the winter, when catching snowfall presents serious problems. Data from mountain-top observatories have not been included in this compilation (because of the problem of measuring snowfall), so the highest gauge sites are at elevations of 1600-1900 m in high alpine valley locations. Two subsequent papers will analyse the dataset. The first will compare the series with other large-scale precipitation datasets for this region, and the second will describe the major modes of temporal variability of precipitation totals in different seasons and determine coherent regions of spatial variability.
机译:本文描述了一个覆盖整个高寒地区(GAR,4-18°E到43-49°N)的192个月降水序列的数据集的开发。一些时间序列可以追溯到1800年。描述了这项工作中有时很费力的过程:从查找数据的原始源到均匀化记录并消除尽可能多的异常值。要查找记录,需要详尽搜索过去200年来在不同时间存在的年鉴和其他国家,国家和较小的地区当局的资料中当前保存的档案。通过与相邻序列的比较来评估每个记录的同质性,尽管当最早的站点密度降低时,这变得很困难。使用了另外的47系列,但降低了奥地利和瑞士的场地密度,以保持整个GAR上空间的均匀覆盖。我们对自1840年以来的系列充满信心,但必须认为此日期之前的数据质量较差。在使这些数据均质化涉及的所有问题中,也许最严重的问题与降水量计地面高度的差异有关,尤其是19世纪末期所有国家的高度计普遍降低,意大利除外。 19世纪初期至中期,标准量规高度为离地面15-30 m的高度,量规通常位于屋顶上。为了与20世纪大部分时间与仪表的近地面位置兼容,必须对某些系列进行30-50%左右的调整。有时在冬天,调整的幅度会更大,因为降雪会带来严重的问题。来自山顶天文台的数据未包括在该汇编中(由于测量降雪的问题),因此在高高山山谷地区,海拔最高的站点位于海拔1600-1900 m处。随后的两篇论文将分析数据集。第一个将对该系列与该地区的其他大规模降水数据集进行比较,第二个将描述不同季节降水总量的时间变化的主要模式,并确定空间变化的连贯区域。

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