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August 14, 2018Journal of Geophysical Research Atmospheres1,918 citationsOpen Access

An Ensemble Version of the E‐OBS Temperature and Precipitation Data Sets

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RCRichard CornesGSGerard van der SchrierEBElse van den Besselaar

Key Points

  • To develop a new ensemble version of the Europe-wide E-OBS daily temperature and precipitation dataset that reliably quantifies interpolation uncertainty.
  • Generated a 100-member ensemble of daily realization fields for daily minimum, mean, and maximum temperatures and precipitation at a 0.25° × 0.25° resolution spanning from 1950 onward.
  • Used observational station time series collated by the ECA&D initiative across varying station densities and time periods.
  • Validated the ensemble against the previous E-OBS dataset and regional gridded datasets from National Meteorological Services.
  • The 100-member ensemble provides more realistic interpolation uncertainty estimates than the original dataset, though uncertainty remains underestimated in data-sparse regions.
  • Climatological averages and extreme metrics align broadly with earlier E-OBS releases, while revised gridding methods introduce distinct differences in precipitation fields.

Abstract

Abstract We describe the construction of a new version of the Europe‐wide E‐OBS temperature (daily minimum, mean, and maximum values) and precipitation data set. This version provides an improved estimation of interpolation uncertainty through the calculation of a 100‐member ensemble of realizations of each daily field. The data set covers the period back to 1950 and provides gridded fields at a spacing of 0.25 ∘ × 0.25 ∘ in regular latitude/longitude coordinates. As with the original E‐OBS data set, the ensemble version is based on the station series collated as part of the ECA&D initiative. Station density varies significantly over the domain, and over time, and a reliable estimation of interpolation uncertainty in the gridded fields is therefore important for users of the data set. The uncertainty quantified by the ensemble data set is more realistic than the uncertainty estimates in the original version, although uncertainty is still underestimated in data‐sparse regions. The new data set is compared against the earlier version of E‐OBS and against regional gridded data sets produced by a selection of National Meteorological Services. In terms of both climatological averages and extreme values, the new version of E‐OBS is broadly comparable to the earlier version. Nonetheless, users will notice differences between the two E‐OBS versions, especially for precipitation, which arises from the different gridding method used.

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Cite This Study

Cornes et al. (2018) studied this question.

synapsesocial.com/papers/69dbcb9c7d378569a9835e88https://doi.org/10.1029/2017jd028200
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