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systematically underestimated. The bias is not as pronounced for the non glacial rivers. Com-
bining synoptic-scale and basin-scale predictors (method 3) leads to a substantial improvement
compared to the use of MSLP fields alone (method 1). Analogue forecasts become similar or
better than persistence, depending on catchment and lead time. Usually, persistence performs
better for T=1 day and then method 3
/media/vedurstofan/utgafa/skyrslur/2013/VI_2013_008.pdf
the com-
plexity of the hydrological processes through modelling, but its application is usually limited to
the short-range. Although the results demonstrated a great potential for this method, its success-
ful application in real-time will strongly depend on the quality and availability of streamflow
observations, which can be poor or simply missing during periods of variable durations, e.g
/media/vedurstofan/utgafa/skyrslur/2014/VI_2014_006.pdf
The medians of ratios from the broad-band
digitizers (G24) are close to one, but the lowest median values are obtained at stations with
short-period digitizers (RD3) in combination with either 1-Hz short-period (LE1) sensors, or
broad-band (BB) sensors. The reason for the low ratios in the LE1-RD3 combination is
obviously failure to retrieve all the low frequency amplitude through instrument
/media/vedurstofan/utgafa/skyrslur/2009/VI_2009_012.pdf