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Climate change adaptation in European river basins
/media/loftslag/Huntjens_etal-2010-Climate-change-adaptation-Reg_Env_Change.pdf
and candidate situations is evaluated with
the Teweles-Wobus (S1) skill score (Wilks, 1995). The S1 score compares the shape of two fields
by considering their gradient at each grid point of the analogy domain:
S1(u) = 100
n 1
i=1
m
j=1
jDAi DFij+
n
i=1
m 1
j=1
jDA j DFjj
n 1i=1
m
j=1 Gi +
n
i=1
m 1
j=1 G j
(3)
with
DAi = A(i+1; j;u) A(i; j;u) (4)
DFi = F(i+1; j; t) F(i; j; t) (5)
DA j
/media/vedurstofan/utgafa/skyrslur/2014/VI_2014_006.pdf
of glaciers to climate change - case studies on Storglaciären and Hofsjökull. Presented at the European Conference on Impacts of Climate Change on Renewable Energy Sources, Reykjavik, Iceland, June 5-9. [Extended abstract]
Hock, R., Jansson, P., & Braun, L. (2005). Modelling the response of mountain glacier discharge to climate warming. In U. M. Huber, H. K. M. Bugmann & M. A. Reasoner (Eds.), Global
/climatology/research/ce/publications/
i=1
1
L
L
l=1
Qi(D;Tl) bQi(D;Tl)
Qi(D;Tl)
x100; (13)
RMSET (%) =
1
N
N
i=1
v
uu
t1
L
L
l=1
Qi(D;Tl) bQi(D;Tl)
Qi(D;Tl)
2
x100; (14)
where Qi(D;Tl) is the reference flood quantile at gauged site i and return period Tl , calculated
with the GEV distribution from the observed AMF series and bQi(D;Tl) is the estimated flood
quantile, calculated with the index flood method, (Eq. 1).
15
4
/media/vedurstofan/utgafa/skyrslur/2014/VI_2014_001.pdf
50 years. The quality of the estimation was evaluated by cal-
culating the relative root mean squared error of the quantile estimates for each site, and then the
average over all sites was calculated (RMSET ):
RMSET (%) =
1
N
N
i=1
v
uu
t1
L
L
l=1
Qi(D;Tl) bQi(D;Tl)
Qi(D;Tl)
2
x100 (9)
where Qi(D;Tl) is the reference flood quantile at gauged site i and return period Tl , calculated
/media/vedurstofan/utgafa/skyrslur/2015/VI_2015_007.pdf