lidar surveys
Joaquín Muñoz-Cobo Belart, Eyjólfur Magnússon and Finnur Pálsson .......................... 11
Mass balance analysis of Drangajökull ice cap from historical photogrammetry and lidar
Beata Csatho, Thorsten Markus and Thomas Neumann ................................................... 12
The ICESat-2 mission: design, applications and pre-launch performance assessments
/media/vatnafar/joklar/Reykholt-abstracts.pdf
Resources and Energy Directorate
Edited by: Heidi H. Pikkarainen
Print: Norwegian Water Resources and Energy Directorate
Number printed: 130
Cover design: Rune Stubrud
Prepared for: The CES project
Norwegian Water Resources and Energy Directorate
Middelthunsgate 29
P.O. Box 5091 Majorstua
N-0301 OSLO
NORWAY
Telephone: +47 22 95 95 95
Fax: +47 22 95 90 00
/media/ces/ces-oslo2010_proceedings.pdf
are largest. Positive sensible heat fluxes also occur over
the interior regions of Vatnajökull and Hofsjökull at around noon on 27 July, due to the cold
northeasterly flow over the glaciers (see Figure 10). However, along the edges and on the other
icecaps, sensible heat fluxes under clear skies are directed from the atmosphere to the snow. On 3
August, with clear skies, weak winds, and with above freezing
/media/vedurstofan/utgafa/skyrslur/2015/VI_2015_006.pdf
in risk
assessment studies and design parameters for drainage structures and flood defences.
10
Samantekt. Endurkomutími úrkomu
Vatnsflóð sem verða vegna mikilla rigninga geta valdið töluverðum skemmdum á innviðum sem
og raskað atvinnulífi og umferð. Þegar slík úrkoma fellur að vetri eða vori samfara asahláku
geta orðið skyndiflóð. Tíðni og stærð slíkra flóða er háð því hve mikilli úrkomu
/media/vedurstofan-utgafa-2020/VI_2020_008.pdf
Flödeskommitténs riktlinjer i ett framtida förändrat klimat (Sensitivity analysis of the Swedish guidelines for design flood estimation in a future changed climate). Stockholm: Elforsk rapport,
Andréasson, J., Lindström, G., Grahn, G., & Johansson, B. (2004). Runoff in Sweden-Mapping of climate change impacts on hydrology. Presented at the XXIII Nordic Hydrological Conference, Tallinn, Estonia, Aug 8-12. NHP
/climatology/research/ce/publications/
and deep snow cover in Finland based on observations. Boreal Environment Research (Submitted).
Veijalainen, N. & Vehviläinen, B. (2008). The effect of climate change on design floods of high hazard dams in Finland, Hydrology Research 39 (5-6): 465-477.
Wilson, D., Hisdal, H. & Lawrence, D. (2010) Has streamflow changed in the Nordic countries? - Recent trends and comparisons to hydrological
/ces/publications/nr/1943
management of the
road maintenance sector were created with the inherent design logic to be robust over
different temporal, spatial and governance scales. The main assessment criteria for road
maintenance in relation to climate adaptation that have been identified are: 1) safer roads,
2) better asset management, 3) lower frequency of maintenance, 4) use of lower impact
materials, and 5
/media/loftslag/Group4.pdf
for communication.
A Project goal - exploration vs decision support:
I. Inclusion of norms? : descriptive vs normative
II. Vantage point: forecasting vs backcasting
III. Subject: issue-based, area-based, institution-based
IV. Time scale: long term vs short term
V. Spatial scale: global/supranational vs national/local
Scenarios – types (van Notten et al., 2003)
WHY? and FOR WHOM?
B Process design/media/loftslag/Kok_1-scenarios-lecture-1.pdf
the
interior of the ice sheet is somewhat too dry (Fig. 9b). By average a mean negative precipitation
bias of 0.16myr−1 results which equals 43% of the mean from Burgess et al. (2010) (Table 2).
6 Bias Correction and Future Scenario Runs
After having specified a number of biases in the RCM output the model runs were repeated
with bias-corrected RCM data.
To correct the temporal bias of Ta, daily
/media/ces/ces_geus_paakitsoq_full_report.pdf
m
J
M5 [C°] -3
obs. [C°] -4
nce 1
re 5. Comp
26); an int
temperatu
this system
y gridded v
picion abo
-Jökulsá w
similar dif
han observ
h elevation
ces the effe
months No
ly only on
high the tem
n band wi
refore be s
onthly tem
an Feb Ma
.2 -3.1 -3.
.3 -4.1 -3.
.1 1.0 0.6
arison of m
erpolation
re is shown
atic differe
alues, see T
ut the qual
atershed; b
ference wa
ations for t
gradient fo
/media/ces/2010_017.pdf