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RD&D-Programme 2004 - SKB

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20-19 Kautsky U (ed), 2001. The biosphere today and tomorrow in the SFR area. <strong>SKB</strong> R-01-27,<br />

Svensk Kärnbränslehantering AB.<br />

20-20 Kumblad L, 1999. A carbon budget for the aquatic ecosystem above SFR in Öregrundsgrepen.<br />

<strong>SKB</strong> R-99-40, Svensk Kärnbränslehantering AB.<br />

20-21 Kumblad L, 2001. A transport and fate model of carbon-14 in a bay of the Baltic Sea at SFR.<br />

Today and in the future. <strong>SKB</strong> TR-01-15, Svensk Kärnbränslehantering AB.<br />

20-22 Kumblad L, Gilek M, Naeslund B, Kautsky U, 2003. An ecosystem model of the environmental<br />

transport and fate of carbon-14 in a bay of the Baltic sea, Sweden. Ecological modelling 166(2003):<br />

pp 193–210.<br />

20-23 Kumblad L, Kautsky U, <strong>2004</strong>. Effects of land-rise on the development of a coastal ecosystem of the<br />

Baltic Sea and its implementations for the long-term fate of 14 C discharges. Hydrobiologia. 514(1):<br />

pp 185–196.<br />

20-24 Kumblad L, Kautsky U, Naeslund B, <strong>2004</strong>. Transport and fate of radionuclides in aquatic<br />

environments – the use of ecosystem modelling for exposure assessments of nuclear facilities.<br />

Manuscript in Kumblad L, <strong>2004</strong>. Radionuclides in the Baltic Sea: Ecosystem models and experiments<br />

on transport and fate, Phd Thesis, Stockholm University.<br />

20-25 Nilsson A-C, Karlsson K, Borgiel M, 2003. Forsmark site investigation. Sampling and analyses of<br />

surface waters. Results from sampling in the Forsmark area, March 2002 to March 2003. <strong>SKB</strong> P-03-27,<br />

Svensk Kärnbränslehantering AB.<br />

20-26 Nilsson E, 2001. A preliminary carbon budget for two oligotrophic hardwater lakes in the Forsmark<br />

area, Sweden. <strong>SKB</strong> R-01-24, Svensk Kärnbränslehantering AB.<br />

20-27 Nilsson E, 2001. Methods to measure biomass and production of bacteria and photosynthetic<br />

microbiota and their application on illuminated lake sediments. A literature study. <strong>SKB</strong> R-01-23,<br />

Svensk Kärnbränslehantering AB.<br />

20-28 Sandberg J, <strong>2004</strong>. Test of the suitability of ECOPATH/ECOSIM modelling software as a compliment<br />

to estimate flows of carbon, C-14 and radionuclides in the Öregrundsgrepen area. <strong>SKB</strong> R-04-37,<br />

Svensk Kärnbränslehantering AB.<br />

20-29 Kumblad L, Kautsky U, <strong>2004</strong>. Three dynamic models for the transport and fate of carbon,<br />

nutrients and point source released radionuclides to an aquatic ecosystem. <strong>SKB</strong> TR-04-13,<br />

Svensk Kärnbränslehantering AB.<br />

20-30 Jones J, Vahlund F, Kautsky U, <strong>2004</strong>. Tensit – A novel probabilistic simulation tool for<br />

safety assessments – Tests and verifications using biosphere models. <strong>SKB</strong> TR-04-07,<br />

Svensk Kärnbränslehantering AB.<br />

20-31 Engqvist A, Andrejev O, 1999. Water exchange of Öregrundsgrepen – A baroclinic 3D-model study.<br />

<strong>SKB</strong> TR-99-11, Svensk Kärnbränslehantering AB.<br />

20-32 Engqvist A, Andrejev O, 2000. Sensitivity analysis with regard to variations of physical forcing<br />

including two possible future hydrographic regimes for the Öregrundsgrepen. A follow-up baroclinic<br />

3D-model study. <strong>SKB</strong> TR-00-01, Svensk Kärnbränslehantering AB.<br />

20-33 Engqvist A, Stenström P, <strong>2004</strong>. Archipelago strait exchange processes – An overview. Deep Sea Res.<br />

(in press).<br />

20-34 Engqvist A, Andrejev O, 2003. Water exchange of the Stockholm archipelago – a cascade framework<br />

modelling approach. J. Sea Research. 49: pp 275–294.<br />

20-35 Holmén J G, Stigsson M, 2001. Modelling of future hydrogeological conditions at SFR, Forsmark.<br />

<strong>SKB</strong> R-01-02, Svensk Kärnbränslehantering AB.<br />

20-36 Holmén J, Forsman J, <strong>2004</strong>. Flow of groundwater from great depths in the near surface deposits;<br />

modelling of a local domain in northeast Uppland. <strong>SKB</strong> R-04-31, Svensk Kärnbränslehantering AB.<br />

20-37 Elert M, Argärde A C, Ericsson A-M, 1988. Modelling of the interface between the geosphere and<br />

the biosphere: Discharge through a soil layer. Kemakta AB Stockholm. Kemakta AR 88-23.<br />

20-38 Widén E, 2001. Groundwater flow into and out of two lakes partly surrounded by peatland.:<br />

Division of land and water resources. Royal Institute of Technology. Thesis report series 2001:6.<br />

20-39 Widén E, Jansson P-E, Espeby B, Olofsson B, <strong>2004</strong>. Estimations of the water flows to lake<br />

Hällefjärd and lake Eckarfjärden, northern Uppland. <strong>SKB</strong> R-04-30, Svensk Kärnbränslehantering AB.<br />

20-40 Jarsjö J, Shibuo Y, Destouni G, <strong>2004</strong>. Using PCRaster-POLFLOW approach to GIS-based<br />

modelling of coupled groundwater-surface water hydrology in the Forsmark area. <strong>SKB</strong> R-04-54,<br />

Svensk Kärnbränslehantering AB.<br />

20-41 Kumblad L, 2002. The use of ecosystem models in ecological risk assessments of radionuclides.<br />

Licentiate thesis. Stockholm University, Dept Systems Ecology.<br />

20-42 Kumblad L, Bradshaw C, Gilek M, <strong>2004</strong>. Bioaccumulation of Ni-63, Cr-51 and C-14 in Baltic Sea<br />

benthos. Environmental Pollution (in press).<br />

20-43 Brydsten L, <strong>2004</strong>. A mathematical model for lake ontogeny in terms of filling with sediments and<br />

macrophyte vegetation. <strong>SKB</strong> TR-04-09, Svensk Kärnbränslehantering AB.<br />

20-44 Brunberg A-K, Blomkvist P, 2003. Ontogeny of lake ecosystems in the Forsmark area – chemical<br />

analyses of deep sediment cores. <strong>SKB</strong> R-03-28, Svensk Kärnbränslehantering AB.<br />

350 RD&D-<strong>Programme</strong> <strong>2004</strong>

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