{"id":51,"date":"2010-07-05T18:57:00","date_gmt":"2010-07-05T18:57:00","guid":{"rendered":"http:\/\/uni.hi.is\/sigmg\/research\/publications\/"},"modified":"2019-08-08T13:31:51","modified_gmt":"2019-08-08T13:31:51","slug":"publications","status":"publish","type":"page","link":"https:\/\/uni.hi.is\/sigmg\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<p><strong><em>Articles <\/em><\/strong><\/p>\n<p>Gunnarsson, A., Gardarsson, S.M., and Sveinsson, O.G.B. (2019). Icelandic snow cover characteristics derived from a gap-filled MODIS daily snow cover product. Hydrol. Earth Syst. Sci., 23, 3021\u20133036. <a href=\"https:\/\/doi.org\/10.5194\/hess-23-3021-2019\">DOI 10.5194\/hess-23-3021-2019<\/a> <\/p>\n<p>Eythorsson, D., Gardarsson, S.M., Ahmad, S.K., Hossain, F., and Nijssen, B. (2019). Arctic climate and snow cover trends \u2013 Comparing Global Circulation Models with remote sensing observations. International Journal of Applied Earth Observation and Geoinformation, 80, 71-81. <a href=\"https:\/\/doi.org\/10.1016\/j.jag.2019.04.003\">DOI 10.1016\/j.jag.2019.04.003<\/a><\/p>\n<p>Eythorsson, D., Gardarsson, S.M., Gunnarsson, A., and Hrafnkelsson, B. (2018). Statistical summer mass-balance forecast model with application to Bruarjokull glacier, South East Iceland. Journal of Glaciology. <strong>64<\/strong>(244), 311-320. <a href=\"https:\/\/doi.org\/10.1017\/jog.2018.22\">DOI 10.1017\/jog.2018.22<\/a><\/p>\n<p>Unger, E.A., Ulfarsson, G.F., Gardarsson, S.M., and Matthiasson, T. (2018). The effect of wind energy production on cross-border electricity pricing: The case of western Denmark in the Nord Pool market. <em>Economic Analysis and Policy.<\/em> <strong>58<\/strong>, 121-130. <a href=\"https:\/\/doi.org\/10.1016\/j.eap.2018.01.006\">DOI 10.1016\/j.eap.2018.01.006<\/a><\/p>\n<p>Holmgeirsson, S.; Ingolfsson, H. P.; Eichelberger, J.; Pye, S.; Normann, R.; Kaldal, G. S.; Blankenship, D.; Mortensen, A.; Markusson, S.; Paulsson, B.; Karlsdottir, S. N.; Wallevik, S. O.; Gardarsson, S. M.; Tester, J.; Lavallee, Y. (2018). Krafla Magma Testbed (KMT): Engineering Challenges of Drilling into Magma and Extracting its Energy. <em>Geothermal Resources Council Transactions<\/em>, <strong>42<\/strong>.<\/p>\n<p>Ingolfsson, H. P.; Gardarsson, S. M. (2018). GEORG Geothermal Energy Research Cluster Initiative \u2013 Organizational Structure and Synergy. <em>Geothermal Resources Council Transactions<\/em>, <strong>42<\/strong>.<\/p>\n<p>Barich, A; Ingolfsson, P.I.; Gardarsson, S.M., and Urban, T. (Editors) (2018). GEORG Geothermal Workshop \u2013 Book of Abstracts. <em>GEORG Geothermal Workshop 2018<\/em>, November 14-15th, 2018.<\/p>\n<p>Gunnarsdottir, M.J., Persson, K.M., Andradottir, H.O., and Gardarsson, S.M. (2017). Status of small water supplies in the Nordic countries: Characteristics, water quality and challenges. <em>International Journal of Hygiene and Environmental Health<\/em>. <strong>220<\/strong>(8), 1309-1317. <a href=\"https:\/\/doi.org\/10.1016\/j.ijheh.2017.08.006\">DOI 10.1016\/j.ijheh.2017.08.006<\/a><\/p>\n<p>Unger, E.A., Ulfarsson, G.F., Gardarsson, S.M., and Matthiasson, T. (2017). A Long-Term Analysis Studying the Effect of Changes in the Nordic Electricity Supply on Danish and Finnish Electricity Prices. <em>Economic Analysis and Policy<\/em>, <strong>56<\/strong>, 37-50. <a href=\"http:\/\/doi.org\/10.1016\/j.eap.2017.06.001\">DOI 10.1016\/j.eap.2017.06.001<\/a><\/p>\n<p>Klove, B., Kvitsand, H., Pitk\u00e4nen, T., Gunnarsd\u00f3ttir, M.J., Gaut, S., Gardarsson, S.M. Rossi, P., Miettinen, I. (2017). Overview of groundwater sources and water-supply systems, and associated microbial pollution, in Finland, Norway and Iceland. <em>Hydrogeology Journal<\/em>, <strong>25<\/strong>(4), 1033-1044. <a href=\"http:\/\/dx.doi.org\/10.1007\/s10040-017-1552-x\">DOI 10.1007\/s10040-017-1552-x<\/a><\/p>\n<p>Eliasson, K., Ulfarsson, G.F., Valsson, T., and Gardarsson, S.M. (2017). Identification of development areas in a warming Arctic with respect to natural resources, transportation, protected areas, and geography. <em>Futures<\/em>, 85, 14-29. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.futures.2016.11.005\">DOI 10.1016\/j.futures.2016.11.005<\/a><\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M., Jonsson, G.S., and Bartram, J. (2016). Chemical Quality and Regulatory Compliance of Drinking Water in Iceland. <em>International Journal of Hygiene and Environmental Health<\/em>, <strong>219<\/strong>(4), 724-733. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.ijheh.2016.09.011\">DOI 10.1016\/j.ijheh.2016.09.011<\/a><\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M., Olafsdottir, S. (2016). \u00cdslenskt neysluvatn: yfirlit og sta\u00f0a g\u00e6\u00f0a. <em>Verktaekni, Journal of the Association of Chartered Engineers in Iceland, <\/em><strong>22<\/strong>(1), 32-37.<\/p>\n<p>Ingolfsson, H.P., Stoklosa, A. W., Gudmundsson, M. T., Unnthorsson, R., Asbjornsson, E. J., Hauksd\u00f3ttir, S., Palsson, B., Bornsson, O.B., Huenges, E., Gardarsson, S. M. (2016). GEORG - Geothermal Research Cluster cooperation, Joint effort in geothermal energy research. <em>Proceedings of the European Geothermal Congress 2016<\/em>, ISBN 978-2-9601946-0-9, Sept. 20-24, 2016, Strasbourg, France.<\/p>\n<p>Ingolfsson, H.P., Arnason, K, Axelsson, G., Franzson, H., Hreinsdottir, S., Jonsson, M.Th., Saevarsdottir, G.A., Gunnarsson, G., Juliusson, E., Podgorney, R.P., Sigmundsson, F., Gardarsson, S. M. (2016). Deep Roots of Geothermal Systems. A GEORG Collaborative Project. <em>Proceedings of the European Geothermal Congress 2016<\/em>, ISBN 978-2-9601946-0-9, Sept. 20-24, 2016, Strasbourg, France.<\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M., Jonsson, G.S., Armannsson, H., Bartram, J. (2015). Natural background levels for chemicals in basaltic volcanic aquifers. <em>Hydrology Research<\/em>, <strong>46<\/strong>(4), 647-660. <a href=\"http:\/\/dx.doi.org\/10.2166\/nh.2014.123\">DOI 10.2166\/nh.2014.123<\/a><\/p>\n<p>Gunnarsdottir, M. J., Gardarsson, S. M., and Bartram, J. (2015). Developing a national framework for safe drinking water \u2013 Case study from Iceland. <em>Int. J. Hyg. Environ. Health<\/em>. <strong>281<\/strong>(2), 196-202. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.ijheh.2014.10.003\">DOI 10.1016\/j.ijheh.2014.10.003<\/a><\/p>\n<p>Gunnarsdottir, M.J., and Gardarsson, S.M. (2015). G\u00e6\u00f0i neysluvatns \u00ed fer\u00f0a\u00fej\u00f3nustu \u00e1 \u00cdslandi. <em>Verktaekni, Journal of the Association of Chartered Engineers in Iceland<\/em>. <strong>21<\/strong>(1), 17-20.<\/p>\n<p>Olafsdottir, S., Gardarsson, S.M., Andradottir, H.O., Armannsson, H., and Oskarsson, F. (2015). Near Field Fate of H<sub>2<\/sub>S from two Geothermal Power Plants in Iceland. <em>Proceedings World Geothermal Congress 2015<\/em>, April 2015, Australia \u2013 New Zealand.<\/p>\n<p>Gardarsson, S.M., Gunnarsson, A., Pfister, M., Tomasson, G.G., (2015). Karahnjukar dam spillway \u2013 Comparison of operational data and results from hydraulic modelling. <em>Proceeding of the Hydro 2015 International Conference, <\/em>October 26-28, 2015, Bordeaux, France.<\/p>\n<p>Olafsdottir, S., Gardarsson, S.M., Andradottir, H.O. (2014). Natural near Field Sinks of Hydrogen Sulfide from two Geothermal Power Plants. Atmospheric Environment, <strong>96<\/strong>, 236-244. <a href=\"http:\/\/dx.doi.org\/DOI:10.1016\/j.atmosenv.2014.07.039\">DOI 10.1016\/j.atmosenv.2014.07.039<\/a><\/p>\n<p>Olafsdottir, S., Gardarsson, S.M., and Andradottir, H.O. (2014). Spatial distribution of Hydrogen Sulfide from two Geothermal Power Plants in Complex Terrain. Atmospheric Environment, <strong>82<\/strong>, 60-70. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.atmosenv.2013.10.013\">DOI 10.1016\/j.atmosenv.2013.10.013<\/a><\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M., and Sigmundsdottir, G. (2014). \u00c1hrif g\u00e6\u00f0akerfa vatnsveitna \u00e1 l\u00fd\u00f0heilsu. Verktaekni, Journal of the Association of Chartered Engineers in Iceland, <strong>20<\/strong>(1), 17-21.<\/p>\n<p>Gunnarsson, A., Gardarsson, S.M., Tomasson, G.G., Johannesson, H. (2014).\u00a0 Model investigation of energy dissipation for low Froude number spillways in Lower Thjorsa River in Iceland.\u00a0 <i>Proceeding of the Hydro 2014 International Conference, <\/i>October 13-15, 2014, Cernobbio, Italy.<\/p>\n<p>Valsson, T., G. F. Ulfarsson, and Gardarsson, S.M. (2013). \u00a0A Theory of the Evolution of Settlement Structures Based on Identification and Use of Patterns: Iceland as a Case Study.\u00a0<i>Futures,\u00a0<strong>54<\/strong>, 19-32<\/i>. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.futures.2013.09.008\">DOI 10.1016\/j.futures.2013.09.008<\/a><\/p>\n<p>Olafsdottir, S., and Gardarsson, S.M. (2013). Impacts of Meteorological Factors on Hydrogen Sulfide Concentration downwind of Geothermal Power Plants. <i>Atmospheric Environment,<\/i> <strong>77<\/strong>, 185-192. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.atmosenv.2013.04.077\">DOI 10.1016\/j.atmosenv.2013.04.077<\/a><\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M., and Andradottir, H.O. (2013). Microbial contamination in groundwater supply in cold climate and pumice: Case study of norovirus outbreak at Lake M\u00fdvatn, Iceland.\u00a0 <i>Hydrology Research, <strong>44<\/strong>(6), 1114-1128<\/i>. <a href=\"http:\/\/dx.doi.org\/10.2166\/nh.2013.076\">DOI 10.2166\/nh.2013.076<\/a><\/p>\n<p>Gardarsson, S.M., Sigtryggsdottir, F.G., Palmason, P., and Ingolfsson, P. (2013).\u00a0 Measures in the Hafrahvammagljufur Canyon to limit scour due to operation of the Karahnjukar Dam Spillway.\u00a0 ICOLD 2013 International Symposium, August 14-16, 2013, Seattle, USA.<\/p>\n<p>Thorarinsdottir, T., Gardarsson, S.M., Crochet, P., and Andradottir, H.O. (2013). A\u00f0fer\u00f0afr\u00e6\u00f0i vi\u00f0 mat \u00e1 t\u00e6knilega m\u00f6gulegu vatnsafli me\u00f0 notkun vatnafr\u00e6\u00f0i l\u00edkana \u00ed h\u00e1rri upplausn. <i>Verktaekni, Journal of the Association of Chartered Engineers in Iceland<\/i>, <strong>19<\/strong>(3), 23-27.<\/p>\n<p>Gunnarsson, A., Gardarsson, S.M., Tomasson, G.G., Johannesson, H. (2013). Pr\u00f3fanir i\u00f0u\u00fer\u00f3ar vi\u00f0 Hvammsvirkjun. <i>Verktaekni, Journal of the Association of Chartered Engineers in Iceland<\/i>, <strong>19<\/strong>(3), 45-51.<\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M., Elliott, M.A., Sigmundsdottir, G., and Bartram, J. (2012).\u00a0 Benefits of Water Safety Plans: Microbiology, Compliance and Public Health.\u00a0 <i>Environ. Sci. and Technol.<\/i>, <strong>46<\/strong>(14),\u00a07782-7789<i>.<\/i><\/p>\n<p>Gunnarsdottir, M. J., Gardarsson, S. M., and Bartram, J. (2012). Icelandic experience with water safety plans. <em>Water Science and Technology<\/em>, <strong>65<\/strong>(2), 277-288.<\/p>\n<p>Hrafnkelsson, B., Ingimarsson, K. M., Gardarsson, S. M., and Snorrason, A. (2012). Modeling discharge rating curves with Bayesian B-splines. <em>Stochastic Environmental Research and Risk Assessment<\/em>, <strong>26<\/strong>(1), 1-20.<\/p>\n<p>Gudmundsson, A., Gardarsson, S.M., Tomasson, G.G., Gunnarsson, A., Johannesson, H. (2012).\u00a0 Model Investigation of a Juvenile Bypass System at Urridafoss Hydroelectric Project in Iceland.\u00a0 <i>Proceedings of the International Conference HYDRO 2012<\/i>, Oct. 29-31, 2012, Bilbao, Spain.<\/p>\n<p>Gunnarsson, A., Gardarsson, S.M., Tomasson, G.G., Johannesson, H. (2012).\u00a0 Stilling basin length optimization for Hvammur hydro electric project.\u00a0 <em>Proceeding of the 2nd IAHR Europe Congress<\/em>, June 27-29, 2012, Munich, Germany.<\/p>\n<p>Gunnarsdottir, M.J., Gardarsson, S.M. (2011). \u00a0A\u00f0 byrgja brunninn \u2013 ranns\u00f3kn \u00e1 innra eftirliti vatnsveitna. <em>\u00c1rb\u00f3k VF\u00cd, 265-271.<\/em><\/p>\n<p>Gunnarsdottir, M.J. and Gardarsson, S.M. (2010). Study of water safety plans in sixteen Icelandic waterworks, <em>Proceeding of the 7\u00a0Nordic Drinking Water Conference 7 \u2013 9 June 2010<\/em>, Copenhagen, Denmark.<\/p>\n<p>Olafsdottir, S., Gardarsson, S.M. and Armannsson, H. (2010).\u00a0 Concentration of Hydrogen Sulfide from Geothermal Power Plants in the vicinity of Reykjavik City, Iceland, 2007-2009.\u00a0 <em>Proceedings World Geothermal Congress 2010<\/em>, 25-29, April 2010, Bali, Indonesia.<\/p>\n<p>Andradottir, H.O., Gardarsson, S.M., Olafsdottir, S. (2010). \u00a0L\u00e1r\u00e9tt \u00fatbrei\u00f0sla gosstr\u00f3ka Eyjafjallaj\u00f6kuls reiknu\u00f0 fr\u00e1 gervihnattamyndum. <em>\u00c1rb\u00f3k VF\u00cd, <\/em>bls. 239-248.<\/p>\n<p>Gardarsson, S.M., Tomasson, G.G., Sigtryggsdottir, F.G, P\u00e1lmason, P.R., and Stefansson, B. (2009).\u00a0 K\u00e1rahnj\u00fakar dam spillway - Design and operational experience.\u00a0 <em>Proceeding of 33rd International Association of Hydraulic Engineering &amp; Research (IAHR) Biennial Congress<\/em>, August 9-14, 2009, Vancouver, Canada.<\/p>\n<p>Tomasson, G.G., Gardarsson, S.M., Leifsson, Th.S., and Stefansson, B. (2009).\u00a0 Flood design criteria for K\u00e1rahnj\u00fakar dam \u2013 a glacially dominated watershed.\u00a0 <em>Proceeding of 33rd International Association of Hydraulic Engineering &amp; Research (IAHR) Biennial Congress<\/em>, August 9-14, 2009, Vancouver, Canada.<\/p>\n<p>Gunnarsdottir, M.J., Andradottir, H. O., and Gardarsson, S.M. (2008).\u00a0 Sj\u00fakd\u00f3msvaldandi \u00f6rverur \u00ed grunnvatni.\u00a0 <em>\u00c1rb\u00f3k VF\u00cd,<\/em> bls. 241-250.<\/p>\n<p>Olafsdottir, S., Gardarsson, S.M. and Gustafsson, L. (2008).\u00a0 Measurements and Modelling of Hydrogen Sulfide in Reykjavik City 2006 and 2007. <em>Proceedings of the <\/em><em>19th International Symposium on Transport Phenomena<\/em>, 17-20 August, 2008, Reykjavik, Iceland.<\/p>\n<p>Gardarsson, S.M, Andradottir, H.O., Ruesch, C. and Sveinsson, O.G.B. (2008).\u00a0 Karahnjukar Hydropower Project Climate Change Impacts. <em>Proceedings of the <\/em><em>15th International Seminar on Hydropower Plants<\/em>, pp. 493-502. November 26-28, Vienna, Austria.<\/p>\n<p>Ingimarsson, K.M., Hrafnkelsson, B., Gardarsson, S.M., and Snorrason, A. (2008). \u00a0Bayesian Estimation of Discharge Rating Curve.\u00a0 <em>Proceedings of the <\/em><em>XXV Nordic Hydrological Conference<\/em>, pp. 308-317.\u00a0 Nordic Association for Hydrology. Reykjavik, Iceland, August 11-13.<\/p>\n<p>Gardarsson, S.M. and Yeh, H. (2007).\u00a0 Hysteresis in Shallow Water Sloshing. \u00a0<em>Journal of Engineering Mechanics<\/em>, Volume 133, Issue 10, pp. 1093-1100.<\/p>\n<p>Olafsdottir, S., Gardarsson, S.M.\u00a0and Gustafsson, L.E. (2007).\u00a0 L\u00edkanger\u00f0 af styrk brennisteinsvetnis \u00ed Reykjav\u00edk. \u00a0<em>\u00c1rb\u00f3k VF\u00cd,<\/em> bls. 249-256.<\/p>\n<p>Jonsson, S.,\u00a0 Gardarsson, S.M.\u00a0and Andrad\u00f3ttir, H.\u00d3. (2007).\u00a0 Fl\u00f3\u00f0rakning me\u00f0 takm\u00f6rku\u00f0um g\u00f6gnum.\u00a0 <em>\u00c1rb\u00f3k VF\u00cd<\/em>, bls. 239-247.<\/p>\n<p>Tomasson, G.G., Gardarsson, S.M., Petry, B. and Stefansson, B. (2006).\u00a0 Design challenges and solutions for the K\u00e1rahnj\u00fakar spillway.\u00a0 <em>The International Journal on Hydropower and Dams<\/em>, Vol. 13(5), pp. 84-88.<\/p>\n<p>Tomasson, G.G., Gardarsson, S.M., and Leifsson, \u00de.S. (2006).\u00a0 Fl\u00f3\u00f0virki K\u00e1rahnj\u00fakavirkjunar vi\u00f0 H\u00e1lsl\u00f3n. <em>\u00c1rb\u00f3k<\/em> <em>VF\u00cd<\/em>, bls. 323-330.<\/p>\n<p>Gardarsson, S.M.\u00a0 Mat \u00e1 l\u00edft\u00edma H\u00e1lsl\u00f3ns me\u00f0 Monte Carlo hermun. (2006). <em>\u00c1rb\u00f3k VF\u00cd<\/em>, bls. 225-231.<\/p>\n<p>Gardarsson, S.M.\u00a0 \u00c1hrif loftslagsbreytinga \u00e1 l\u00edft\u00edma H\u00e1lsl\u00f3ns. (2006).\u00a0 <em>Conference proceeding Orku\u00feing<\/em>, pp. 572-579.\u00a0\u00a0 Reykjavik 12.-13. okt. 2006.<\/p>\n<p>Tomasson, G.G., Gardarsson, S.M., Petry, B. and Stefansson, B. (2006).\u00a0\u00a0 Spillway facilities for the K\u00e1rahnj\u00fakar Dam in Eastern Iceland: Design challenges and solutions. Conference proceeding, 9 pages. <em>International Conference Hydro 2006<\/em>. Porto Carras, Greece, September 25-28.<\/p>\n<p>Gardarsson, S.M. and Eliasson, J. (2006).\u00a0 Influence of Climate Warming on H\u00e1lsl\u00f3n Reservoir sedimentation.\u00a0 <em>Proceedings of the <\/em><em>International symposium on \u201cDams in the Societies of the XXI Century\u201d (ICOLD 22nd)<\/em>, pp 1255-1260.\u00a0 Barcelona, Spain.<\/p>\n<p>Gardarsson, S.M., Eliasson, J., and Jonsson, B. (2006).\u00a0 Influence of Climate Warming on H\u00e1lsl\u00f3n Reservoir sedimentation.\u00a0 Extended abstract, pp 125-128.\u00a0 <em>Proceedings of the European Conference on Impacts of Climate Change on Renewable Energy Sources.<\/em> Reykjavik, Iceland, June 5\u20139.<\/p>\n<p>Gardarsson, S.M. and Eliasson, J. (2006).\u00a0 Influence of Climate Warming on H\u00e1lsl\u00f3n Reservoir sediment filling.\u00a0 <em>Nordic Hydrology<\/em>.\u00a0 Vol. 37(3) pp 235\u2013245.<\/p>\n<p>Jonsson, B., Gardarsson, S. M. og Eliasson, J. (2006).\u00a0 K\u00e1rahnj\u00fakavirkjun. Frambur\u00f0ur inn \u00ed H\u00e1lsl\u00f3n og langt\u00edma\u00fer\u00f3un rennslis og mi\u00f0lunar (Extended Abstract). \u00c1grip erinda og veggspjalda. Vorr\u00e1\u00f0stefna Jar\u00f0fr\u00e6\u00f0af\u00e9lags \u00cdslands, Askja 19. apr\u00edl.<\/p>\n<p>Gunnarsd\u00f3ttir, M. J., Gar\u00f0arsson, S. M., og J\u00f3nsson, G. S. (2005). \u00a0Neysluvatnsg\u00e6\u00f0i \u00e1 \u00cdslandi. <em>\u00c1rb\u00f3k VF\u00cd<\/em>, bls. 201-208.<\/p>\n<p>Gar\u00f0arsson, S. M. (2005).\u00a0 Hermun sv\u00f6runar mannvirkis me\u00f0 stillanlegum v\u00f6kvadempara. \u00a0<em>\u00c1rb\u00f3k VF\u00cd<\/em>, bls. 225-232.\u00a0 Verkfr\u00e6\u00f0ingaf\u00e9lagi\u00f0 2005.<\/p>\n<p>J\u00f3nsson, B., Gar\u00f0arsson, S. M., og El\u00edasson, J. (2005).\u00a0 K\u00e1rahnj\u00fakavirkjun.\u00a0 Langt\u00edma\u00fer\u00f3un rennslis og mi\u00f0lunar. <em>\u00c1rb\u00f3k VF\u00cd<\/em>, bls. 253-259.<\/p>\n<p>Gardarsson, S. M. (2004). Case study of hysteresis in shallow water sloshing.\u00a0 <em>\u00c1rb\u00f3k VF\u00cd<\/em>, bls. 210-216.<\/p>\n<p>S\u00e6varsson, R., Gardarsson, S. M., Helgason, H. (2004). Hermil\u00edkan af Skerjafjar\u00f0arveitu.<em> \u00c1rb\u00f3k VF\u00cd<\/em>, bls. 191-201.<\/p>\n<p>Gardarsson, Sigurdur M. and Tomasson, Gunnar G. (2002).\u00a0 Water level changes due to the Karahnjukar Hydroelectric Project in Eastern Iceland.\u00a0 River Flow 2002 - <em>Proceedings of the International Conference on Fluvial Hydraulics<\/em>, D. Bousmar &amp; Y. Zech, Editors ISBN 90 5809 509 6.\u00a0 Netherland.<\/p>\n<p>Gardarsson, S.M, Yeh, H, and Reed, D. (2001).\u00a0 Behaviour of Sloped-Bottom Tuned Liquid Dampers. \u00a0<em>Journal of Engineering Mechanics<\/em>. Vol. 127, Issue 3, pp. 266-271.<\/p>\n<p>Gardarsson, S.M. and Grindeland, T. (2000). Case Study: Requirements for Cumulative Effects Analysis.\u00a0 <em>Proceedings of the <\/em><em>2000 ASCE International Water Resources Engineering Conference<\/em>, Minneapolis, USA.<\/p>\n<p>Gardarsson, S.M., Grindeland, T. Knox, J. and Hadley, H.H. (1999). Geomorphic Analysis of the Upper Mississippi River Basin.\u00a0 <em>Proceedings of the <\/em><em>1999 ASCE International Water Resources Engineering Conference<\/em>, Seattle, USA.<\/p>\n<p>Clinton, B.A., Bradley, B.B. and Gardarsson, S.M. (1999).\u00a0 Upper Mississippi River\/Illinois Waterway Cumulative Effects Study.\u00a0 <em>Proceedings of the <\/em><em>1999 ASCE International Water Resources Engineering Conference<\/em>, Seattle, USA.<\/p>\n<p>Grindeland, T., Gardarsson, S.M., and Knox, J. (1999).\u00a0 Human Influences on the Upper Mississippi River and Illinois Waterway. \u00a0<em>Proceedings of the 1999<\/em><em> ASCE International Water Resources Engineering Conference<\/em>, Seattle, USA.<\/p>\n<p>Nakato, T., Grindeland, T. and Gardarsson, S.M. (1999). Sediment Transport along the Upper Mississippi River. <em>Proceedings of the <\/em><em>1999 ASCE International Water Resources Engineering Conference,<\/em> Seattle, USA.<\/p>\n<p>Reed, D., Yeh, H., Yu, J. and Gardarsson, S.M. (1998).\u00a0 Investigation of Tuned Liquid Dampers under large amplitude excitation.\u00a0 <em>Journal of Engineering Mechanics<\/em>. Vol. 124, Issue 4, pp. 405-413.<\/p>\n<p>Gardarsson, S., H. Yeh and D.A. Reed (1998).\u00a0 An Investigation of Sloped Bottom Liquid Dampers.\u00a0 <em>Proc. of the 2nd World Conference on Structural Control<\/em>, Kyoto, Japan, pp. 155-164.<\/p>\n<p>Reed, D., Yeh, H., Yu, J. and Gardarsson, S.M. (1998).\u00a0 Tuned Liquid Dampers under large amplitude excitation.\u00a0 <em>Journal of Wind Engineering and Industrial Aerodynamics<\/em>. Vol. 74-6, pp. 923-930.<\/p>\n<p>Gardarsson, S.M., Grindeland, T., Bradley, J. (1998).\u00a0 Sediment Budget for Upper Mississippi River.\u00a0 <em>Proceedings of the <\/em><em>1998 ASCE International Water Resources Engineering Conference<\/em>, Memphis, USA.<\/p>\n<p>Walton, R., Gardarsson, S.M., Raman, A., Frediani, Jr., H.A., and Shaw, D.T. (1998).\u00a0 Hydrologic Investigations of the Loxahatchee Mitigation Bank.\u00a0 <em>Proceedings of the <\/em><em>1998 ASCE International Water Resources Engineering Conference<\/em>, Memphis, USA.<\/p>\n<p>Reed, D.A., H. Yeh, J. Yu and Gardarsson, S. (1997).\u00a0 An Investigation of Tuned Liquid Dampers for Structural Control.\u00a0 <em>Proc. of the UJNR Workshop<\/em>, Tsukuba, Japan.<\/p>\n<p>Reed, D.A., H. Yeh, J. Yu and Gardarsson, S. (1997).\u00a0 Tuned Liquid Dampers Under Large Amplitude Excitation\u201d. <em>Proc. of the 2nd European and African Conference on Wind Engineering<\/em>, Genova, Italy, June 22-26, pp.1627-1633.<\/p>\n<p>Reed, D., Yeh, H., Yu, J. and Gardarsson, S.M.\u00a0 (1996).\u00a0 Experimental investigation of tuned liquid dampers.\u00a0 <em>Proc. of ASCE 1996 International Conference on Natural Disasters Reduction<\/em>, pp 215-216 (abstract).<\/p>\n<p>Reed, D., Yeh, H., Yu, J. and Gardarsson, S.M. (1995). \u00a0Performance of tuned liquid dampers for large amplitude excitation. <em>Proceedings of the 2nd Internal Workshop on Structural Control<\/em>, pp. 432-443.<\/p>\n<p>Gardarsson, S.M. (1995).\u00a0 Run-up of a Solitary wave on a Vertical Wall. <em>Proceedings of the 2nd International Workshop on Long-Wave Runup Models<\/em>, pp. 298-305, Washington, USA.<\/p>\n<p>Gardarsson, S.M. and Yeh, H. (1993).\u00a0 Numerical simulations of Tsunami-Bore run-up using the Random Choice Method.\u00a0 <em>Proceedings of the 3rd UJNR Tsunami Workshop<\/em>, pp. 13-23. Osaka, Japan.<\/p>","protected":false},"excerpt":{"rendered":"<p>Articles Gunnarsson, A., Gardarsson, S.M., and Sveinsson, O.G.B. (2019). Icelandic snow cover characteristics derived from a gap-filled MODIS daily snow cover product. Hydrol. Earth Syst. Sci., 23, 3021\u20133036. DOI 10.5194\/hess-23-3021-2019 Eythorsson, D., Gardarsson, S.M., Ahmad, S.K., Hossain, F., and Nijssen, B. (2019). Arctic climate and snow cover trends \u2013 Comparing Global Circulation Models with remote [&hellip;]<\/p>\n","protected":false},"author":131,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-51","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/pages\/51","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/users\/131"}],"replies":[{"embeddable":true,"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/comments?post=51"}],"version-history":[{"count":72,"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/pages\/51\/revisions"}],"predecessor-version":[{"id":401,"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/pages\/51\/revisions\/401"}],"wp:attachment":[{"href":"https:\/\/uni.hi.is\/sigmg\/wp-json\/wp\/v2\/media?parent=51"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}