[{"author":[{"id":"87725","full_name":"Shikhani, Muhammed","first_name":"Muhammed","last_name":"Shikhani"},{"last_name":"Mi","full_name":"Mi, Chenxi","first_name":"Chenxi"},{"last_name":"Gevorgyan","full_name":"Gevorgyan, Artur","first_name":"Artur"},{"last_name":"Gevorgyan","first_name":"Gor","full_name":"Gevorgyan, Gor"},{"last_name":"Misakyan","first_name":"Amalya","full_name":"Misakyan, Amalya"},{"first_name":"Levon","full_name":"Azizyan, Levon","last_name":"Azizyan"},{"full_name":"Barfus, Klemens","first_name":"Klemens","last_name":"Barfus"},{"last_name":"Schulze","full_name":"Schulze, Martin","first_name":"Martin"},{"id":"86424","last_name":"Shatwell","full_name":"Shatwell, Tom","first_name":"Tom","orcid":"0000-0002-4520-7916"},{"last_name":"Rinke","first_name":"Karsten","full_name":"Rinke, Karsten"}],"year":"2021","status":"public","extern":"1","title":"Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan","volume":81,"citation":{"ieee":"M. Shikhani <i>et al.</i>, “Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan,” <i>Journal of Limnology</i>, vol. 81, no. s1, 2021, doi: <a href=\"https://doi.org/10.4081/jlimnol.2021.2024\">10.4081/jlimnol.2021.2024</a>.","ama":"Shikhani M, Mi C, Gevorgyan A, et al. Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan. <i>Journal of Limnology</i>. 2021;81(s1). doi:<a href=\"https://doi.org/10.4081/jlimnol.2021.2024\">10.4081/jlimnol.2021.2024</a>","short":"M. Shikhani, C. Mi, A. Gevorgyan, G. Gevorgyan, A. Misakyan, L. Azizyan, K. Barfus, M. Schulze, T. Shatwell, K. Rinke, Journal of Limnology 81 (2021).","din1505-2-1":"<span style=\"font-variant:small-caps;\"><span style=\"font-variant:small-caps;\">Shikhani, Muhammed</span> ; <span style=\"font-variant:small-caps;\">Mi, Chenxi</span> ; <span style=\"font-variant:small-caps;\">Gevorgyan, Artur</span> ; <span style=\"font-variant:small-caps;\">Gevorgyan, Gor</span> ; <span style=\"font-variant:small-caps;\">Misakyan, Amalya</span> ; <span style=\"font-variant:small-caps;\">Azizyan, Levon</span> ; <span style=\"font-variant:small-caps;\">Barfus, Klemens</span> ; <span style=\"font-variant:small-caps;\">Schulze, Martin</span> ; u. a.</span>: Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan. In: <i>Journal of Limnology</i> Bd. 81. Verbania , Istituto per lo Studio degli Ecosistemi (Verbania)  (2021), Nr. s1","chicago-de":"Shikhani, Muhammed, Chenxi Mi, Artur Gevorgyan, Gor Gevorgyan, Amalya Misakyan, Levon Azizyan, Klemens Barfus, Martin Schulze, Tom Shatwell und Karsten Rinke. 2021. Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan. <i>Journal of Limnology</i> 81, Nr. s1. doi:<a href=\"https://doi.org/10.4081/jlimnol.2021.2024\">10.4081/jlimnol.2021.2024</a>, .","apa":"Shikhani, M., Mi, C., Gevorgyan, A., Gevorgyan, G., Misakyan, A., Azizyan, L., Barfus, K., Schulze, M., Shatwell, T., &#38; Rinke, K. (2021). Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan. <i>Journal of Limnology</i>, <i>81</i>(s1). <a href=\"https://doi.org/10.4081/jlimnol.2021.2024\">https://doi.org/10.4081/jlimnol.2021.2024</a>","chicago":"Shikhani, Muhammed, Chenxi Mi, Artur Gevorgyan, Gor Gevorgyan, Amalya Misakyan, Levon Azizyan, Klemens Barfus, Martin Schulze, Tom Shatwell, and Karsten Rinke. “Simulating Thermal Dynamics of the Largest Lake in the Caucasus Region: The Mountain Lake Sevan.” <i>Journal of Limnology</i> 81, no. s1 (2021). <a href=\"https://doi.org/10.4081/jlimnol.2021.2024\">https://doi.org/10.4081/jlimnol.2021.2024</a>.","van":"Shikhani M, Mi C, Gevorgyan A, Gevorgyan G, Misakyan A, Azizyan L, et al. Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan. Journal of Limnology. 2021;81(s1).","ufg":"<b>Shikhani, Muhammed u. a.</b>: Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan, in: <i>Journal of Limnology</i> 81 (2021), H. s1.","bjps":"<b>Shikhani M <i>et al.</i></b> (2021) Simulating Thermal Dynamics of the Largest Lake in the Caucasus Region: The Mountain Lake Sevan. <i>Journal of Limnology</i> <b>81</b>.","mla":"Shikhani, Muhammed, et al. “Simulating Thermal Dynamics of the Largest Lake in the Caucasus Region: The Mountain Lake Sevan.” <i>Journal of Limnology</i>, vol. 81, no. s1, 2021, <a href=\"https://doi.org/10.4081/jlimnol.2021.2024\">https://doi.org/10.4081/jlimnol.2021.2024</a>.","havard":"M. Shikhani, C. Mi, A. Gevorgyan, G. Gevorgyan, A. Misakyan, L. Azizyan, K. Barfus, M. Schulze, T. Shatwell, K. Rinke, Simulating thermal dynamics of the largest lake in the Caucasus region: The mountain Lake Sevan, Journal of Limnology. 81 (2021)."},"language":[{"iso":"eng"}],"keyword":["General Lake Model (GLM)","Lake Sevan","temperature stratification","EWEMBI","climate warming"],"date_created":"2024-12-08T19:55:10Z","publication_identifier":{"issn":["1129-5767"],"eissn":["1723-8633"]},"publication":"Journal of Limnology","date_updated":"2024-12-11T13:04:19Z","issue":"s1","abstract":[{"text":"Lake Sevan is the largest freshwater body in the Caucasus region, situated at an altitude of 1,900 m asl. While it is a major water resource in the whole region, Lake Sevan has received little attention in international limnological literature. Although recent studies pointed to algal blooms and negative impacts of climate change and eutrophication, the physical controls on thermal dynamics have not been characterized and model-based assessments of climate change impacts are lacking. We compiled a decade of historical data for meteorological conditions and temperature dynamics in Lake Sevan and used a one-dimensional hydrodynamic model (GLM 3.1) in order to study thermal structure, the stratification phenology and their meteorological drivers in this large mountain lake. We then evaluated the representativeness of meteorological data products covering almost 4 decades (EWEMBI-dataset: 1979-2016) for driving the model and found that these data are well suited to restore long term thermal dynamics in Lake Sevan. This established model setting allowed us to identify major changes in Lake Sevan’s stratification in response to changing meteorological conditions as expected from ongoing climate change. Our results point to a changing mixing type from dimictic to monomictic as Lake Sevan will experience prolonged summer stratification periods and more stable stratification. These projected changes in stratification must be included in long-term management perspectives as they will intensify water quality deteriorations like surface algal blooms or deep water anoxia.","lang":"eng"}],"department":[{"_id":"DEP8022"}],"quality_controlled":"1","publisher":"Istituto per lo Studio degli Ecosistemi (Verbania) ","publication_status":"published","doi":"10.4081/jlimnol.2021.2024","_id":"12225","place":"Verbania ","type":"scientific_journal_article","intvolume":"        81","user_id":"83781"},{"doi":"10.1016/j.envsoft.2017.11.016","_id":"12239","place":"Oxford","intvolume":"       102","user_id":"83781","type":"scientific_journal_article","quality_controlled":"1","publisher":"Elsevier Science","issue":"4","abstract":[{"lang":"eng","text":"The modelling community has identified challenges for the integration and assessment of lake models due to the diversity of modelling approaches and lakes. In this study, we develop and assess a one-dimensional lake model and apply it to 32 lakes from a global observatory network. The data set included lakes over broad ranges in latitude, climatic zones, size, residence time, mixing regime and trophic level. Model performance was evaluated using several error assessment metrics, and a sensitivity analysis was conducted for nine parameters that governed the surface heat exchange and mixing efficiency. There was low correlation between input data uncertainty and model performance and predictions of temperature were less sensitive to model parameters than prediction of thermocline depth and Schmidt stability. The study provides guidance to where the general model approach and associated assumptions work, and cases where adjustments to model parameterisations and/or structure are required."}],"department":[{"_id":"DEP8022"}],"publication_status":"published","language":[{"iso":"eng"}],"keyword":["Lake model","Stratification","GLM","Model assessment","Global observatory data","Network science"],"date_updated":"2024-12-09T10:13:47Z","date_created":"2024-12-08T20:32:07Z","publication_identifier":{"eissn":["1873-6726"],"issn":["1364-8152"]},"publication":"Environmental modelling & software with environment data news ","page":"274-291","status":"public","main_file_link":[{"url":"https://doi.org/10.1016/j.envsoft.2017.11.016"}],"year":"2018","author":[{"first_name":"Louise C.","last_name":"Bruce","full_name":"Bruce, Louise C."},{"last_name":"Frassl","first_name":"Marieke A.","full_name":"Frassl, Marieke A."},{"full_name":"Arhonditsis, George B.","first_name":"George B.","last_name":"Arhonditsis"},{"first_name":"Gideon","full_name":"Gal, Gideon","last_name":"Gal"},{"last_name":"Hamilton","full_name":"Hamilton, David P.","first_name":"David P."},{"first_name":"Paul C.","full_name":"Hanson, Paul C.","last_name":"Hanson"},{"last_name":"Hetherington","full_name":"Hetherington, Amy L.","first_name":"Amy L."},{"last_name":"Melack","first_name":"John M.","full_name":"Melack, John M."},{"first_name":"Jordan S.","last_name":"Read","full_name":"Read, Jordan S."},{"first_name":"Karsten","last_name":"Rinke","full_name":"Rinke, Karsten"},{"last_name":"Rigosi","full_name":"Rigosi, Anna","first_name":"Anna"},{"first_name":"Dennis","last_name":"Trolle","full_name":"Trolle, Dennis"},{"full_name":"Winslow, Luke","first_name":"Luke","last_name":"Winslow"},{"first_name":"Rita","last_name":"Adrian","full_name":"Adrian, Rita"},{"first_name":"Ana I.","last_name":"Ayala","full_name":"Ayala, Ana I."},{"full_name":"Bocaniov, Serghei A.","last_name":"Bocaniov","first_name":"Serghei A."},{"full_name":"Boehrer, Bertram","first_name":"Bertram","last_name":"Boehrer"},{"full_name":"Boon, Casper","last_name":"Boon","first_name":"Casper"},{"full_name":"Brookes, Justin D.","last_name":"Brookes","first_name":"Justin D."},{"last_name":"Bueche","full_name":"Bueche, Thomas","first_name":"Thomas"},{"first_name":"Brendan D.","last_name":"Busch","full_name":"Busch, Brendan D."},{"last_name":"Copetti","full_name":"Copetti, Diego","first_name":"Diego"},{"first_name":"Alicia","full_name":"Cortés, Alicia","last_name":"Cortés"},{"first_name":"Elvira","full_name":"de Eyto, Elvira","last_name":"de Eyto"},{"first_name":"J. Alex","full_name":"Elliott, J. Alex","last_name":"Elliott"},{"last_name":"Gallina","first_name":"Nicole","full_name":"Gallina, Nicole"},{"last_name":"Gilboa","full_name":"Gilboa, Yael","first_name":"Yael"},{"full_name":"Guyennon, Nicolas","last_name":"Guyennon","first_name":"Nicolas"},{"full_name":"Huang, Lei","last_name":"Huang","first_name":"Lei"},{"full_name":"Kerimoglu, Onur","first_name":"Onur","last_name":"Kerimoglu"},{"last_name":"Lenters","full_name":"Lenters, John D.","first_name":"John D."},{"first_name":"Sally","last_name":"MacIntyre","full_name":"MacIntyre, Sally"},{"first_name":"Vardit","last_name":"Makler-Pick","full_name":"Makler-Pick, Vardit"},{"last_name":"McBride","full_name":"McBride, Chris G.","first_name":"Chris G."},{"last_name":"Moreira","full_name":"Moreira, Santiago","first_name":"Santiago"},{"last_name":"Özkundakci","first_name":"Deniz","full_name":"Özkundakci, Deniz"},{"full_name":"Pilotti, Marco","last_name":"Pilotti","first_name":"Marco"},{"last_name":"Rueda","full_name":"Rueda, Francisco J.","first_name":"Francisco J."},{"first_name":"James A.","last_name":"Rusak","full_name":"Rusak, James A."},{"last_name":"Samal","first_name":"Nihar R.","full_name":"Samal, Nihar R."},{"last_name":"Schmid","full_name":"Schmid, Martin","first_name":"Martin"},{"orcid":"0000-0002-4520-7916","first_name":"Tom","last_name":"Shatwell","id":"86424","full_name":"Shatwell, Tom"},{"first_name":"Craig","last_name":"Snorthheim","full_name":"Snorthheim, Craig"},{"full_name":"Soulignac, Frédéric","first_name":"Frédéric","last_name":"Soulignac"},{"last_name":"Valerio","first_name":"Giulia","full_name":"Valerio, Giulia"},{"first_name":"Leon","last_name":"van der Linden","full_name":"van der Linden, Leon"},{"first_name":"Mark","full_name":"Vetter, Mark","last_name":"Vetter"},{"first_name":"Brigitte","full_name":"Vinçon-Leite, Brigitte","last_name":"Vinçon-Leite"},{"first_name":"Junbo","last_name":"Wang","full_name":"Wang, Junbo"},{"last_name":"Weber","first_name":"Michael","full_name":"Weber, Michael"},{"last_name":"Wickramaratne","full_name":"Wickramaratne, Chaturangi","first_name":"Chaturangi"},{"last_name":"Woolway","first_name":"R. Iestyn","full_name":"Woolway, R. Iestyn"},{"last_name":"Yao","first_name":"Huaxia","full_name":"Yao, Huaxia"},{"first_name":"Matthew R.","last_name":"Hipsey","full_name":"Hipsey, Matthew R."}],"volume":102,"citation":{"ama":"Bruce LC, Frassl MA, Arhonditsis GB, et al. A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network. <i>Environmental modelling &#38; software with environment data news </i>. 2018;102(4):274-291. doi:<a href=\"https://doi.org/10.1016/j.envsoft.2017.11.016\">10.1016/j.envsoft.2017.11.016</a>","ieee":"L. C. Bruce <i>et al.</i>, “A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network,” <i>Environmental modelling &#38; software with environment data news </i>, vol. 102, no. 4, pp. 274–291, 2018, doi: <a href=\"https://doi.org/10.1016/j.envsoft.2017.11.016\">10.1016/j.envsoft.2017.11.016</a>.","van":"Bruce LC, Frassl MA, Arhonditsis GB, Gal G, Hamilton DP, Hanson PC, et al. A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network. Environmental modelling &#38; software with environment data news . 2018;102(4):274–91.","ufg":"<b>Bruce, Louise C. u. a.</b>: A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network, in: <i>Environmental modelling &#38; software with environment data news </i> 102 (2018), H. 4,  S. 274–291.","mla":"Bruce, Louise C., et al. “A Multi-Lake Comparative Analysis of the General Lake Model (GLM): Stress-Testing across a Global Observatory Network.” <i>Environmental Modelling &#38; Software with Environment Data News </i>, vol. 102, no. 4, 2018, pp. 274–91, <a href=\"https://doi.org/10.1016/j.envsoft.2017.11.016\">https://doi.org/10.1016/j.envsoft.2017.11.016</a>.","bjps":"<b>Bruce LC <i>et al.</i></b> (2018) A Multi-Lake Comparative Analysis of the General Lake Model (GLM): Stress-Testing across a Global Observatory Network. <i>Environmental modelling &#38; software with environment data news </i> <b>102</b>, 274–291.","havard":"L.C. Bruce, M.A. Frassl, G.B. Arhonditsis, G. Gal, D.P. Hamilton, P.C. Hanson, A.L. Hetherington, J.M. Melack, J.S. Read, K. Rinke, A. Rigosi, D. Trolle, L. Winslow, R. Adrian, A.I. Ayala, S.A. Bocaniov, B. Boehrer, C. Boon, J.D. Brookes, T. Bueche, B.D. Busch, D. Copetti, A. Cortés, E. de Eyto, J.A. Elliott, N. Gallina, Y. Gilboa, N. Guyennon, L. Huang, O. Kerimoglu, J.D. Lenters, S. MacIntyre, V. Makler-Pick, C.G. McBride, S. Moreira, D. Özkundakci, M. Pilotti, F.J. Rueda, J.A. Rusak, N.R. Samal, M. Schmid, T. Shatwell, C. Snorthheim, F. Soulignac, G. Valerio, L. van der Linden, M. Vetter, B. Vinçon-Leite, J. Wang, M. Weber, C. Wickramaratne, R.I. Woolway, H. Yao, M.R. Hipsey, A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network, Environmental Modelling &#38; Software with Environment Data News . 102 (2018) 274–291.","apa":"Bruce, L. C., Frassl, M. A., Arhonditsis, G. B., Gal, G., Hamilton, D. P., Hanson, P. C., Hetherington, A. L., Melack, J. M., Read, J. S., Rinke, K., Rigosi, A., Trolle, D., Winslow, L., Adrian, R., Ayala, A. I., Bocaniov, S. A., Boehrer, B., Boon, C., Brookes, J. D., … Hipsey, M. R. (2018). A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network. <i>Environmental Modelling &#38; Software with Environment Data News </i>, <i>102</i>(4), 274–291. <a href=\"https://doi.org/10.1016/j.envsoft.2017.11.016\">https://doi.org/10.1016/j.envsoft.2017.11.016</a>","chicago":"Bruce, Louise C., Marieke A. Frassl, George B. Arhonditsis, Gideon Gal, David P. Hamilton, Paul C. Hanson, Amy L. Hetherington, et al. “A Multi-Lake Comparative Analysis of the General Lake Model (GLM): Stress-Testing across a Global Observatory Network.” <i>Environmental Modelling &#38; Software with Environment Data News </i> 102, no. 4 (2018): 274–91. <a href=\"https://doi.org/10.1016/j.envsoft.2017.11.016\">https://doi.org/10.1016/j.envsoft.2017.11.016</a>.","short":"L.C. Bruce, M.A. Frassl, G.B. Arhonditsis, G. Gal, D.P. Hamilton, P.C. Hanson, A.L. Hetherington, J.M. Melack, J.S. Read, K. Rinke, A. Rigosi, D. Trolle, L. Winslow, R. Adrian, A.I. Ayala, S.A. Bocaniov, B. Boehrer, C. Boon, J.D. Brookes, T. Bueche, B.D. Busch, D. Copetti, A. Cortés, E. de Eyto, J.A. Elliott, N. Gallina, Y. Gilboa, N. Guyennon, L. Huang, O. Kerimoglu, J.D. Lenters, S. MacIntyre, V. Makler-Pick, C.G. McBride, S. Moreira, D. Özkundakci, M. Pilotti, F.J. Rueda, J.A. Rusak, N.R. Samal, M. Schmid, T. Shatwell, C. Snorthheim, F. Soulignac, G. Valerio, L. van der Linden, M. Vetter, B. Vinçon-Leite, J. Wang, M. Weber, C. Wickramaratne, R.I. Woolway, H. Yao, M.R. Hipsey, Environmental Modelling &#38; Software with Environment Data News  102 (2018) 274–291.","chicago-de":"Bruce, Louise C., Marieke A. Frassl, George B. Arhonditsis, Gideon Gal, David P. Hamilton, Paul C. Hanson, Amy L. Hetherington, u. a. 2018. A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network. <i>Environmental modelling &#38; software with environment data news </i> 102, Nr. 4: 274–291. doi:<a href=\"https://doi.org/10.1016/j.envsoft.2017.11.016\">10.1016/j.envsoft.2017.11.016</a>, .","din1505-2-1":"<span style=\"font-variant:small-caps;\"><span style=\"font-variant:small-caps;\">Bruce, Louise C.</span> ; <span style=\"font-variant:small-caps;\">Frassl, Marieke A.</span> ; <span style=\"font-variant:small-caps;\">Arhonditsis, George B.</span> ; <span style=\"font-variant:small-caps;\">Gal, Gideon</span> ; <span style=\"font-variant:small-caps;\">Hamilton, David P.</span> ; <span style=\"font-variant:small-caps;\">Hanson, Paul C.</span> ; <span style=\"font-variant:small-caps;\">Hetherington, Amy L.</span> ; <span style=\"font-variant:small-caps;\">Melack, John M.</span> ; u. a.</span>: A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network. In: <i>Environmental modelling &#38; software with environment data news </i> Bd. 102. Oxford, Elsevier Science (2018), Nr. 4, S. 274–291"},"extern":"1","title":"A multi-lake comparative analysis of the General Lake Model (GLM): Stress-testing across a global observatory network"}]
