HAMSOM-Publications

From CSDMS
References HAMSOM

Publication(s)YearTypeCited
Sakshaug, E; 1997. Biomass and productivity distributions and their variability in the Barents Sea. ICES Journal of Marine Science, 54, 341–350. 10.1006/jmsc.1996.0170
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1997Model application 125
Meyer, E.M.I.; Pohlmann, T.; Weisse, R.; 2009. Hindcast simulation of the North Sea by HAMSOM for the period of 1948 till 2007 - temperature and heat content.. GKSS-Forschungszentrum Geesthacht GmbH..
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2009

Model application

3
Gurgel, Klaus-Werner; Dzvonkovskaya, Anna; Pohlmann, Thomas; Schlick, Thomas; Gill, Eric; 2011. Simulation and detection of tsunami signatures in ocean surface currents measured by HF radar. Ocean Dynamics, 61, 1495–1507. 10.1007/s10236-011-0420-9
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2011Model application 75
Pätsch, Johannes; Burchard, Hans; Dieterich, Christian; Gräwe, Ulf; Gröger, Matthias; Mathis, Moritz; Kapitza, Hartmut; Bersch, Manfred; Moll, Andreas; Pohlmann, Thomas; Su, Jian; Ho-Hagemann, Ha T.M.; Schulz, Achim; Elizalde, Alberto; Eden, Carsten; 2017. An evaluation of the North Sea circulation in global and regional models relevant for ecosystem simulations. Ocean Modelling, 116, 70–95. 10.1016/j.ocemod.2017.06.005
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2017Model application 43
O'Driscoll, Kieran; Mayer, Bernhard; Ilyina, Tatiana; Pohlmann, Thomas; 2013. Modelling the cycling of persistent organic pollutants (POPs) in the North Sea system: Fluxes, loading, seasonality, trends. Journal of Marine Systems, 111, 69–82. 10.1016/j.jmarsys.2012.09.011
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2013Model application 32
Mayer, B.; Stacke, T.; Stottmeister, I.; Pohlmann, T.; 2015. Sunda Shelf Seas: flushing rates and residence times. Ocean Science Discussions, 12, 863–895. 10.5194/osd-12-863-2015
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2015Model application 15
Hainbucher, Dagmar; Hao, Wei; Pohlmann, Thomas; Sündermann, Jürgen; Feng, Shizuo; 2004. Variability of the Bohai Sea circulation based on model calculations. Journal of Marine Systems, 44, 153–174. 10.1016/j.jmarsys.2003.09.008
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2004Model application 69
Große, Fabian; Greenwood, Naomi; Kreus, Markus; Lenhart, Hermann-Josef; Machoczek, Detlev; Pätsch, Johannes; Salt, Lesley; Thomas, Helmuth; 2016. Looking beyond stratification: a model-based analysis of the biological drivers of oxygen deficiency in the North Sea. Biogeosciences, 13, 2511–2535. 10.5194/bg-13-2511-2016
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2016Model application 34
Wei, Hao; Hainbucher, Dagmar; Pohlmann, Thomas; Feng, Shizuo; Suendermann, Juergen; 2004. Tidal-induced Lagrangian and Eulerian mean circulation in the Bohai Sea. Journal of Marine Systems, 44, 141–151. 10.1016/j.jmarsys.2003.09.007
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2004Model application 78
Mao, Xinyan; Jiang, Wensheng; Zhao, Peng; Gao, Huiwang; 2008. A 3-D numerical study of salinity variations in the Bohai Sea during the recent years. Continental Shelf Research, 28, 2689–2699. 10.1016/j.csr.2008.09.004
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2008Model application 49
Stips, Adolf; Bolding, Karsten; Pohlmann, Thomas; Burchard, Hans; 2004. Simulating the temporal and spatial dynamics of the North Sea using the new model GETM (general estuarine transport model). Ocean Dynamics, 54, 266–283. 10.1007/s10236-003-0077-0
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2004Model application 93
Fanjul, Enrique Alvarez; Gómez, Begoña Pérez; Sánchez-Arévalo, Ignacio Rodríguez; 1997. A description of the tides in the Eastern North Atlantic. Progress in Oceanography, 40, 217–244. 10.1016/S0079-6611(98)00003-2
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1997Model application 85
García Lafuente, J.; 2002. Subinertial variability in the flow through the Strait of Gibraltar. Journal of Geophysical Research, 107, 3168. 10.1029/2001JC001104
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2002Model application 70
Souto, C.; 2003. Modeling the residual circulation of a coastal embayment affected by wind-driven upwelling: Circulation of the Ría de Vigo (NW Spain). Journal of Geophysical Research, 108, 3340. 10.1029/2002JC001512
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2003Model application 75
Harms, I. H.; Karcher, M. J.; 1999. Modeling the seasonal variability of hydrography and circulation in the Kara Sea. Journal of Geophysical Research: Oceans, 104, 13431–13448. 10.1029/1999JC900048
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1999Model application 76
Panteleev, G.; Proshutinsky, A.; Kulakov, M.; Nechaev, D. A.; Maslowski, W.; 2007. Investigation of the summer Kara Sea circulation employing a variational data assimilation technique. Journal of Geophysical Research, 112, C04S15. 10.1029/2006JC003728
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2007Model application 40
Bryant, Andrew D.; Hainbucher, Dagmar; Heath, Michael; 1998. Basin‐scale advection and population persistence of Calanus finmarchicus. Fisheries Oceanography, 7, 235–244. 10.1046/j.1365-2419.1998.00074.x
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1998Model application 59
, ; 1998. Bio‐physical modelling of the early life stages of haddock, Melanogrammus aeglefinus , in the North Sea. Fisheries Oceanography, 7, 110–125. 10.1046/j.1365-2419.1998.00061.x
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1998Model application 118
O’Driscoll, Kieran; Ilyina, Tatjana; Pohlmann, Thomas; Mayer, Bernhard; Damm, Peter; 2011. Modelling the fate of persistent organic pollutants (POPs) in the North Sea system. Procedia Environmental Sciences, 6, 169–179. 10.1016/j.proenv.2011.05.018
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2011Model application 6
Simionato, C.G.; Meccia, V.L.; Dragani, W.C.; Nuñez, M.N.; 2006. On the use of the NCEP/NCAR surface winds for modeling barotropic circulation in the Río de la Plata Estuary. Estuarine, Coastal and Shelf Science, 70, 195–206. 10.1016/j.ecss.2006.05.047
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2006Model application 42
Mathis, M.; Mayer, B.; Pohlmann, T.; 2013. An uncoupled dynamical downscaling for the North Sea: Method and evaluation. Ocean Modelling, 72, 153–166. 10.1016/j.ocemod.2013.09.004
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2013Model application 41
Speirs, Douglas C.; Gurney, William S.C.; Heath, Michael R.; Wood, Simon N.; 2005. Modelling the basin-scale demography of Calanus finmarchicus in the north-east Atlantic. Fisheries Oceanography, 14, 333–358. 10.1111/j.1365-2419.2005.00339.x
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2005Model application 56
Meccia, V.L.; Simionato, C.G.; Fiore, M.E.; D'Onofrio, E.E.; Dragani, W.C.; 2009. Sea surface height variability in the Rio de la Plata estuary from synoptic to inter-annual scales: Results of numerical simulations. Estuarine, Coastal and Shelf Science, 85, 327–343. 10.1016/j.ecss.2009.08.024
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2009Model application 34
Putri, Mutiara Rachmat; Setiawan, Agus; Safitri, Mediana; 2015. Variation of ocean pH in the Indonesia waters. . Volume .
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2015Model application 7
Große, Fabian; Kreus, Markus; Lenhart, Hermann-Josef; Pätsch, Johannes; Pohlmann, Thomas; 2017. A Novel Modeling Approach to Quantify the Influence of Nitrogen Inputs on the Oxygen Dynamics of the North Sea. Frontiers in Marine Science, 4, 383. 10.3389/fmars.2017.00383
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2017Model application 21
Kauker, F; Langenberg, H; 2000. Two models for the climate change related development of sea levels in the North Sea-a comparison. Climate Research, 15, 61–67. 10.3354/cr015061
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2000Model application 40
Subramanian, V.; Putri, Mutiara R.; Pohlmann, Thomas; 2012. Hydrodynamic and Transport Model of the Siak Estuary. In: (eds.)Coastal Environments: Focus on Asian Regions.. 155–172.
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2012Model application 4
Putri, Mutiara R.; Setiawan, Agus; Sari, Titi; Mayer, B.; Pohlmann, T.; 2018. TRAJECTORY MODEL FOR IDENTIFICATION OF OIL SPILL AROUND THE COAST OF PARI ISLAND, SERIBU ISLANDS, NORTH JAKARTA. Jurnal Ilmu dan Teknologi Kelautan Tropis, 9, 657–664. 10.29244/jitkt.v9i2.19299
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2018Model application 6
Bartsch, J.; Coombs, S. H.; 2004. An individual-based model of the early life history of mackerel (Scomber scombrus) in the eastern North Atlantic, simulating transport, growth and mortality. Fisheries Oceanography, 13, 365–379. 10.1111/j.1365-2419.2004.00305.x
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2004Model application 62
Dzvonkovskaya, Anna; Gurgel, Klaus-Werner; Pohlmann, Thomas; Schlick, Thomas; 2009. Simulation of tsunami signatures in ocean surface current maps measured by HF radar. . Volume .
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2009Model application 9
Fanjul, Enrique Alvarez; Gomez, Begoña Perez; Carretero, Juan Carlos; Arevalo, Ignacio Rodríguez Sanchez; 1998. Tide and surge dynamics along the Iberian Atlantic coast. Oceanologica Acta, 21, 131–143. 10.1016/S0399-1784(98)80003-0
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1998Model application 22
Logemann, K.; Backhaus, J.O.; Harms, I.H.; 2004. SNAC: a statistical emulator of the north-east Atlantic circulation. Ocean Modelling, 7, 97–110. 10.1016/S1463-5003(03)00039-8
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2004Model application 20
Harms, I; 2000. Modelling the Northeast Atlantic circulation: implications for the spring invasion of shelf regions by Calanus finmarchicus. ICES Journal of Marine Science, 57, 1694–1707. 10.1006/jmsc.2000.0981
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2000Model application 38
Harms, I; 1997. Water mass transformation in the Barents Sea — application of the Hamburg Shelf Ocean Model (HamSOM). ICES Journal of Marine Science, 54, 351–365. 10.1006/jmsc.1997.0226
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1997Model application 34
, ; 2011. Modeling Ocean Tides and Their Energetics in the North Patagonia Gulfs of Argentina. Journal of Coastal Research, 27, 87. 10.2112/JCOASTRES-D-09-00055.1
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2011Model application 16
Piedracoba, S.; Souto, C.; Gilcoto, M.; Pardo, P.C.; 2005. Hydrography and dynamics of the Ría de Ribadeo (NW Spain), a wave driven estuary. Estuarine, Coastal and Shelf Science, 65, 726–738. 10.1016/j.ecss.2005.07.013
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2005Model application 26
Bartsch, J; Coombs, S.H; 2001. An individual-based growth and transport model of the early life-history stages of mackerel (Scomber scombrus) in the eastern North Atlantic. Ecological Modelling, 138, 127–141. 10.1016/S0304-3800(00)00398-7
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2001Model application 28
Cai, Shuqun; 2001. Application of Renormalization Group Model to the Numerical Simulation of Tidal Current in the Qiongzhou Channel. Estuarine, Coastal and Shelf Science, 53, 141–150. 10.1006/ecss.2000.0798
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2001Model application 5
Harms, Ingo H; Povinec, Pavel P; 1999. The outflow of radionuclides from Novaya Zemlya bays — modeling and monitoring strategies. Science of The Total Environment, 237, 193–201. 10.1016/S0048-9697(99)00135-7
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1999Model application 17
Hein, H.; Mai, S.; Barjenbruch, U.; 2011. Interaction of Wind-Waves and Currents in the Ems-Dollard Estuary. The International Journal of Ocean and Climate Systems, 2, 249–258. 10.1260/1759-3131.2.4.249
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2011Model application 2
Mao, Xinyan; Jiang, Wensheng; 2009. Comparisons of several evaporation/precipitation datasets for the Bohai Sea based on salinity simulation. Journal of Ocean University of China, 8, 209–214. 10.1007/s11802-009-0209-3
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2009Model application 3
Kern, S.; Harms, I.; 2002. Spatial resolution improvement of sea ice maps prescribed to Regional Arctic Shelf Ocean Models by using Special Sensor Microwave/Imager 85 GHz data. . Volume 4.
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2002Model application 0
Daewel, Ute; Yakushev, Evgeniy V.; Schrum, Corinna; Nizzetto, Luca; Mikheeva, Elena; 2020. Understanding the Role of Organic Matter Cycling for the Spatio-Temporal Structure of PCBs in the North Sea. Water, 12, 817. 10.3390/w12030817
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2020Model application 2
Kemili, Putri; Putri, Mutiara R.; 2014. Estimation of primary productivity in Banda Sea using the vertical distribution model. . Volume .
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2014Model application 3
Anwar, I P; Putri, M R; Setiawan, A; 2018. Ocean numerical model experiment on estimating the variation of volume and heat transport in Karimata strait. IOP Conference Series: Earth and Environmental Science, 162, 012001. 10.1088/1755-1315/162/1/012001
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2018Model application 3
Anwar, Iwan P.; Putri, Mutiara R.; Setiawan, Agus; 2018. VARIATION OF VOLUME TRANSPORT AND VARIABILITY OF CURRENT IN KARIMATA AND GASPAR STRAITS DURING 2010-2014 BASED ON NUMERICAL MODELING. Jurnal Ilmu dan Teknologi Kelautan Tropis, 9, 771–780. 10.29244/jitkt.v9i2.19309
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2018Model application 2
M, Muhammad; Rizal, Syamsul; Affan, Junaidi M.; 2012. Pengaruh ENSO (El Niño and Southern Oscillation) terhadap transpor massa air laut di Selat Malaka. DEPIK Jurnal Ilmu-Ilmu Perairan, Pesisir dan Perikanan, 1, . 10.13170/depik.1.1.28
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2012Model application 1
Lizalidiawati, Lizalidiawati; 2016. IDENTIFIKASI WILAYAH UPWELLING BERDASARKAN VORTISITAS dan DIVERGENSI di PERAIRAN SELATAN JAWA HINGGA NUSA TENGGARA BARAT. Spektra: Jurnal Fisika dan Aplikasinya, 1, 69–76. 10.21009/SPEKTRA.011.11
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2016Model application 0
Zhang, Zheen; Pohlmann, Thomas; Chen, Xueen; 2020. Correlation between subsurface salinity anomalies in the Bay of Bengal and the Indian Ocean Dipole and governing mechanisms. .
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2020Model application 1
Li, Wenguo; Mayer, Bernhard; Pohlmann, Thomas; 2021. The influence of baroclinity on tidal ranges in the North Sea. Estuarine, Coastal and Shelf Science, 250, 107126. 10.1016/j.ecss.2020.107126
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2021Model application 0
Jia, Bin; Chen, Xue’en; 2021. Application of an ice-ocean coupled model to Bohai Sea ice simulation. Journal of Oceanology and Limnology, 39, 1–13. 10.1007/s00343-020-9168-8
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2021

Model application

4
Lizalidiawati, Lizalidiawati; 2016. IDENTIFIKASI WILAYAH UPWELLING BERDASARKAN VORTISITAS DAN DIVERGENSI DI PERAIRAN SELATAN JAWA HINGGA NUSA TENGGARA BARAT. Spektra: Jurnal Fisika dan Aplikasinya, 1, 69–76. 10.21009/SPEKTRA.011.11
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2016Model application 0
Kisnarti, Engki Andri; Ningsih, Nining Sari; Putri, Mutiara R; Hendriati, Nani; 2021. Current Dynamics and Water Column Stability in Indonesian Waters Based on Hydrodynamics Model. Indonesian Journal of Geography, 53, . 10.22146/ijg.58091
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2021Model application 0
Anwar, I P; Putri, M R; Tarya, A; Mandang, I; 2021. Variation of water mass exchange on tidal scale in Balikpapan Bay. IOP Conference Series: Earth and Environmental Science, 925, 012013. 10.1088/1755-1315/925/1/012013
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2021

Model application

0
Zhang, Zheen; Pohlmann, Thomas; Chen, Xueen; 2020. Correlation between subsurface salinity anomalies in the Bay of Bengal and the Indian Ocean Dipole and governing mechanisms. .
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2020

Model application

1
Li, Wenguo; Mayer, Bernhard; Pohlmann, Thomas; 2020. The impact of baroclinity on tidal ranges in the North Sea. .
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2020

Model application

0
Kisnarti, Engki Andri; Ningsih, Nining Sari; R. Putri, Mutiara; Hendiarti, Nani; 2021. The Movement of Plastic Marine Debris in Indonesian Seas using A Trajectory Model. Jurnal Segara, 17, 145. 10.15578/segara.v17i3.10283
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2021

Model application

0
Winardi, Edwin Apriyanta; Putri, Mutiara Rachmat; Cordova, Muhammad Reza; Setiawan, Agus; 2021. Modeling of Plastic Debris Particle Trajectory During Pre and Post Reclamation in Jakarta Bay. Jurnal Segara, 17, 173. 10.15578/segara.v17i3.10287
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2021

Model application

0
Basit, Abdul; Mulyadi, Hanung Agus; Pitriana, Pipit; Putri, Mutiara Rachmat; Mayer, Bernhard; Pohlmann, Thomas; 2022. Hydrodynamic Conditions of the Banda and Northern Arafura Seas in the Northwest Monsoon (Februay2014). Marine Research in Indonesia, 46, None. 10.14203/mri.v46i1.599
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2022

Model application

0
Basit, Abdul; Mayer, Bernhard; Pohlmann, Thomas; 2022. The Effects of the Indonesian Throughflow, River, and Tide on Physical and Hydrodynamic Conditions During the Wind- Driven Upwelling Period North of the Aru Islands. Pertanika Journal of Science and Technology, 30, 1689–1716. 10.47836/pjst.30.2.45
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2022

Model application

0
Nurfitri, S; Basit, A; Putri, M R; Pätsch, J; Pohlmann, T; 2020. A Lagrangian study of upwelled waters in the Northern Arafura Sea. IOP Conference Series: Earth and Environmental Science, 618, 012022. 10.1088/1755-1315/618/1/012022
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2020

Model application

1
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Nr. of publications: 61
Total citations: 1696
h-index: 26
m-quotient: 0.96

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