{"id":8316,"date":"2018-02-07T15:15:25","date_gmt":"2018-02-07T14:15:25","guid":{"rendered":"http:\/\/igcas.antstudio.eu\/contact\/staff\/prokop-zavada\/"},"modified":"2026-01-09T10:38:39","modified_gmt":"2026-01-09T09:38:39","slug":"prokop-zavada","status":"publish","type":"page","link":"https:\/\/www.ig.cas.cz\/en\/contact\/staff\/prokop-zavada\/","title":{"rendered":"Prokop Z\u00e1vada"},"content":{"rendered":"<p>[et_pb_section fb_built=&#8221;1&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;0px|0px|0px|0px&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_row column_structure=&#8221;2_3,1_3&#8243; _builder_version=&#8221;4.16&#8243; background_size=&#8221;initial&#8221; background_position=&#8221;top_left&#8221; background_repeat=&#8221;repeat&#8221; custom_padding=&#8221;19px|0px|0px|0px&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;2_3&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;|||&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_text _builder_version=&#8221;4.27.4&#8243; hover_enabled=&#8221;0&#8243; global_colors_info=&#8221;{}&#8221; sticky_enabled=&#8221;0&#8243;]<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Mgr. Prokop Z\u00e1vada, PhD.<\/strong>\u00a0<\/p>\n<p>Prokop combines analogue modeling with fieldwork to tackle various geodynamic systems. He is leading research in the Tectonic modeling laboratory and creates new analogue modeling setups to study deformation of rocks at different scales and conditions. His work now focuses on processes related with melt-magma migration in the Earth\u2019s crust, rheology of magma and partially molten rocks, magma mingling processes and dynamics of lava extrusion. His team also constructs salt tectonics models addressing the evolution of salt diapirs in compressional setting (Iran, Pyrenees or High Atlas).<\/p>\n<p>Team:<a href=\"https:\/\/www.ig.cas.cz\/en\/research\/teams\/tectonic-modelling\/\">Tectonic Modelling<\/a><\/p>\n<p><a href=\"https:\/\/www.ig.cas.cz\/en\/observatories\/tect-mod-lab\/\" target=\"_blank\" rel=\"noopener\">Tectonic modelling laboratory<\/a><\/p>\n<p>&nbsp;<\/p>\n<p>[\/et_pb_text][\/et_pb_column][et_pb_column type=&#8221;1_3&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;|||&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_image src=&#8221;https:\/\/www.ig.cas.cz\/wp-content\/uploads\/2018\/03\/img_0708_res.jpg&#8221; align=&#8221;center&#8221; align_tablet=&#8221;center&#8221; align_phone=&#8221;&#8221; align_last_edited=&#8221;on|desktop&#8221; _builder_version=&#8221;4.16&#8243; global_colors_info=&#8221;{}&#8221;][\/et_pb_image][et_pb_text _builder_version=&#8221;4.27.4&#8243; global_colors_info=&#8221;{}&#8221;]<\/p>\n<h3 style=\"text-align: center;\"><strong>Mgr. Prokop Z\u00e1vada, Ph.D.<\/strong><\/h3>\n<p style=\"text-align: center;\">researcher<br \/><a href=\"mailto:zavada@ig.cas.cz\">zavada@ig.cas.cz<\/a><br \/>+420&nbsp;267&nbsp;103&nbsp;313<br \/><a href=\"http:\/\/www.researcherid.com\/rid\/H-6417-2014\">ResearcherID<\/a><a href=\"https:\/\/orcid.org\/0000-0003-4114-883X\" target=\"orcid.widget\" rel=\"noopener noreferrer\"><br \/><\/a><a href=\"https:\/\/orcid.org\/0000-0003-1702-3770\"><img decoding=\"async\" src=\"https:\/\/orcid.org\/sites\/default\/files\/images\/orcid_16x16.png\" alt=\"ORCID iD icon\" \/>ORCID<\/a><\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][et_pb_row column_structure=&#8221;1_2,1_2&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;2px|0px|26.1562px|0px&#8221; global_colors_info=&#8221;{}&#8221;][et_pb_column type=&#8221;1_2&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;|||&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_text _builder_version=&#8221;4.27.4&#8243; global_colors_info=&#8221;{}&#8221;]<\/p>\n<h3><strong>Selected publications<\/strong><\/h3>\n<ul>\n<li>Zebari, M., Friedrich, A. M., Rieger, S. M., Plattner, C., Bruthans, J.,<strong>\u00a0Z\u00e1vada, P.<\/strong>, Parizzi, A. (2025). Surface Deformation and Salt Budget of an Active Salt Fountain, Finu in the Zagros Mountains, Iran, Using Persistent Scatterer Interferometry. Lithosphere, 2025(3). doi: 10.2113\/2025\/lithosphere_2024_216<br \/>Schmitz, J., Z\u00e1vada, P., Urai, J. L., &amp; Schulmann, K. (2025). Deformation and recrystallization mechanisms in glacier salt: Evolution of microstructures inferred from EBSD and microstructural analyses (Kuh-e-Namak diapir (Dashti, Iran)). JOURNAL OF STRUCTURAL GEOLOGY, 198.\u00a0doi: 10.1016\/j.jsg.2025.105441<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, Stanek, M., Machek, M., Adineh, S., G\u00e9raud, Y., Bruthans, J., . . . Zare, M. (2025). Porosity and pore and throat size distributions in carbonate-rich salt caprock of halite diapirs: effect of deformation and geochemical processes. JOURNAL OF STRUCTURAL GEOLOGY, 199.\u00a0doi: 10.1016\/j.jsg.2025.105483<\/li>\n<li>Adineh, S.,\u00a0<strong>Z\u00e1vada, P.<\/strong>, Bruthans, J., &amp; Zare, M. (2025). Sedimentary characteristics of Ediacaran-Cambrian drastic global climate changes in the Proto-Tethys\/Panthalassic Ocean: Insights from the Hormuz Complex, southern Iran. PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY, 660.\u00a0doi: 10.1016\/j.palaeo.2024.112670<\/li>\n<li>Adineh, S.,\u00a0<strong>Z\u00e1vada, P.<\/strong>, Mukherjee, S., Bruthans, J., &amp; Zare, M. (2025). Multistage dolomitization and fluid evolution of the late Ediacaran cap carbonates, Hormuz complex, Paskhand salt diapir, southern Iran: Insights into the dolomite problem. MARINE AND PETROLEUM GEOLOGY, 173.\u00a0doi: 10.1016\/j.marpetgeo.2024.107228<\/li>\n<li>Bruthans, J., Filippi, M., Slav\u00edk, M.,\u00a0<strong>Z\u00e1vada, P.<\/strong>, &amp; Zare, M. (2024). Rapid evolution of salt glacier caves on a\u00a0mountain diapir in a\u00a0semiarid climate. GEOMORPHOLOGY, 448.\u00a0doi: 10.1016\/j.geomorph.2024.109058<\/li>\n<li>Adineh, S.,\u00a0<strong>Z\u00e1vada, P.<\/strong>, Bruthans, J., Cofrade, G., &amp; Zare, M. (2024). Growth of a\u00a0salt diapir in an anticline- A\u00a0record from the Cenozoic halokinetic sequences in the Zagros Fold and Thrust Belt, Iran. JOURNAL OF STRUCTURAL GEOLOGY, 178.\u00a0doi: 10.1016\/j.jsg.2023.105004<\/li>\n<li>Cofrade, G., <strong>Z\u00e1vada, P.<\/strong>, Kr\u00fdza, O., Cantarero, I., Gratac\u00f3s, \u00d2., Ferrer, O., Adineh, S., Ramirez-Perez, P., Eduard, R., Trav\u00e9, A., 2023. The kinematics of a\u00a0salt sheet recorded in an array of distorted intrasalt stringers (Les Avellanes Diapir \u2013 South-Central Pyrenees), Journal of Structural Geology, 2023,104963.\u00a0https:\/\/doi.org\/10.1016\/j.jsg.2023.104963<\/li>\n<li>Martin, S. A., <strong>Z\u00e1vada, P.<\/strong>, and Kavanagh, J. L., 2023, Plaster and magnets: Modelling magnetic fabric development in magma intrusions using scaled analogue experiments: Tectonophysics, v. 855.\u00a0doi: 10.1016\/j.tecto.2023.229820\u00a0 (IF 2.9; Q2)<\/li>\n<li>Kr\u00fdza, O., <strong>Z\u00e1vada, P.<\/strong>, Shu, T., and Semer\u00e1d, J., 2022, Modes and geometry of crustal-scale detachment folding in hot orogens-Insights from physical modeling: Frontiers in Earth Science, v. 10. (IF 2.9; Q2)<\/li>\n<li>Warsitzka, M., <strong>Z\u00e1vada, P.<\/strong>, Jahne-Klingberg, F., and Krzywiec, P., 2021, Contribution of gravity gliding in salt-bearing rift basins \u2013 a\u00a0new experimental setup for simulating salt tectonics under the influence of sub-salt extension and tilting: Solid Earth, v. 12, no. 8, p.\u00a01987-2020.\u00a0doi: 10.5194\/se-12-1987-2021 (IF 1.02; Q2)<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, Bruthans, J., Adineh, S., Warsitzka, M., and Zare, M., 2021, Composition and deformation patterns of the caprock on salt extrusions in southern Iran-Field study on the Karmostaj and Siah Taq diapirs: Journal of Structural Geology, v. 151.\u00a0doi: 10.1016\/j.jsg.2021.104422 (IF 3.1; Q2)<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, \u0160t\u00edpsk\u00e1, P., Hasalov\u00e1, P., Racek, M., Jerabek, P., Schulmann, K., Kylander-Clark, A., and Holder, R., 2021, Monazite geochronology in melt-percolated UHP meta-granitoids: An example from the Erzgebirge continental subduction wedge, Bohemian Massif: Chemical Geology, v. 559.\u00a0doi: 10.1016\/j.chemgeo.2020.119919 (IF 3.9; Q1)<\/li>\n<li>Aguilar, C., \u0160t\u00edpsk\u00e1, P., Chopin, F., Schulmann, K., Pitra, P., <strong>Z\u00e1vada, P.<\/strong>, Hasalova, P., and Martelat, J. E., 2020, Syn-deformational melt percolation through a\u00a0high-pressure orthogneiss and the exhumation of a\u00a0subducted continental wedge (Orlica-\u015anie\u017cnik Dome, NE Bohemian Massif): International Journal of Earth Sciences, v. 109, no. 4, p.\u00a01213-1246.\u00a0doi: 10.1007\/s00531-020-01838-4 (IF 2.3; Q3)<\/li>\n<li>Nahodilov\u00e1, R., Hasalov\u00e1, P., \u0160t\u00edpsk\u00e1, P., Schulmann, K., <strong>Z\u00e1vada, P.<\/strong>, M\u00edkov\u00e1, J., Kylander-Clark, A., and Maierov\u00e1, P., 2020, Exhumation of subducted continental crust along the arc region: Gondwana Research, v. 80, p.\u00a0157-187.\u00a0doi: 10.1016\/j.gr.2019.10.011 (IF 6.1; Q1)<\/li>\n<li>\u0160t\u00edpsk\u00e1, P., <strong>Z\u00e1vada, P.<\/strong>, Collett, S., Kylander-Clark, A. R. C., Hacker, B. R., Tabaud, A. S., and Racek, M., 2020, Eocene migmatite formation and diachronous burial revealed by petrochronology in NW Himalaya, Zanskar: Journal of Metamorphic Geology, v. 38, no. 6, p.\u00a0655-691.\u00a0doi: 10.1111\/jmg.12534 (IF 3.4; Q1)<\/li>\n<li>Weinberg, R. F., Wolfram, L. C., Nebel, O., Hasalov\u00e1, P., <strong>Z\u00e1vada, P.<\/strong>, Kylander-Clark, A. R. C., and Becchio, R., 2020, Decoupled U-Pb date and chemical zonation of monazite in migmatites: The case for disturbance of isotopic systematics by coupled dissolution-reprecipitation: Geochimica et Cosmochimica Acta, v. 269, p.\u00a0398-412.\u00a0doi: 10.1016\/j.gca.2019.10.024 (IF 5; Q1)<\/li>\n<li>Kr\u00fdza, O., <strong>Z\u00e1vada, P.<\/strong>, and Lexa, O., 2019, Advanced strain and mass transfer analysis in crustal-scale oroclinal buckling and detachment folding analogue models: Tectonophysics, v. 764, p.\u00a088-109.\u00a0doi: 10.1016\/j.tecto.2019.05.001 (IF 2.9; Q2)<\/li>\n<li>Machek, M., <strong>Z\u00e1vada, P.<\/strong>, Roxerov\u00e1, Z., Petrovsk\u00fd, E., \u0160pi\u010d\u00e1k, A., and Kusbach, V., 2019, Crystal Mush Flow in Small Concentrically Expanded Pluton (Castle Crags Pluton; Klamath Mountains, CA, USA): Geochemistry, Geophysics, Geosystems, v. 20, no. 4, p.\u00a01954-1974.\u00a0doi: 10.3389\/feart.2022.965497(IF 3.5; Q2)<\/li>\n<li>\u0160t\u00edpsk\u00e1, P., Hasalov\u00e1, P., Powell, R., <strong>Z\u00e1vada, P.<\/strong>, Schulmann, K., Racek, M., Aguilar, C., and Chopin, F., 2019, The Effect of Melt Infiltration on Metagranitic Rocks: The \u015anie\u017cnik Dome, Bohemian Massif: Journal of Petrology, v. 60, no. 3, p.\u00a0591-618. . doi: 10.1093\/petrology\/egz007 (IF 3.9; Q1)<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, Schulmann, K., Racek, M., Hasalov\u00e1, P., Je\u0159\u00e1bek, P., Weinberg, R. F., \u0160t\u00edpsk\u00e1, P., and Roberts, A., 2018, Role of strain localization and melt flow on exhumation of deeply subducted continental crust: Lithosphere, v. 10, no. 2, p.\u00a0217-238. . doi: 10.1130\/L666.1 (IF 2.400; Q2)<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, Schulmann, K., Racek, M., Hasalov\u00e1, P., Je\u0159\u00e1bek, P., Weinberg, R.F., \u0160t\u00edpsk\u00e1, P., and Roberts, A., 2018, Role of strain localization and melt flow on exhumation of deeply subducted continental crust: <em>Lithosphere<\/em>, doi: 10.1130\/l666.1<\/li>\n<li>Lehmann, J., Schulmann, K., Lexa, O., <strong>Z\u00e1vada, P.<\/strong>, \u0160t\u00edpsk\u00e1, P., Hasalov\u00e1, P., Belyanin, G., and Corsini, M., 2017, Detachment folding of partially molten crust in accretionary orogens: A\u00a0new magma-enhanced vertical mass and heat transfer mechanism: <em>Lithosphere<\/em>, v. 9, no. 6, p.\u00a0889\u2013909, doi: 10.1130\/L670.1<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, Calassou, T., Schulmann, K., Hrouda, F., \u0160t\u00edpsk\u00e1, P., Hasalov\u00e1, P., M\u00edkov\u00e1, J., Magna, T., and Mixa, P., 2017, Magnetic fabric transposition in folded granite sills in variscan orogenic wedge: <em>Journal of Structural Geology<\/em>, v. 94, p.\u00a0166\u2013183, doi: 10.1016\/j.jsg.2016.11.007<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, D\u011bde\u010dek, P., Lexa, J., and Keller, G., 2015, Devils Tower (Wyoming, USA): A\u00a0lava coul\u00e9e emplaced into a\u00a0maar-diatreme volcano?: <em>Geosphere<\/em>, v. 11, no. 2, p.\u00a0354\u2013375, doi: 10.1130\/GES01166.1<\/li>\n<li><strong>Z\u00e1vada, P.<\/strong>, Desbois, G., Urai, J., Schulmann, K., Rahmati, M., Lexa, O., and Wollenberg, U., 2015, Impact of solid second phases on deformation mechanisms of naturally deformed salt rocks (Kuh-e-Namak, Dashti, Iran) and rheological stratification of the Hormuz salt Formation: <em>Journal of Structural Geology<\/em>, v. 74, p.\u00a0117\u2013144, doi: 10.1016\/j.jsg.2015.02.009<\/li>\n<\/ul>\n<p>[\/et_pb_text][\/et_pb_column][et_pb_column type=&#8221;1_2&#8243; _builder_version=&#8221;4.16&#8243; custom_padding=&#8221;|||&#8221; global_colors_info=&#8221;{}&#8221; custom_padding__hover=&#8221;|||&#8221;][et_pb_text _builder_version=&#8221;4.16&#8243; global_colors_info=&#8221;{}&#8221;]<\/p>\n<h3><strong>CV<\/strong><\/h3>\n<ul>\n<li>Recent position\n<ul>\n<li>Research fellow<\/li>\n<\/ul>\n<\/li>\n<li>Education\n<ul>\n<li>Ph.D. Structural Geology, Charles University in Prague (2003\u20132007), Ph.D. thesis title:\u00a0\u201cMechanisms of flow and fabric development in rocks with low melt content\u201d<\/li>\n<li>Msc. Structural Geology, Charles University in Prague (1998\u20132003), Msc. thesis title:\u00a0\u201cQuartz and Feldspar rheology contrasts under natural thermal and strain gradients: a&nbsp;comparative study of deformation and microstructures\u201d<\/li>\n<\/ul>\n<\/li>\n<li>Awards\n<ul>\n<li>O. Wichterle prize for excellent young researchers of the Czech Academy of Sciences (2014)<\/li>\n<li>Radek Melka award from the CETeG committee for best scientific paper of young scientists (1st author) (2012)<\/li>\n<li>Radek Melka award from the CETeG committee for best scientific paper of young scientists (1st author) (2008)<\/li>\n<li>Radek Melka award from the CETeG committee for best scientific paper of young scientists (2nd author) (2007)<\/li>\n<li>Best poster presentation, Kl\u00e1\u0161ter Tepl\u00e1, Czech Republic (2007)<\/li>\n<li>Best student oral presentation, CETeG, Poland (2006)<\/li>\n<li>Best student oral presentation, TSG conference, Durham, Great Britain (2004)<\/li>\n<li>Best poster presentation, CETeG conference, Slovakia (2004)<\/li>\n<\/ul>\n<\/li>\n<li>Professional experience\n<ul>\n<li>2012-2013 (3 months): Deutsche Akademischer Austausch Dienst (DAAD), Lehr- und Forschungsgebiet f\u00fcr Geologie &#8211; Endogene Dynamik, Aachen, Germany<\/li>\n<li>2009 (6 months): DAAD, Lehr- und Forschungsgebiet f\u00fcr Geologie &#8211; Endogene Dynamik, Aachen, Germany<\/li>\n<li>2006 (3 months): Scholarship funded by the french government, Universit\u00e9 Louis Pasteur (EOST), Strasbourg, France<\/li>\n<li>2005 (4 months): Erasmus scholarship, Hans Ramberg Tectonic Laboratory (HRTL), Uppsala, Sweden<\/li>\n<\/ul>\n<\/li>\n<\/ul>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section]<\/p>\n","protected":false},"excerpt":{"rendered":"<p>&nbsp; Mgr. Prokop Z\u00e1vada, PhD.\u00a0 Prokop combines analogue modeling with fieldwork to tackle various geodynamic systems. He is leading research in the Tectonic modeling laboratory and creates new analogue modeling setups to study deformation of rocks at different scales and conditions. His work now focuses on processes related with melt-magma migration in the Earth\u2019s crust, [&hellip;]<\/p>\n","protected":false},"author":5,"featured_media":12002,"parent":416,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_et_pb_use_builder":"on","_et_pb_old_content":"","_et_gb_content_width":"","footnotes":""},"categories":[],"tags":[127],"class_list":["post-8316","page","type-page","status-publish","has-post-thumbnail","hentry","tag-people-en"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v25.9 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Prokop Z\u00e1vada - Geofyzik\u00e1ln\u00ed \u00fastav Akademie v\u011bd \u010cR, v.v.i.<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.ig.cas.cz\/en\/contact\/staff\/prokop-zavada\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Prokop Z\u00e1vada - Geofyzik\u00e1ln\u00ed \u00fastav Akademie v\u011bd \u010cR, v.v.i.\" \/>\n<meta property=\"og:description\" content=\"&nbsp; Mgr. Prokop Z\u00e1vada, PhD.\u00a0 Prokop combines analogue modeling with fieldwork to tackle various geodynamic systems. He is leading research in the Tectonic modeling laboratory and creates new analogue modeling setups to study deformation of rocks at different scales and conditions. 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