{"id":421,"date":"2019-08-27T15:30:32","date_gmt":"2019-08-27T13:30:32","guid":{"rendered":"https:\/\/oktatok.reak.bme.hu\/babcsany\/?page_id=421"},"modified":"2022-06-28T14:25:25","modified_gmt":"2022-06-28T12:25:25","slug":"kutatas","status":"publish","type":"page","link":"https:\/\/oktatok.reak.bme.hu\/babcsany\/kutatas\/","title":{"rendered":"Kutat\u00e1s"},"content":{"rendered":"<h3 class=\"bodytext\">A neutron-transzportegyenlet SP<sub>3<\/sub> k\u00f6zel\u00edt\u00e9s\u0171, v\u00e9geselemes megold\u00e1s\u00e1n alapul\u00f3 neutronfizikai sz\u00e1m\u00edt\u00e1si rendszer fejleszt\u00e9se<\/h3>\n<p class=\"bodytext\">A Paksi Atomer\u0151m\u0171ben jelenleg alkalmazott reaktorfizikai sz\u00e1m\u00edt\u00e1si rendszer neutronfizikai h\u00e1tter\u00e9t a HELIOS k\u00e9tdimenzi\u00f3s transzportk\u00f3d biztos\u00edtja. A HELIOS-sz\u00e1m\u00edt\u00e1sokkal k\u00e9t energiacsoportra meghat\u00e1rozott hat\u00e1skeresztmetszeteket a C\u2011PORCA program h\u00e1romdimenzi\u00f3s diff\u00fazi\u00f3s sz\u00e1m\u00edt\u00e1sokban nod\u00e1lis felbont\u00e1sban haszn\u00e1lja fel. Ez az elj\u00e1r\u00e1s regul\u00e1ris \u00fczemanyagr\u00e1csok sz\u00e1m\u00edt\u00e1sakor j\u00f3 eredm\u00e9nyt ad, de irregularit\u00e1sok kezel\u00e9s\u00e9re korl\u00e1tozottan alkalmas. A k\u00e9tcsoportos, nod\u00e1lis homogeniz\u00e1lt hat\u00e1skeresztmetszeteket haszn\u00e1l\u00f3 modell a szab\u00e1lyz\u00f3kazett\u00e1k, valamint z\u00f3nahat\u00e1rok (reflektor r\u00e9gi\u00f3k) geometriai \u00e9s neutronfizikai \u00e9rtelemben is bonyolult szerkezet\u00e9t csak k\u00f6zel\u00edt\u0151leg k\u00e9pes le\u00edrni. A HELIOS k\u00f3d k\u00e9tdimenzi\u00f3s megk\u00f6zel\u00edt\u00e9se, illetve a Monte Carlo m\u00f3dszeren alapul\u00f3 programok g\u00e9pid\u0151ig\u00e9nye miatt a mindh\u00e1rom dimenzi\u00f3ban jelent\u0151s effektust okoz\u00f3 r\u00e9gi\u00f3k (p\u00e9ld\u00e1ul a szab\u00e1lyoz\u00f3 \u00e9s biztons\u00e1gv\u00e9delmi kazett\u00e1k abszorber \u00e9s \u00fczemanyag r\u00e9sz\u00e9nek csatlakoz\u00e1sa) megfelel\u0151en gyors \u00e9s pontos sz\u00e1m\u00edt\u00e1sa k\u00fcl\u00f6n\u00f6sen neh\u00e9zkes. Az irregul\u00e1ris geometriai \u00e9s anyagi konfigur\u00e1ci\u00f3k pontosabb sz\u00e1m\u00edt\u00e1sa ir\u00e1nti ig\u00e9nyt tov\u00e1bb fogja n\u00f6velni a Paksi Atomer\u0151m\u0171 tervezett b\u0151v\u00edt\u00e9se. Az \u00fajonnan l\u00e9tes\u00fcl\u0151 reaktorok \u00fczemanyag-kazett\u00e1i ugyanis neutronfizikailag val\u00f3sz\u00edn\u0171leg j\u00f3val \u00f6sszetettebbek lesznek a m\u0171k\u00f6d\u0151 reaktorok kazett\u00e1in\u00e1l.<\/p>\n<p class=\"bodytext\">A fenti neh\u00e9zs\u00e9gek megold\u00e1sa \u00e9rdek\u00e9ben a Paksi Atomer\u0151m\u0171 \u00e9s BME Nukle\u00e1ris Technikai Int\u00e9zete k\u00f6z\u00f6s projektet ind\u00edtott egy olyan neutronfizikai k\u00f3d kifejleszt\u00e9se c\u00e9lj\u00e1b\u00f3l, amely a C\u2011PORCA program kazettan\u00f3dus szint\u0171 sz\u00e1m\u00edt\u00e1si eredm\u00e9nyeire \u2013 mint forr\u00e1s- \u00e9s hat\u00e1rfelt\u00e9teli adatokra \u2013 t\u00e1maszkodva \u201ebele tud nagy\u00edtani\u201d egy-egy z\u00f3nar\u00e9szbe, azaz a jelenlegi program \u00e1ltal ny\u00fajtott eredm\u00e9nyekhez k\u00e9pest mind az energiafelbont\u00e1s, mind pedig a t\u00e9rbeli felbont\u00e1s szempontj\u00e1b\u00f3l re\u00e1lisabb eredm\u00e9nyekkel tud szolg\u00e1lni a vizsg\u00e1lt r\u00e9gi\u00f3ra. Szakirodalmi el\u0151tanulm\u00e1nyok, tov\u00e1bb\u00e1 a megl\u00e9v\u0151 sz\u00e1m\u00edt\u00e1si rendszerhez val\u00f3 illeszthet\u0151s\u00e9g szempontjai alapj\u00e1n a sz\u00f3ba j\u00f6het\u0151 neutron-transzportsz\u00e1m\u00edt\u00e1si m\u00f3dszerek k\u00f6z\u00fcl az SP<sub>3<\/sub> k\u00f6zel\u00edt\u00e9sre, illetve annak v\u00e9geselemes m\u00f3dszerrel t\u00f6rt\u00e9n\u0151 megold\u00e1s\u00e1ra esett a v\u00e1laszt\u00e1s.<\/p>\n<p class=\"bodytext\">Feladatom a fent le\u00edrt fejleszt\u0151munk\u00e1ba val\u00f3 bekapcsol\u00f3d\u00e1s. Az \u00e9rdemi munk\u00e1hoz megismerkedem a HELIOS\u2013C\u2011PORCA programrendszer fel\u00e9p\u00edt\u00e9s\u00e9vel \u00e9s m\u0171k\u00f6d\u00e9s\u00e9vel, tov\u00e1bb\u00e1 tanulm\u00e1nyozom az SP<sub>3<\/sub> transzportk\u00f6zel\u00edt\u00e9s numerikus megold\u00e1s\u00e1ra szolg\u00e1l\u00f3 m\u00f3dszereket. Val\u00f3sz\u00edn\u0171leg csak numerikus k\u00eds\u00e9rletek seg\u00edts\u00e9g\u00e9vel lehet majd kiv\u00e1lasztani a megfelel\u0151 v\u00e9geselemes m\u00f3dszert. A f\u0151 feladatom olyan \u2013 a HELIOS\u2013C\u2011PORCA rendszerhez illeszked\u0151 \u2013 sz\u00e1m\u00edt\u00f3g\u00e9pi k\u00f3d fejleszt\u00e9se \u00e9s tesztel\u00e9se, amely elfogadhat\u00f3 g\u00e9pid\u0151ig\u00e9ny mellett k\u00e9pes a teljes akt\u00edv z\u00f3na lehet\u0151leg \u00fczemanyagp\u00e1lca-szakasz szint\u0171 sz\u00e1m\u00edt\u00e1s\u00e1ra. A konkr\u00e9t k\u00f3dfejleszt\u00e9s mellett sz\u00fcks\u00e9g lesz ig\u00e9nyes referenciasz\u00e1m\u00edt\u00e1sokra is, amelyekhez az MCNP programot fogom haszn\u00e1lni.<\/p>\n<h4><strong><em>Kapcsol\u00f3d\u00f3 publik\u00e1ci\u00f3k<\/em><\/strong><\/h4>\n<p>B. Babcs\u00e1ny, 2021. <em><a href=\"http:\/\/hdl.handle.net\/10890\/16795\" target=\"_blank\" rel=\"noopener\">Development of a finite-element-based reactor physics code system for the solution of the simplified <i>P<sub>3<\/sub><\/i> approximation to the neutron transport equation.<\/a><\/em> PhD disszert\u00e1ci\u00f3, Budapesti M\u0171szaki \u00e9s Gazdas\u00e1gtudom\u00e1nyi Egyetem (megv\u00e9dve 2022. febru\u00e1rban)<\/p>\n<p>B. Babcs\u00e1ny, I. P\u00f3s, Z.I. B\u00f6r\u00f6czki, D.P. Kis, 2022. <span class=\"title-text\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0306454922001529?via%3Dihub\" target=\"_blank\" rel=\"noopener\">Hybrid finite-element-based numerical solution of the SP<sub>3<\/sub> equations \u2013 SP<sub>3<\/sub> solution of two- and three-dimensional VVER reactor problems<\/a>. Annals of Nuclear Energy, 173 (2022)<\/span><\/p>\n<p>B. Babcs\u00e1ny, I. P\u00f3s, 2021. SP<sub>3<\/sub> solution of the full-core VVER-440 RK3+ and VVER-1000 benchmarks using Serpent group constants and discontinuity factors. Presentation at the Atomic Energy Research Working Group A&amp;B Meeting; Online; 15 June 2021 (2021)<\/p>\n<p>B. Babcs\u00e1ny, I. P\u00f3s, D.P. Kis, 2021. <a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0306454921000244\" target=\"_blank\" rel=\"noopener\">Hybrid finite-element-based numerical solution of the multi-group SP<sub>3<\/sub> equations and its application on hexagonal reactor problems<\/a>. Annals of Nuclear Energy, 155 (2021)<\/p>\n<p class=\"bodytext\">B. Babcs\u00e1ny, D.P. Kis, 2020. <a href=\"https:\/\/doi.org\/10.1016\/j.anucene.2020.107671\" target=\"_blank\" rel=\"noopener noreferrer\">Semi-analytical methods for <em>SP<sub>3<\/sub><\/em> equations solver verification including third-order scattering anisotropy<\/a><i>.<\/i> Annals of Nuclear Energy, 148 (2020)<\/p>\n<p>B. Babcs\u00e1ny,\u00a0T. Bart\u00f3k,\u00a0D. P. Kis, 2020. <a href=\"https:\/\/doi.org\/10.3139\/124.200004\" target=\"_blank\" rel=\"noopener noreferrer\">Finite element solution of the time-dependent SP<sub>3<\/sub> equations using an implicit integration scheme<\/a>. Kerntechnik, 85 (2020) 4; 292-300. oldalak<\/p>\n<p><span class=\"content\"><span class=\"text given-name\">A.Sz. <\/span><\/span><span class=\"content\"><span class=\"text surname\">V\u00e1nyi, <\/span><span id=\"baf005\" class=\"author-ref\"><\/span><\/span><span class=\"content\"><span class=\"text given-name\">B. <\/span><span class=\"text surname\">Babcs\u00e1ny, <\/span><span id=\"baf005\" class=\"author-ref\"><\/span><\/span><span class=\"content\"><span class=\"text given-name\">Z.I. <\/span><span class=\"text surname\">B\u00f6r\u00f6czki, <\/span><\/span><span class=\"content\"><span class=\"text given-name\">A. <\/span><span class=\"text surname\">Horv\u00e1th, <\/span><span id=\"baf005\" class=\"author-ref\"><\/span><\/span><span class=\"content\"><span class=\"text given-name\">M. <\/span><span class=\"text surname\">Hursin<\/span>, <span id=\"baf015\" class=\"author-ref\"><\/span><\/span><span class=\"content\"><span class=\"text given-name\">M. <\/span><span class=\"text surname\">Szieberth, <\/span><span id=\"baf005\" class=\"author-ref\"><\/span><\/span><span class=\"content\"><span class=\"text given-name\">Sz. <\/span><span class=\"text surname\">Czifrus<\/span><\/span>, 2021. <a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0306454921000207\" target=\"_blank\" rel=\"noopener\">Steady-state neutronic measurements and comprehensive numerical analysis for the BME training reactor<\/a>. Annals of Nuclear Energy, 155 (2021)<\/p>\n<p>B. Babcs\u00e1ny, T. Hajas, P. M\u00e9sz\u00e1ros, 2020. <a href=\"https:\/\/nuklearis.hu\/sites\/default\/files\/nukleon\/13_2_233_Babcsany.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Tranziens reaktorfizikai folyamatok v\u00e9geselem-m\u00f3dszeren alapul\u00f3 diff\u00fazi\u00f3s modellez\u00e9se<\/a>. Nukleon, XIII. (2020) 233<\/p>\n<p class=\"bodytext\">B. Babcs\u00e1ny, T. Bart\u00f3k, D. P. Kis, 2019. <a href=\"https:\/\/www.researchgate.net\/publication\/336604838_Finite_element_solution_of_the_time-dependent_SP3_equations_using_an_implicit_integration_scheme\" target=\"_blank\" rel=\"noopener noreferrer\"><em>Finite element solution of the time-dependent SP<sub>3<\/sub> equations using an implicit integration scheme<\/em><\/a>. In Proceedings of 29<sup>rd <\/sup>Symposium of AER on VVER Reactor Physics and Reactor Safety, Szlov\u00e1kia, Mohi Atomer\u0151m\u0171, Energoland, 2019. okt\u00f3ber 14-18.<\/p>\n<p class=\"bodytext\">B. Babcs\u00e1ny, S. Feh\u00e9r, I. P\u00f3s, T. Park\u00f3, 2015. <a href=\"https:\/\/www.researchgate.net\/publication\/335422042_Hybrid_finite_element_solution_of_the_simplified_P3_equations\" target=\"_blank\" rel=\"noopener noreferrer\"><i>Hybdrid Finite Element Solution of the Simplified P<sub>3<\/sub> equations<\/i><\/a>. In Proceedings of 25<sup>rd <\/sup>Symposium of AER on VVER Reactor Physics and Reactor Safety, Magyarorsz\u00e1g, Balatongy\u00f6r\u00f6k, 2015. okt\u00f3ber 13\u201316.<\/p>\n<p>B. Babcs\u00e1ny:\u00a0<em>A VVER-440 z\u00f3na 2D modellez\u00e9se SP<sub>3 <\/sub>m\u00f3dszerrel<\/em>. BME-NTI-908\/2019.<\/p>\n<p>B. Babcs\u00e1ny, M. Hal\u00e1sz: <em>A C-PORCA programot kieg\u00e9sz\u00edt\u0151 SP<sub>3<\/sub>-elj\u00e1r\u00e1s pontoss\u00e1gn\u00f6vel\u00e9si lehet\u0151s\u00e9geinek vizsg\u00e1lata.<\/em> BME-NTI-864\/2018.<\/p>\n<p>B. Babcs\u00e1ny, S. Feh\u00e9r: <em>A C-PORCA programba integr\u00e1lt SP<sub>3<\/sub>-elj\u00e1r\u00e1s sz\u00e1m\u00edt\u00e1si pontoss\u00e1g\u00e1nak jav\u00edt\u00e1s\u00e1t c\u00e9lz\u00f3 kutatat\u00e1s v\u00e9gz\u00e9se az anizotrop neutronsz\u00f3r\u00e1s figyelembev\u00e9tel\u00e9vel.<\/em> BME-NTI-826\/2017.<\/p>\n<p>S. Feh\u00e9r, B. Babcs\u00e1ny: <em>HELIOS &#8211; C-PORCA k\u00f3drendszer tov\u00e1bbfejleszt\u00e9se irregul\u00e1ris geometriai konfigur\u00e1ci\u00f3k reaktorfizikai sz\u00e1m\u00edt\u00e1s\u00e1ra alkalmas modullal III. r\u00e9sz. A kifejlesztett SP<sub>3<\/sub>-elj\u00e1r\u00e1s tesztel\u00e9se \u00e9s ellen\u0151rz\u00e9se.<\/em> BME-NTI-706\/2014.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>A neutron-transzportegyenlet SP3 k\u00f6zel\u00edt\u00e9s\u0171, v\u00e9geselemes megold\u00e1s\u00e1n alapul\u00f3 neutronfizikai sz\u00e1m\u00edt\u00e1si rendszer fejleszt\u00e9se A Paksi Atomer\u0151m\u0171ben jelenleg alkalmazott reaktorfizikai sz\u00e1m\u00edt\u00e1si rendszer neutronfizikai h\u00e1tter\u00e9t a HELIOS k\u00e9tdimenzi\u00f3s transzportk\u00f3d biztos\u00edtja. A HELIOS-sz\u00e1m\u00edt\u00e1sokkal k\u00e9t energiacsoportra [&hellip;]<\/p>\n","protected":false},"author":6,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-421","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/pages\/421","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/users\/6"}],"replies":[{"embeddable":true,"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/comments?post=421"}],"version-history":[{"count":12,"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/pages\/421\/revisions"}],"predecessor-version":[{"id":1116,"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/pages\/421\/revisions\/1116"}],"wp:attachment":[{"href":"https:\/\/oktatok.reak.bme.hu\/babcsany\/wp-json\/wp\/v2\/media?parent=421"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}