@article{MTMT:33118510, title = {Trends in extreme precipitation events (SW Hungary) based on a high-density monitoring network}, url = {https://m2.mtmt.hu/api/publication/33118510}, author = {Schmeller, Gabriella and Nagy, Gábor and Sarkadi, Noémi and Cséplő, Anikó and Pirkhoffer, Ervin and Geresdi, István and Balogh, Richárd and Ronczyk, Levente and Czigány, Szabolcs}, doi = {10.15201/hungeobull.71.3.2}, journal-iso = {HUNG GEOGR BULL (2009-)}, journal = {HUNGARIAN GEOGRAPHICAL BULLETIN (2009-)}, volume = {71}, unique-id = {33118510}, issn = {2064-5031}, abstract = {Climate change is commonly associated with extreme weather phenomena. Extreme weather patterns may bring prolonged drought periods, more intense runoff and increased severity of floods. Rainfall distribution is extremely erratic both in space and time, particularly in areas of rugged topography and heterogeneous land use. Therefore, locating major rainfall events and predicting their hydrological consequences is challenging. Hence, our study aimed at exploring the spatial and temporal patterns of daily rainfall totals of R ≥ 20 mm, R ≥ 30 mm and R ≥ 40 mm (extreme precipitation events, EPE) in Pécs (SW Hungary) by a hydrometeorological network (PHN) of 10 weather stations and the gridded database of the Hungarian Meteorological Service (OMSZ). Our results revealed that (a) OMSZ datasets indicated increasing frequencies of EPEs for the period of 1971–2020 in Pécs, (b) the OMSZ dataset generally underestimated EPE frequencies, particularly for R ≥ 40 mm EPEs, for the period of 2013 to 2020, and (c) PHN indicated a slight orographic effect, demonstrating spatial differences of EPEs between the two datasets both annually and seasonally for 2013–2020. Our results pointed out the adequacy of interpolated datasets for mesoscale detection of EPE distribution. However, topographically representative monitoring networks provide more detailed microscale data for the hydrological management of urban areas. Data from dense rain-gauge networks may complement interpolated datasets, facilitating complex environmental management actions and precautionary measures, particularly during weather-related calamities.}, year = {2022}, eissn = {2064-5147}, pages = {231-247}, orcid-numbers = {Sarkadi, Noémi/0000-0002-2370-8621; Pirkhoffer, Ervin/0000-0003-2917-3290; Geresdi, István/0000-0002-3160-7900; Czigány, Szabolcs/0000-0002-9158-3162} } @article{MTMT:32928944, title = {Nationwide, Operational Sentinel-1 Based InSAR Monitoring System in the Cloud for Strategic Water Facilities in Hungary}, url = {https://m2.mtmt.hu/api/publication/32928944}, author = {Ronczyk, Levente and Zelenka-Hegyi, András and Török, Gábor and Orbán, Zoltán and Defilippi, Marco and Kovács, István Péter and Kovács, Dániel Márton and Burai, Péter and Pasquali, Paolo}, doi = {10.3390/rs14143251}, journal-iso = {REMOTE SENS-BASEL}, journal = {REMOTE SENSING}, volume = {14}, unique-id = {32928944}, year = {2022}, eissn = {2072-4292}, orcid-numbers = {Orbán, Zoltán/0000-0002-9721-6216; Kovács, István Péter/0000-0002-0270-4365; Kovács, Dániel Márton/0000-0001-5403-6410} } @article{MTMT:32897277, title = {Surface Deformation Monitoring and Risk Mapping in the Surroundings of the Solotvyno Salt Mine (Ukraine) between 1992 and 2021}, url = {https://m2.mtmt.hu/api/publication/32897277}, author = {Dobos, Endre and Kovács, István Péter and Kovács, Dániel Márton and Ronczyk, Levente and Szűcs, Péter and László, Perger and Mikita, Viktória}, doi = {10.3390/su14137531}, journal-iso = {SUSTAINABILITY-BASEL}, journal = {SUSTAINABILITY}, volume = {14}, unique-id = {32897277}, keywords = {Interferometry; Surface deformation; Microwave remote sensing; Salt mine; Solotvyno}, year = {2022}, eissn = {2071-1050}, orcid-numbers = {Kovács, István Péter/0000-0002-0270-4365; Kovács, Dániel Márton/0000-0001-5403-6410} } @article{MTMT:32736217, title = {Do We Need a Higher Resolution? Case Study: Sentinel-1-Based Change Detection of the 2018 Hokkaido Landslides, Japan}, url = {https://m2.mtmt.hu/api/publication/32736217}, author = {Kovács, István Péter and Tessari, Giulia and Ogushi, Fumitaka and Riccardi, Paolo and Ronczyk, Levente and Kovács, Dániel Márton and Lóczy, Dénes and Pasquali, Paolo}, doi = {10.3390/rs14061350}, journal-iso = {REMOTE SENS-BASEL}, journal = {REMOTE SENSING}, volume = {14}, unique-id = {32736217}, year = {2022}, eissn = {2072-4292}, orcid-numbers = {Kovács, István Péter/0000-0002-0270-4365; Ogushi, Fumitaka/0000-0001-7702-9109; Kovács, Dániel Márton/0000-0001-5403-6410; Lóczy, Dénes/0000-0002-2542-6775} } @{MTMT:32495240, title = {Kritikus infrastruktúra elemek vizsgálata InSAR technológiával Pécs térségében}, url = {https://m2.mtmt.hu/api/publication/32495240}, author = {Kovács, Dániel Márton and Kovács, István Péter and Ronczyk, Levente}, booktitle = {X. Magyar Földrajzi Konferencia = 10th Hungarian Geographical Conference : absztraktkötet}, unique-id = {32495240}, year = {2021}, pages = {184-185}, orcid-numbers = {Kovács, Dániel Márton/0000-0001-5403-6410; Kovács, István Péter/0000-0002-0270-4365} } @article{MTMT:32191197, title = {Integration of InSAR Technology in the Stability Assessment of Load Bearing Structures}, url = {https://m2.mtmt.hu/api/publication/32191197}, author = {Orbán, Zoltán and Kovács, István Péter and Ronczyk, Levente and Dormány, András and Kovács, Dániel Márton}, doi = {10.22213/2413-1172-2021-2-60-67}, journal-iso = {VESTNIK IZHEV GOSUD TECH UNIV}, journal = {VESTNIK IZHEVSKOGO GOSUDARSTVENNOGO TEHNICHESKOGO UNIVERSITETA}, volume = {24}, unique-id = {32191197}, issn = {1813-7903}, year = {2021}, pages = {60-68}, orcid-numbers = {Orbán, Zoltán/0000-0002-9721-6216; Kovács, István Péter/0000-0002-0270-4365; Kovács, Dániel Márton/0000-0001-5403-6410} } @inproceedings{MTMT:31127962, title = {Reakció idő számítása hidrológiai mérőhálózat alapján Pécsett}, url = {https://m2.mtmt.hu/api/publication/31127962}, author = {Domján, Anita and Nagy, Gábor and Ronczyk, Levente and Czigány, Szabolcs}, booktitle = {Országos Települési Csapadékvíz-gazdálkodási Konferencia tanulmányai}, unique-id = {31127962}, year = {2019}, pages = {25-35}, orcid-numbers = {Czigány, Szabolcs/0000-0002-9158-3162} } @article{MTMT:30413405, title = {Monitoring Landslides Using C-Band Interferometry. A Case Study: Dunaszekcső Landslide, Southern Transdanubia, Hungary}, url = {https://m2.mtmt.hu/api/publication/30413405}, author = {Kovács, István Péter and Bugya, Titusz and Czigány, Szabolcs and Marco, Defilippi and Dobre, Bernadett and Fábián, Szabolcs Ákos and Lóczy, Dénes and Paolo, Riccardi and Ronczyk, Levente and Paolo, Pasquali}, journal-iso = {STUD GEOMORPHOL CARPATHO BALCA}, journal = {STUDIA GEOMORPHOLOGICA CARPATHO BALCANICA}, volume = {2017/2018}, unique-id = {30413405}, issn = {0081-6434}, year = {2019}, pages = {87-105}, orcid-numbers = {Kovács, István Péter/0000-0002-0270-4365; Czigány, Szabolcs/0000-0002-9158-3162; Fábián, Szabolcs Ákos/0000-0001-9127-2113; Lóczy, Dénes/0000-0002-2542-6775} } @article{MTMT:30378347, title = {How to avoid false interpretations of Sentinel-1A TOPSAR interferometric data in landslide mapping? A case study: recent landslides in Transdanubia, Hungary}, url = {https://m2.mtmt.hu/api/publication/30378347}, author = {Kovács, István Péter and Bugya, Titusz and Czigány, Szabolcs and Defilippi, M. and Lóczy, Dénes and Riccardi, P. and Ronczyk, Levente and Pasquali, P.}, doi = {10.1007/s11069-018-3564-9}, journal-iso = {NAT HAZARDS}, journal = {NATURAL HAZARDS}, volume = {96}, unique-id = {30378347}, issn = {0921-030X}, year = {2019}, eissn = {1573-0840}, pages = {693-712}, orcid-numbers = {Kovács, István Péter/0000-0002-0270-4365; Czigány, Szabolcs/0000-0002-9158-3162; Lóczy, Dénes/0000-0002-2542-6775} } @CONFERENCE{MTMT:30413662, title = {Sentinel-1A basedl landslide monitoring along the Danubian high bluffs in Hungary}, url = {https://m2.mtmt.hu/api/publication/30413662}, author = {Kovács, István Péter and Cantone, Alessio and Defilippi, Marco and Lecci, Daniele and Riccardi, Paolo and Ronczyk, Levente and Pasquali, Paolo}, booktitle = {Fringe 2017 Workshop. Advances in the Science and Applications of SAR Interferometry and Sentinel-1 InSAR}, unique-id = {30413662}, year = {2017}, pages = {269-270} }