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2024 | no. 2 | 7--19
Tytuł artykułu

The use of modern photogrammetric techniques in the inventory of historical monuments ‒ focus on the Potocki Palace in Krzeszowice

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The study presents advanced measurement methods used in the inventory of historic buildings, focused on the Potocki Palace in Krzeszowice. The paper addresses two main measurement methods that led to obtaining comprehensive and accurate documentation. The first technique was terrestrial laser scanning, using specialised laser scanners to collect data. In order to represent the actual colours and texture of the object under study, the scanning method was supported by photogrammetry. The second method was low-ceiling photogrammetry, which provided even more accurate data about the Palace. Data processing resulted in a three-dimensional (3D) solid, consisting of a multi-million-point cloud. This was followed by a vectorisation process, which made it possible to obtain a full-dimensional representation of the studied object. The results facilitated a detailed analysis of the Potocki Palace, including the identification of damage and changes occurring over the years. The resulting documentation provides a solid basis for future conservation, modernisation and research work related to the building. The paper also points out the potential applications of contemporary technologies in order to visualize inventoried objects. The technique of Virtual Reality (VR) and showing the object in 3D that has been popular so far, has recently found even broader application, providing input for the construction of the so-called Augmented Reality (AR).
Wydawca

Rocznik
Tom
Strony
7--19
Opis fizyczny
Bibliogr. 21 poz., rys., tab.
Twórcy
  • Department of Photogrammetry, Remote Sensing of Environment and Spatial Engineering, AGH University of Krakow, smikrut@agh.edu.pl
Bibliografia
  • Balloni E., Gorgoglione L., Paolanti M., Mancini A., Pierdicca R. 2023. Few shot photogrammetry: a comparison between NERW and MVS-SFM for the Documentation of Cultural Heritage. Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLVIII-M-2-2023, 155–162.
  • Doroszuk K., Markiewicz J. 2022. The possibility of using close-range photogrammetry in the inventory of historic complex basements ‒ case study. Sensors and Machine Learning Applications. 1. 10.55627/smla.001.02.0014.
  • Gorgoglione L., Malinverni E.S., Smaniotto Costa C., Pierdicca R., Di Stefano F. 2023. Exploiting 2D/3D Geomatics Data for the Management, Promotion, and Valorization of Underground Built Heritage. Smart Cities, 6, 243–262.
  • Kubalska J.L., Preuss R. 2014. Wykorzystanie danych fotogrametrycznych do inwentaryzacji zieleni na terenach zurbanizowanych. Archiwum Fotogrametrii, Kartografii i Teledetekcji, 26, 75–86.
  • Kurczyński Z. 2014. Fotogrametria. Wydawnictwo Naukowe PWN, Warszawa.
  • Malinverni E.S., Di Stefano F., Gorgoglione L. 2024. Rivoluzione Digitale nel Patrimonio Culturale: Impatti e Innovazioni della Stampa 3D. Rocca di Senigallia. (Ri)conoscere, Gestire, Valorizzare. Gangemi Editore. Collana Antico/Futuro (in printing).
  • Markiewicz J., Zawieska D., Salach A. 2016. Integration of point clouds from terrestrial laser scanning and image-based matching for generating high-resolution orthoimages. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 399–404.
  • Mikrut S., Marmol U., Moskal A. 2014. Images and scanning data integration on selected example. Image Processing & Communications: International Journal, 19, 2–3, 37–44.
  • Mikrut S., Papuci-Wladyka E., Strus A., Głowienka E., Konstantinowski Puntos J. 2018. The Use of Photogrammetry in Archaeology and Multimedia Open-Air Performance in the Castle Square of Kato Paphos. Proceedings. Baltic Geodetic Congress, BGC-Geomatics.
  • Mitka B., Makuch M., Gawronek P. 2016. Zastosowanie intensywności wiązki odbicia w ocenie stanu powierzchni budowli zabytkowych. Episteme, 32, 11–24.
  • Olo K., Słowiak M. 2021. Opracowanie modelu 3D w wirtualnej rzeczywistości na przykładzie dziedzińca Pałacu Potockich w Krzeszowicach. Praca dyplomowa, AGH.
  • Pająk E., Dudziak A., Górski F., Wichniarek R. 2011. Techniki przyrostowe i wirtualna rzeczywistość w procesach przygotowania produkcji. Wydawnictwo Promocja, Poznań.
  • Pierdicca R., Gorgoglione L., Martuscelli M., Usmanov S. 2023. Challenging Architectures: an Integrated and Multipurpose Survey for the Complete Mapping of the Emir Palace in Kogon (Uzbekistan). Int. Arch. Photogramm. Remote Sens. Spatial Inf. Sci., XLVIII-M-2-2023, 1225–1232.
  • Prarat M. 2016. Wykorzystanie tachimetrii i fotogrametrii w dokumentacji zabytków architektury na przykładzie inwentaryzacji pomiarowo-rysunkowej wybranych kamienic toruńskich. AUNC_ZiK, 46, 509–531.
  • Quintilla-Castán M., Martínez-Aranda S., Hernández L. 2022. Digital 3D Inventory for the Promotion and Conservation of the Architectural Heritage. ISPRS ‒ International Archives of the Photogrammetry Remote Sensing and Spatial Information Sciences, XLVIII-4/W1- 2022, 379–385.
  • Sadjadi S. 2019. Using Digital Terrestrial Photogrammetry in Cultural Heritage Case Study: The Great Wall of Gorgan in Iran. ISPRS – International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. XLII-4/W16, 555–561.
  • Su Y., Guo Q., Jin S., Guan H., Sun X., Ma Q., Hu T., Wang R., Li Y. 2020. The Development and Evaluation of a Backpack LiDAR System for Accurate and Efficient Forest Inventory. IEEE Geoscience and Remote Sensing Letters, 1–5.
  • Tsoraeva E., Gadzhiev R., Kuchiev S., Pekh A., Mezhyan S. 2021. Application of photogrammetric methods in architecture, construction, and land management. Materials Science and Engineering, 1083(1), 012052.
  • Krzeszowice 2024. Pałac Potockich, Zabytek.pl. https://zabytek.pl/pl/obiekty/krzeszowicepalac-potockich
  • FARO 2013. laserscanning-europe.com. https://www.laserscanning-europe.com/sites/default/files/redakteur_images/TechSheet_Laser%20Scanner_Focus3D.pdf.
  • ZF 2024. Z + F. GmbH. zofre.de. https://www.zofre.de/laserscanner/3d-laserscanner/z-f-imagerr-5010
Typ dokumentu
Bibliografia
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