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Pregled bibliografske jedinice broj: 1077041

How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device


Marić, Ivan; Šiljeg, Ante; Cukrov, Neven; Roland, Vlatko; Domazetović, Fran
How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device // Earth surface processes and landforms, 45 (2020), 10; 2331-2349 doi:10.1002/esp.4883 (međunarodna recenzija, članak, znanstveni)


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Naslov
How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device

Autori
Marić, Ivan ; Šiljeg, Ante ; Cukrov, Neven ; Roland, Vlatko ; Domazetović, Fran

Izvornik
Earth surface processes and landforms (0197-9337) 45 (2020), 10; 2331-2349

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
coordinate measuring macro-photogrammetry device (CMD) ; digital tufa high-resolution models (DTHRMs) ; tufa growth rate (TGR) ; micro-erosion meter (MEM) ; National Park Krka

Sažetak
Accurate determination of the tufa growth rate (TGR) is required to answer the fundamental geomorphological question of tufa evolution. The TGR has been measured by various direct and indirect methods. One of the most popular direct methods uses modified micro-erosion meter (MEM), which has several drawbacks. Here, we present for the first time a coordinate measuring macro- photogrammetry device (CMD) for monitoring the TGR in a contactless manner. The CMD was applied on 28 limestone plates at 14 locations within the Skradinski buk area, Croatia, and measurements were performed in the laboratory. The TGR was derived from digital tufa high- resolution models (DTHRMs). The accuracy of the device was evaluated using state-of-the- art three-dimensional (3D) scanners and error calculation at checkpoints. Moreover, the precision was evaluated with the split test (n = 5). A total of 74 DTHRMs with a spatial resolution of 0.0236 mm were created. The TGR ranged from 0.327 to 19.302 mm a-1, with an average of 5.771 mm a-1. A higher TGR was observed on the limestone plates near mosses, located in fast and turbulent water rather than in stagnant water. We found that specific micro- environmental factors (e.g. proximity to moss) positively affected tufa growth. Erosion events were observed, as well as the presence of aquatic insect larvae (Simuliidae and Chironomidae), which positively affected tufa growth. The CMD is a precise and accurate device that does not suffer from the drawbacks of the MEM method and has many other advantages. It has a high capability of tufa erosion detection, enables the identification of macroinvertebrates, and multispectral or hyperspectral cameras can be mounted on the device for spectral reflectance analysis of the tufa surface. The CMD can be applied in any study requiring a sub-millimetre data quality and involving the comparison of consecutive 3D models and derivation of various parameters of smaller objects.

Izvorni jezik
Engleski

Znanstvena područja
Geografija



POVEZANOST RADA


Ustanove:
Institut "Ruđer Bošković", Zagreb,
Sveučilište u Zadru

Profili:

Avatar Url Fran Domazetović (autor)

Avatar Url Ante Šiljeg (autor)

Avatar Url Ivan Marić (autor)

Avatar Url Neven Cukrov (autor)

Citiraj ovu publikaciju:

Marić, Ivan; Šiljeg, Ante; Cukrov, Neven; Roland, Vlatko; Domazetović, Fran
How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device // Earth surface processes and landforms, 45 (2020), 10; 2331-2349 doi:10.1002/esp.4883 (međunarodna recenzija, članak, znanstveni)
Marić, I., Šiljeg, A., Cukrov, N., Roland, V. & Domazetović, F. (2020) How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device. Earth surface processes and landforms, 45 (10), 2331-2349 doi:10.1002/esp.4883.
@article{article, author = {Mari\'{c}, Ivan and \v{S}iljeg, Ante and Cukrov, Neven and Roland, Vlatko and Domazetovi\'{c}, Fran}, year = {2020}, pages = {2331-2349}, DOI = {10.1002/esp.4883}, keywords = {coordinate measuring macro-photogrammetry device (CMD), digital tufa high-resolution models (DTHRMs), tufa growth rate (TGR), micro-erosion meter (MEM), National Park Krka}, journal = {Earth surface processes and landforms}, doi = {10.1002/esp.4883}, volume = {45}, number = {10}, issn = {0197-9337}, title = {How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device}, keyword = {coordinate measuring macro-photogrammetry device (CMD), digital tufa high-resolution models (DTHRMs), tufa growth rate (TGR), micro-erosion meter (MEM), National Park Krka} }
@article{article, author = {Mari\'{c}, Ivan and \v{S}iljeg, Ante and Cukrov, Neven and Roland, Vlatko and Domazetovi\'{c}, Fran}, year = {2020}, pages = {2331-2349}, DOI = {10.1002/esp.4883}, keywords = {coordinate measuring macro-photogrammetry device (CMD), digital tufa high-resolution models (DTHRMs), tufa growth rate (TGR), micro-erosion meter (MEM), National Park Krka}, journal = {Earth surface processes and landforms}, doi = {10.1002/esp.4883}, volume = {45}, number = {10}, issn = {0197-9337}, title = {How fast does tufa grow? Very high‐resolution measurement of the tufa growth rate on artificial substrates by the development of a contactless image‐based modelling device}, keyword = {coordinate measuring macro-photogrammetry device (CMD), digital tufa high-resolution models (DTHRMs), tufa growth rate (TGR), micro-erosion meter (MEM), National Park Krka} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


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