Kaya Tutma Hendek Performansının 3-Boyutlu Kaya Düşme Analizleriyle Değerlendirilmesi: Akköy (Ürgüp) Örneği
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Date
2019
Journal Title
Journal ISSN
Volume Title
Publisher
TMMOB - Jeoloji Muhendisleri Odasi jmo@jmo.org.tr
Open Access Color
GOLD
Green Open Access
Yes
OpenAIRE Downloads
56
OpenAIRE Views
121
Publicly Funded
No
Abstract
Rockfall ditches or areas can be constructed in order to protect against rockfalls in settlements that are in danger of rockfalls when the population density is not high. Nevertheless, in the design of such protection structures, essential site-specific engineering studies and analyzes are often not carried out appropriately. Therefore, rockfallditches are occasionally not capable of preventing rockfalls. Within the scope of this study, the performance of a 2 m-deep and 1 km-long rockfall ditch excavated at the upper elevation of touristic Akköy (Ürgüp) settlement in 2012 in order to prevent the entrance of falling rocks to the residential area was evaluated on the basis of 3-dimensional rockfall analyses. According to the rockfall risk classification, the settlement is under moderate rockfall risk. The digital surface model used in 3-dimensional rockfall analyses was generated by point cloud data obtained from photogrammetric images taken by unmanned aerial vehicle. During field observations, it was determined that the dimension of the previously fallen ignimbrite blocks could reach up to 2 m. On the other hand, the high persistency of discontinuities in the source zone indicates that the dimensions of the potential rockfall blocks may be large. As a result of the 3-dimensional rockfall analyses carried out in RocPro3D software, it was defined that the falling blocks are generally caught by the ditch excavated between the source zone and the settlement, but in some sections of the ditch those blocks may continue to roll over the rockfall ditch. Eventually, Akköy settlement is still partially under the danger of rockfalls. If the rockfall ditch is not periodically cleaned in the course of time, the extent of danger will enlarge with the decrease in the capacity of the trench. © 2020 Elsevier B.V., All rights reserved.
Description
Keywords
3-Dimension, Ditch, Performance, Rockfall, Ürgüp, Design, Discontinuity, Performance Assessment, Photogrammetry, Risk Assessment, Rockfall, Three-Dimensional Modeling, Trench, Unmanned Vehicle, Torreya Nucifera, Rockfall, Kaya düşmesi;hendek;3-boyut;performans;Ürgüp, Geological Sciences and Engineering (Other), Yer Bilimleri ve Jeoloji Mühendisliği (Diğer), Ürgüp, Kaya düşmesi, Hendek, Performance, Ditch, 3-Boyut, 3-dimension, Performans, 3-Dimension
Fields of Science
Citation
WoS Q
N/A
Scopus Q
Q4

OpenCitations Citation Count
7
Source
Jeoloji Muhendisligi Dergisi
Volume
43
Issue
2
Start Page
211
End Page
232
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Citations
Scopus : 10
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Mendeley Readers : 21
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