Rock-fall types and its simulation using blender software
Is this your thesis?
This record came from a bulk archive import. If it’s yours, link it to your profile.
Abstract (EN)
Blender is a software used in the film and computer games industries to realistically animate a physical system and produce 2D or 3D animation films. In this paper it is shown that media can be faithfully modeled using a rigid body physics, Rock falling and soil sliding are issues confusing the designers in selecting the alternative roots of roads due to miss availability of exact predicts. The animation program is used to simulate a rock fall model and analyze it by statistical program to evaluate the results and finding the rate of confidence between them. Two types of materials (Wood and Steel) in Cubic shape and spherical shape were tested in the laboratory as two parameters on fixed side slope made of wood, which it has one stage in the mid-distance the motion of materials detected by Physic Tracker Software. Results showed that Blender as computer software is perfect for this purpose and there is a relation of (R2=0.999) between the parameters. This will help the designers and the geotechnical problems in predicting and considering the best solutions before and even during the construction process.
Author
Ahmad Ganjeena Jalal Khoshnaw
How to Cite
Ahmad Ganjeena Jalal Khoshnaw (Master Thesis). Rock-fall types and its simulation using blender software, 2019, Gaziantep University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Gaziantep University
- Conceptual design methodology for foldable shelters(2019)
- Pilton (pastinaca armena) katkılı beyaz peynirin duyusal ve kimyasal özelliklerinin incelenmesi(2019)
- Constructions of popular culture within viral advertising: Reception analysis of Eti Benim'O virals(2021)
- Optimum usage of mixed damping systems (rubber concerete or x diagonal dampers) on multystory building(2021)
- Transcription and evaluation of Idrak newspaper(2021)
- Identification of allergenic proteins from Tilia cordata(2021)
