Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah

Close Range Photogrammetry (CRP) is a process of making measurement from photographs. In generally, CRP is generating from 2D image into 3D image. The aim of this study is to generate 3D modelling o f area affected by explosion. In order to achieve the stated aim and objectives, the study designa...

Full description

Saved in:
Bibliographic Details
Main Author: Abdullah, Zakiah
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/22441/1/TD_ZAKIAH%20ABDULLAH%20AP%20R%2018.5.PDF
http://ir.uitm.edu.my/id/eprint/22441/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.uitm.ir.22441
record_format eprints
spelling my.uitm.ir.224412018-12-13T03:40:48Z http://ir.uitm.edu.my/id/eprint/22441/ Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah Abdullah, Zakiah Computer engineering. Computer hardware Photogrammetry Close Range Photogrammetry (CRP) is a process of making measurement from photographs. In generally, CRP is generating from 2D image into 3D image. The aim of this study is to generate 3D modelling o f area affected by explosion. In order to achieve the stated aim and objectives, the study designated to use the current data to be collected on the field. So, the data to generate 3D modelling of area affected by explosion come from capturing picture by camera or other devices. Capturing the incident on the field as the result which is 3D model of that area looks like a real world. The entire places the data to be collected is at Arau, Perlis which is explosion site simulation. The designated of this study is to generate 3D model of area affected by explosion as the output. Agisoft PhotoScan Professional software is needed to process the data that have been collected. In this process phase, camera calibration is needed to acquire the exterior orientation with sufficient redundancies in every photo at least six ground control points should appear although this number depends of each photograph (Aguilar et al., 2007). The 3D model be able identify the measurement before and after explosion. In order to identified the changes between two condition, the result will compared the radius area affected before and after by using three software. In this simulation uses a chemical compound which is calcium carbide with chemical formula CaC2. Then, to identify the chemical reaction of calcium carbide the result of chemical reaction between two types of surface with different quantity of calcium carbide by interpreting the depth of area affected. 2018-11 Thesis NonPeerReviewed other en http://ir.uitm.edu.my/id/eprint/22441/1/TD_ZAKIAH%20ABDULLAH%20AP%20R%2018.5.PDF Abdullah, Zakiah (2018) Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah. Degree thesis, Universiti Teknologi Mara Perlis.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Computer engineering. Computer hardware
Photogrammetry
spellingShingle Computer engineering. Computer hardware
Photogrammetry
Abdullah, Zakiah
Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah
description Close Range Photogrammetry (CRP) is a process of making measurement from photographs. In generally, CRP is generating from 2D image into 3D image. The aim of this study is to generate 3D modelling o f area affected by explosion. In order to achieve the stated aim and objectives, the study designated to use the current data to be collected on the field. So, the data to generate 3D modelling of area affected by explosion come from capturing picture by camera or other devices. Capturing the incident on the field as the result which is 3D model of that area looks like a real world. The entire places the data to be collected is at Arau, Perlis which is explosion site simulation. The designated of this study is to generate 3D model of area affected by explosion as the output. Agisoft PhotoScan Professional software is needed to process the data that have been collected. In this process phase, camera calibration is needed to acquire the exterior orientation with sufficient redundancies in every photo at least six ground control points should appear although this number depends of each photograph (Aguilar et al., 2007). The 3D model be able identify the measurement before and after explosion. In order to identified the changes between two condition, the result will compared the radius area affected before and after by using three software. In this simulation uses a chemical compound which is calcium carbide with chemical formula CaC2. Then, to identify the chemical reaction of calcium carbide the result of chemical reaction between two types of surface with different quantity of calcium carbide by interpreting the depth of area affected.
format Thesis
author Abdullah, Zakiah
author_facet Abdullah, Zakiah
author_sort Abdullah, Zakiah
title Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah
title_short Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah
title_full Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah
title_fullStr Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah
title_full_unstemmed Application of close photogrammetry for explosion affected area analysis / Zakiah Abdullah
title_sort application of close photogrammetry for explosion affected area analysis / zakiah abdullah
publishDate 2018
url http://ir.uitm.edu.my/id/eprint/22441/1/TD_ZAKIAH%20ABDULLAH%20AP%20R%2018.5.PDF
http://ir.uitm.edu.my/id/eprint/22441/
_version_ 1685649604993875968
score 13.160551