Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station
碩士 === 國立中興大學 === 資訊科學系所 === 94 === The landforms and geologic structure in Taiwan are peculiar, and terrains are easily broken and unstable. Washout and rainstorms occur very frequently during the typhoon season and result in debris flows and landslides in mountain areas. In recent years, the Soil...
Main Authors: | , |
---|---|
Other Authors: | |
Format: | Others |
Language: | zh-TW |
Published: |
2006
|
Online Access: | http://ndltd.ncl.edu.tw/handle/57755631564060865239 |
id |
ndltd-TW-094NCHU5394012 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-TW-094NCHU53940122016-05-25T04:14:22Z http://ndltd.ncl.edu.tw/handle/57755631564060865239 Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station 影像處理技術於土石流流速判釋之可行性研究-以神木觀測示範站為例 Hsiu-Yi Ko 柯秀宜 碩士 國立中興大學 資訊科學系所 94 The landforms and geologic structure in Taiwan are peculiar, and terrains are easily broken and unstable. Washout and rainstorms occur very frequently during the typhoon season and result in debris flows and landslides in mountain areas. In recent years, the Soil and Water Conservation Bureau has devoted much effort on monitoring and investigation for the debris flows. Several monitoring stations and equipments were set up to observe, receive and transfer data to disaster management center. The real-time image data grasped by CCD camera is then transferred back to the SWCB via satellite communication network. It allows relevant personnel to grasp the real-time spot situation of every monitoring station during the typhoon season. Event happened in Shen-Mu Station, Nantou county, on July, second, 2004 is analyzed in this thesis. It demonstrated that human eyes can clearly observe the motion of debris flow, but the velocity must be calculated based on the flowing distance of water manaally. In order to strengthen the value of CCD camera images and applications of digital image processing, this research built a set of the rules to evaluate the velocity of debris flow. Technologies include feature extraction, image enhancement, spatial filtering and cell analysis are employed to build up the mechanism responsible for velocity interpretation. The result of velocity analysis can be taken as the reference and the evaluation of follow-up researches. Po-Whei Huang 黃博惠 2006 學位論文 ; thesis 50 zh-TW |
collection |
NDLTD |
language |
zh-TW |
format |
Others
|
sources |
NDLTD |
description |
碩士 === 國立中興大學 === 資訊科學系所 === 94 === The landforms and geologic structure in Taiwan are peculiar, and terrains are easily broken and unstable. Washout and rainstorms occur very frequently during the typhoon season and result in debris flows and landslides in mountain areas. In recent years, the Soil and Water Conservation Bureau has devoted much effort on monitoring and investigation for the debris flows. Several monitoring stations and equipments were set up to observe, receive and transfer data to disaster management center. The real-time image data grasped by CCD camera is then transferred back to the SWCB via satellite communication network. It allows relevant personnel to grasp the real-time spot situation of every monitoring station during the typhoon season.
Event happened in Shen-Mu Station, Nantou county, on July, second, 2004 is analyzed in this thesis. It demonstrated that human eyes can clearly observe the motion of debris flow, but the velocity must be calculated based on the flowing distance of water manaally.
In order to strengthen the value of CCD camera images and applications of digital image processing, this research built a set of the rules to evaluate the velocity of debris flow. Technologies include feature extraction, image enhancement, spatial filtering and cell analysis are employed to build up the mechanism responsible for velocity interpretation. The result of velocity analysis can be taken as the reference and the evaluation of follow-up researches.
|
author2 |
Po-Whei Huang |
author_facet |
Po-Whei Huang Hsiu-Yi Ko 柯秀宜 |
author |
Hsiu-Yi Ko 柯秀宜 |
spellingShingle |
Hsiu-Yi Ko 柯秀宜 Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station |
author_sort |
Hsiu-Yi Ko |
title |
Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station |
title_short |
Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station |
title_full |
Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station |
title_fullStr |
Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station |
title_full_unstemmed |
Evaluation for the Velocity of Debris Flow through Image Processing Techniques:A Case Study on Shen- Mu Monitoring Station |
title_sort |
evaluation for the velocity of debris flow through image processing techniques:a case study on shen- mu monitoring station |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/57755631564060865239 |
work_keys_str_mv |
AT hsiuyiko evaluationforthevelocityofdebrisflowthroughimageprocessingtechniquesacasestudyonshenmumonitoringstation AT kēxiùyí evaluationforthevelocityofdebrisflowthroughimageprocessingtechniquesacasestudyonshenmumonitoringstation AT hsiuyiko yǐngxiàngchùlǐjìshùyútǔshíliúliúsùpànshìzhīkěxíngxìngyánjiūyǐshénmùguāncèshìfànzhànwèilì AT kēxiùyí yǐngxiàngchùlǐjìshùyútǔshíliúliúsùpànshìzhīkěxíngxìngyánjiūyǐshénmùguāncèshìfànzhànwèilì |
_version_ |
1718281400778489856 |