• Title/Summary/Keyword: Seahawk

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Coastal Erosion Time-series Analysis of the Littoral Cell GW36 in Gangwon Using Seahawk Airborne Bathymetric LiDAR Data (씨호크 항공수심라이다 데이터를 활용한 연안침식 시계열 분석 - 강원도 표사계 GW36을 중심으로 -)

  • Lee, Jaebin;Kim, Jiyoung;Kim, Gahyun;Hur, Hyunsoo;Wie, Gwangjae
    • Korean Journal of Remote Sensing
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    • v.38 no.6_1
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    • pp.1527-1539
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    • 2022
  • As coastal erosion of the east coast is accelerating, the need for scientific and quantitative coastal erosion monitoring technology for a wide area increases. The traditional method for observing changes in the coast was precision monitoring based on field surveys, but it can only be applied to a small area. The airborne bathymetric Light Detection And Ranging (LiDAR) system is a technology that enables economical surveying of coastal and seabed topography in a wide area. In particular, it has the advantage of constructing topographical data for the intertidal zone, which is a major area of interest for coastal erosion monitoring. In this study, time series analysis of coastal seabed topography acquired in Aug, 2021 and Mar. 2022 on the littoral cell GW36 in Gangwon was performed using the Seahawk Airborne Bathymetric LiDAR (ABL) system. We quantitatively monitored the topographical changes by measuring the baseline length, shoreline and Digital Terrain Model (DTM) changes. Through this, the effectiveness of the ABL surveying technique was confirmed in coastal erosion monitoring.

Waveform Decomposition of Airborne Bathymetric LiDAR by Estimating Potential Peaks (잠재적 피크 추정을 통한 항공수심라이다 웨이브폼 분해)

  • Kim, Hyejin;Lee, Jaebin;Kim, Yongil;Wie, Gwangjae
    • Korean Journal of Remote Sensing
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    • v.37 no.6_1
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    • pp.1709-1718
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    • 2021
  • The waveform data of the Airborne Bathymetric LiDAR (ABL; LiDAR: Light Detection And Ranging) system provides data with improved accuracy, resolution, and reliability compared to the discrete-return data, and increases the user's control over data processing. Furthermore, we are able to extract additional information about the return signal. Waveform decomposition is a technique that separates each echo from the received waveform with a mixture of water surface and seabed reflections, waterbody backscattering, and various noises. In this study, a new waveform decomposition technique based on a Gaussian model was developed to improve the point extraction performance from the ABL waveform data. In the existing waveform decomposition techniques, the number of decomposed echoes and decomposition performance depend on the peak detection results because they use waveform peaks as initial values. However, in the study, we improved the approximation accuracy of the decomposition model by adding the estimated potential peak candidates to the initial peaks. As a result of an experiment using waveform data obtained from the East Coast from the Seahawk system, the precision of the decomposition model was improved by about 37% based on evaluating RMSE compared to the Gaussian decomposition method.

The Kingdome Implosion (미국 Kingdome 구조물 발파해체사례)

  • 대한화약발파공학회
    • Explosives and Blasting
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    • v.18 no.4
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    • pp.61-68
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    • 2000
  • 본 기사는 2000년 3월 26일 미국 시애틀 소재 Kingdome 체육관 시설을 발파해체공법을 이용하여 해체한 사례로서 The Journal of Explosives Engineering(v.17 n.5, 2000)에 기고한 Dr. Douglas A. Anderson (Senior Consultant, West Chester, PA office of Schnabel Engineering Associates, Inc.)의 글을 옮긴 것이다. Kingdome 구조물의 해체와 해제 후 Seahawk Stadium 건설의 책임을 맡은 주계약자는 Turner Construction 회사이며 발파해체 사전준비 및 사후처리의 택일은 Aman Environment사, 발파해체 설계 및 시공은 CDI사, 주위 주요 구조물에 대한 영향평가 및 진동계측은 Schnabel Engineering Associates사가 맡아 수행하였다. 이 건물은 세계에서 가장 큰 규모의 쉘 콘크리트 돔 구조로 되어 있으며, 주위에 주요 구조물들이 위치하고 있고 특히 이 지역에 과거 발생했던 지진으로 인하여 주민들이 지반진동에 대한 피해나 또는 지진을 유발하수도 있다는 위험 가능성에 매우 예민하여 관심이 높았던 해체사례이다. 이 구조물을 한번에 붕괴시킬 경우 지반에 25,000톤의 중량이 충격으로 작용할 수 있으므로 충격을 최소화하기 위한 방법에 초점을 맞추어 설계되었으며 5,905개의 천공에 4,728파운드(약 2,145kg)의 폭약이 사용되었고 도폭선을 이용하여 기폭시켰다. 사용된 도폭선의 길이는 약 37.9 Km에 달하였다. 발파해체 기사에 나타나 있듯이 주위에 피해를 주지 않고 성공적으로 수행되었다.

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