• Title/Summary/Keyword: Propagation of Tsunami

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Development of Finite Difference Model for Tsunami Propagation (지진해일 전파모의를 위한 유한차분모형 개발)

  • Ahn, Seong-Ho;Ha, Tae-Min;Cho, Yong-Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.52-56
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    • 2010
  • 본 연구에서는 지진해일의 전파 과정을 모의함에 있어 선형 천수방정식의 수치분산을 이용하는 기법이 아닌 선형 Boussinesq 방정식을 직접 차분하는 유한차분기법을 제안하였다. 지배방적식과 차분식의 일치성을 해석하기 위해 이산화 오차를 확인하고, 수치해의 안정적 수렴여부를 판단하기 위해 Von neumann 안정성 해석을 수행하였다. 또한 기법의 정확성을 검증하기 위하여 Gauss 분포의 초기 자유수면변위를 갖는 문제에 적용하여 선형 Boussinesq 방정식의 해석해와 비교하였다. 그 결과 기존의 선형 천수방정식을 차분화한 수치모형에 비하여 정확한 결과를 제공하였고 분산보정기법을 이용한 수치모형과 동일한 정확도를 보였으나 본 수치모형을 이용했을 때 비교적 넓은 범위의 조건에서 정확도 높은 결과를 제공하였다.

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Study on Numerical Model for Tsunami Propagation Using the Spherical Coordinate System (구면좌표계를 이용한 지진해일 전파모의를 위한 연구)

  • Ha, Tae-Min;Kim, Sung-Min;Lee, Seung-Oh;Cho, Yong-Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.2105-2108
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    • 2007
  • 지진해일이 발생하여 먼 거리를 전파할 때 코리올리스 힘이 지진해일의 거동에 매우 큰 영향을 준다. 또한 지진해일은 파장에 비해 파고가 작은 장파이기 때문에 먼 거리를 이동하는 지진해일의 해석에는 코리올리스 효과가 반영된 선형 천수방정식을 사용하는 것이 적절하다. 본 연구에서는 구면좌표계에서 유한차분기법을 사용하여 지진해일의 거동을 모의하였다. 대상 지진해일은 1983년 동해 중부 지진해일이다. 관측된 결과를 본 연구에서의 모의 결과와 비교하였다.

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Bore-induced Dynamic Responses of Revetment and Soil Foundation (단파작용에 따른 호안과 지반의 동적응답 해석)

  • Lee, Kwang-Ho;Yuk, Seung-Min;Kim, Do-Sam;Kim, Tae-Hyeong;Lee, Yoon-Doo
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.27 no.1
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    • pp.63-77
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    • 2015
  • Tsunami take away life, wash houses away and bring devastation to social infrastructures such as breakwaters, bridges and ports. The coastal structure targeted object in this study can be damaged mainly by the wave pressure together with foundation ground failure due to scouring and liquefaction. The increase of excess pore water pressure composed of oscillatory and residual components may reduce effective stress and, consequently, the seabed may liquefy. If liquefaction occurs in the seabed, the structure may sink, overturn, and eventually increase the failure potential. In this study, the bore was generated using the water level difference, its propagation and interaction with a vertical revetment analyzed by applying 2D-NIT(Two-Dimensional Numerical Irregular wave Tank) model, and the dynamic wave pressure acting on the seabed and the surface boundary of the vertical revetment estimated by this model. Simulation results were used as input data in a finite element computer program(FLIP) for elasto-plastic seabed response. The time and spatial variations in excess pore water pressure ratio, effective stress path, seabed deformation, structure displacement and liquefaction potential in the seabed were estimated. From the results of the analysis, the stability of the vertical revetment was evaluated.

Energy-efficient intrusion detection system for secure acoustic communication in under water sensor networks

  • N. Nithiyanandam;C. Mahesh;S.P. Raja;S. Jeyapriyanga;T. Selva Banu Priya
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.17 no.6
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    • pp.1706-1727
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    • 2023
  • Under Water Sensor Networks (UWSN) has gained attraction among various communities for its potential applications like acoustic monitoring, 3D mapping, tsunami detection, oil spill monitoring, and target tracking. Unlike terrestrial sensor networks, it performs an acoustic mode of communication to carry out collaborative tasks. Typically, surface sink nodes are deployed for aggregating acoustic phenomena collected from the underwater sensors through the multi-hop path. In this context, UWSN is constrained by factors such as lower bandwidth, high propagation delay, and limited battery power. Also, the vulnerabilities to compromise the aquatic environment are in growing numbers. The paper proposes an Energy-Efficient standalone Intrusion Detection System (EEIDS) to entail the acoustic environment against malicious attacks and improve the network lifetime. In EEIDS, attributes such as node ID, residual energy, and depth value are verified for forwarding the data packets in a secured path and stabilizing the nodes' energy levels. Initially, for each node, three agents are modeled to perform the assigned responsibilities. For instance, ID agent verifies the node's authentication of the node, EN agent checks for the residual energy of the node, and D agent substantiates the depth value of each node. Next, the classification of normal and malevolent nodes is performed by determining the score for each node. Furthermore, the proposed system utilizes the sheep-flock heredity algorithm to validate the input attributes using the optimized probability values stored in the training dataset. This assists in finding out the best-fit motes in the UWSN. Significantly, the proposed system detects and isolates the malicious nodes with tampered credentials and nodes with lower residual energy in minimal time. The parameters such as the time taken for malicious node detection, network lifetime, energy consumption, and delivery ratio are investigated using simulation tools. Comparison results show that the proposed EEIDS outperforms the existing acoustic security systems.

Tsunami Propagation Model Using Boussinesq Equation (Boussinesq 방정식을 이용한 지진해일 전파모형)

  • Song, Min Jong;Ha, Tae Min;Cho, Yong-Sik
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.57-57
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    • 2011
  • 지진해일은 진행속도가 빠르고 파장이 길며 파형의 변화 없이 먼 거리를 진행 할 수 있어 주변지역은 물론 멀리 떨어진 지역에도 심한 범람피해를 야기시킨다. 지진해일의 일반적인 특징으로 장파와 단파가 합성되어 있고 먼 거리를 전파할 경우 분산효과의 역할이 중요하게 된다. 특히 우리나라의 동해안에 영향을 주는 지진해일은 단주기파 성분이 강하고 파장에 비해 먼 거리를 전파하기에 분산을 고려하는 선형 Boussinesq 방정식을 지배방정식으로 사용하는 것이 바람직하다. 하지만 지금까지의 지진해일 전파모의를 위한 모형은 선형 Boussinesq 방정식의 복잡한 계산과 계산시간이 길다는 단점 때문에 선형 천수방정식을 지배방정식으로 사용하고 분산효과는 수치분산을 이용하여 고려해왔다. 지진해일 해석 시 일반적으로 사용되어 오던 기존의 leap-frog 유한차분 모형(Imamura et al., 1988; 조용식, 1996)은 지배방정식으로 선형 천수방정식을 사용하고 파의 분산효과는 수치분산을 이용하여 고려하므로 정해진 시간 간격에 대해 수심에 따라 격자 간격을 적절히 선택해야 하는데 수심이 복잡하게 변하는 경우 격자간격 조정이 불가능하여 분산효과를 정도 높게 고려할 수 없다. 이 문제점을 해결하기 위하여 윤성범 등(2004)은 파동방정식의 인위적인 분산항을 이용하여 Boussinesq 방정식의 분산효과를 고려할 수 있는 능동적인 분산보정기법을 제안하였고 Cho et al.(2007)는 일정한 수심에서 수치적인 분산오차가 Boussinesq 방정식의 물리적인 분산항을 대체하도록 수심, 격자 간격 및 계산 시간 간격 사이의 관계식을 유도하고 Boussinesq 방정식의 분산항과 일치하는 수치분산을 이용하여 실용적인 분산보정기법을 개발하였다. 이에 Ahn(2010)은 현재 컴퓨터의 계산 능력이 향상되어 선형 Boussinesq 방정식을 직접 차분하여 계산하는데 무리가 없다고 판단하여 선형 Boussinesq 방정식을 직접 차분한 모형을 개발하였다. 본 연구에서는 기존의 원해 지진해일 전파모의에 이용되어왔던 선형 천수방정식에 수치분산을 고려한 모형 대신 선형 Boussinesq 방정식의 유한차분 모형을 제안하였으며 기존의 선형 Boussinesq 방정식 모형의 격자와 수심간의 제약을 없애기 위해 차분 기법을 달리 한 2차 정확도의 유한차분 모형을 제안하였다. 검증을 위하여 선형 Boussinesq 방정식의 해석해(Carrier, 1991)와 비교하였다.

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Generation and Growth of Long Ocean Waves along the West Coast of Korea in March 2007 (2007년 3월 한국 서해안에 발생한 해양장파의 형성과 성장과정)

  • Choi, Byoung-Ju;Park, Yong-Woo;Kwon, Kyung-Man
    • Ocean and Polar Research
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    • v.30 no.4
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    • pp.453-466
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    • 2008
  • In order to examine the generation mechanism of long ocean waves along the west coast of Korea and to understand the amplification process of the long ocean waves, sea level, atmospheric pressure and wind data observed every minute from 2007 March 29 to 2007 April 1 were analyzed and onedimensional numerical ocean model experiments were performed. An atmospheric pressure jump propagated southeastward from Backryungdo to Yeonggwang along the west coast of Korea with speed of $13{\sim}27\;m/s$ between 2007 March 30 23:00 and 2007 April 1 1:30. Average magnitude of pressure jump was 4.2 hPa. As a moving atmospheric jump propagated from north to south along the coast, long ocean waves were generated and the sea level abnormally rose or fell at Anheung, Kunsan, Wido and Yeonggwang. Average amplitude of sea level rise (or fall) was about 113.6 cm. In a one-dimensional numerical ocean model, nonlinear shallow water equations were numerically integrated and a moving atmospheric pressure jump with traveling speed of 24 m/s was used as an external force. While the atmospheric pressure jump travels over 60 m depth ocean, a long ocean wave is generated. Because the propagation speed of the atmospheric jump is almost equal to that of the long ocean wave, Proudman resonance occurs and the long ocean wave amplifies. As the atmospheric pressure jump moves into the coastal area shallower than 60 m, the speed of the long ocean wave decreases and Proudman resonance effect decreases. However, the amplitude of the long ocean wave increases and wave length becomes shorter because of shoaling effect. When the long ocean wave hits the land boundary, amplitude of the long ocean wave drastically amplifies due to reflection. Data analysis and numerical experiments suggest that the southeastward propagation of an atmospheric pressure jump over the shallow ocean, which is a necessary condition for Proudaman resonance, generated the long ocean waves along the west coast of Korea on 2007 March 31 and the ocean waves amplified due to shoaling effect in the coastal area and reflection at the shore.

Numerical Analysis of Wave Transformation of Bore in 2-Dimensional Water Channel and Resultant Wave Loads Acting on 2-Dimensional Vertical Structure (2차원수조내에서 단파의 변형과 구조물에 작용하는 단파파력에 관한 수치해석)

  • Lee, Kwang Ho;Kim, Chang Hoon;Kim, Do Sam;Hwang, Young Tae
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.29 no.5B
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    • pp.473-482
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    • 2009
  • This study numerically discusses wave forces acting on a vertical wall such as breakwaters or revetments, subjected to incident undular or turbulent bores. Due to the complex hydrodynamics of bore, its wave forces have been predicted, mainly through laboratory experiments. Numerical simulations in this paper were carried out by CADMAS-SURF(CDIT, 2001), which is based on Navier-Stokes momentum equations and VOF method (Hirt and Nichols, 1981) for tracking free water surface. Its original source code was also partly revised to generate bore in the numerical water channel. Numerical raw data computed by CADMAS-SURF included great strong spike phenomena that show the abrupt jumps of wave loads. To resolve this undesired noise of raw data, the band-pass filter with the frequency of 5Hz was utilized. The filtered results showed reasonable agreements with the experimental results performed by Matsutomi (1991) and Ramsden (1996). It was confirmed that CADMASSURF can be applied to the design of coastal structures against tsunami bores. In addition, the transformation process and propagation speed of bores in the same 2-d water channel were discussed by the variations of water level for time and space. The numerical results indicated that the propagation speed of bore was changed due to the nonlinear interactions between negative and reflected waves.