• Title/Summary/Keyword: 마루높이

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The Stability Evaluation of River Embankment for a Piping Phenomenon (하천제방의 세굴에 대한 안정성 연구)

  • Lee, Song;Park, Hyung-Kyu
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.7 no.3
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    • pp.175-181
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    • 2003
  • In this reseach, a seepage test is carried out for three kinds of soil using a upward seepage equipment. Reliability about the existing method of pipining investigation were verified making an estimate of the critical velocity, the critical hydraulic gradient, and hydraulic conductivity and so on. Also, sensitive analyses were carried out using Plaxis that is FEM Program about design factors of scour. The height of core had a big infulence on the hydraulic gradient of the embankment's lower part in the result of sensitive anaylsis. Also, second only to the height of core, and the slope of embankment, the width of crest had influence on scour. However, the change of hydraulic gradient in the effluent gateway had a little influence on the crest width of core. Using these results of sensitive analysis on designing, hydraulic gradient in the effluence gateway turned out to be reducing by altering design factors that change of sensitiveness is big, in case of the hydraulic gradient bigger than the standard hydraulic gradient.

Reliability Analysis of the Expected Overtopping Probability of Rubble Mound Breakwater (마루높이 설정을 위한 월파확률의 신뢰성 해석)

  • Kweon, Hyuck-Min;Suh, Kyung-Doug;Lee, Young-Yeol
    • Proceedings of the Korean Society of Coastal and Ocean Engineers Conference
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    • 2003.08a
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    • pp.376-381
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    • 2003
  • The reliability analysis of overtopping probability is proposed. In order to estimate the expected overtopping probability of the rubble mound breakwater, the experimental results of individual wave runup height is applied for the analysis of irregular wave system. The joint distribution of wave heights and periods is used for the input data of runup calculation because the runup height depends on the wave height and period. The runup heights during the one event that the design wave attacks the rubble mound breakwater extend to the one life cycle of 60 years. Utilizing the Monte-Carlo method, the one life cycle is tried more about 60 times for obtaining the expected value of overtopping probability. It is found that the inclusion of the variability of wave tidal and wave steepness has great influence on the computation of the expected overtopping probability of rubble mound breakwater. The previous design disregarding the tidal fluctuation largely overestimates or underestimates the expected overtopping probability depending on tidal range and wave steepness.

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Reliability Analysis of Wave Overtopping over a Seawall (호안에서의 월파에 대한 신뢰성 해석)

  • Oh Jung-Eun;Suh Kyung-Duck;Kweon Hyuck-Min
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.18 no.1
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    • pp.69-83
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    • 2006
  • A Level 3 reliability analysis has been performed for wave run-up and overtopping on a sloping seawall. A Monte-Carlo simulation was performed considering the uncertainties of various variables affecting the wave overtopping event. The wave overtopping probability was evaluated from the individual wave run-up by using the wave-by-wave method, while the mean overtopping rate was calculated directly from the significant wave height. Using the calculated overtopping probability and mean overtopping rate, the maximum overtopping volume was also calculated on the assumption of two-parameter Weibull distribution of individual wave overtopping volume. In addition, by changing wave directions, depths, and structure slopes, their effects on wave overtopping were analyzed. It was found that, when the variability of wave directions is considered or the water depth decreases toward shore, wave height become smaller due to wave refraction, which yields smaller mean overtopping rate, overtopping probability and maximum overtopping volume. For the same mean overtopping rate, the expected overtopping probability increases and the expected maximum overtopping volume decreases as approaching toward shore inside surfzone.

Flood Risk Analysis by Structure Effects in Interior Floodplain (제내지 구조물 영향에 따른 홍수위험분석)

  • Kim, Jong-Suk;Yoon, Sun-Kwon;Moon, Young-Il;Kwon, Hyun-Han
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1659-1663
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    • 2008
  • 홍수 범람에 의한 피해를 경감시키기 위해서는 하천관리에 필요한 제반 수리 수문 자료를 지속적으로 축적함으로써 하천관리의 과학화를 도모해야 하며 효율적인 홍수피해 경감을 위한 체계를 구축해야 한다. 이를 위한 기초 자료로써 범람 홍수의 거동특성을 파악하는 것은 무엇보다도 우선되어야 한다. 본 연구에서는 극한 홍수의 발생으로 제방의 붕괴위험이 증가되는 상황을 고려하여 과거범람 지역 조사 및 분석, 제방마루 높이와 여유고 평가, 무차원 소류력에 의한 취약지점 분석 및 제방의 월류위험도 분석을 통해 홍수재해에 대한 취약지점 선정 및 제내외지의 홍수특성 분석 방법을 제안하여 현실적인 하천방재계획 수립에 기여하고자 하였다.

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Characteristics of Wave Overtopping with Flared Shaped Protection Wall (2중곡면 방파제의 곡면특성에 따른 월파제어효과)

  • Kim, Mun Jeong;Lee, Geun Il;Lee, Seong Dae
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.218-218
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    • 2011
  • 2중곡면 반파공의 월파 특성을 검토하기 위하여 입사파고 및 주기가 각각 다른 불규칙파를 대상으로 수리실험을 실시하였으며, 2중곡면 반파공과 직립형 구조물에 대해 동일한 조건으로 실험하여 이를 명확히 하였다. 특히 2중곡면 상부의 곡률반경에 따라 외해측으로 되돌리는 파랑의 비말효과에서 큰 차이가 있을 것에 착안하여 상부곡면부의 곡률반경이 증가한 정상 2중곡면 반파공(FSW)과 상부곡면부의 곡률반경이 감소한 역 2중곡면 반파공(IFSW)에 대해 실험을 수행하였다. 그리고 2중곡면 원호 크기의 비 B/D=0, 20%, 40%, 60% 및 80%인 경우에 대해서도 월파특성을 비교 검토하여 다음과 같은 결론를 얻었다. 1. 2중곡면 원호 크기의 비 B/D가 증가할수록 월파저지 효과가 개선됨을 확인 하였으며 최대 B/D가 0.8인 경우 0.2에 비해 50% 이상 월파유량이 감소하여 B/D의 변동에 따른 월파저지특성을 확인하였다. 2. 역2중곡면 반파공(IFSW)의 실험결과 기존 정상2중곡면 반파공(FSW)에 비하여 20%이상 월파량이 감소하고 있음을 알 수 있었으며 이는 2중곡면 상부측의 곡률 반경이 증가함에 따른 기하학적 특성에 의해 외해측으로의 되돌림 파랑(수괴)이 증가한 것으로 판단된다. 3. 동일한 마루높이에 대해 직립형 호안에 의한 월파량 비교결과 역 2중곡면 반파공(IFSW)의 경우 최대 80%이상의 월파량 저감 효과가 나타나는 것으로 검토되었다. 4. 월파저지의 측면에서 2중 곡면공에 비해 역2중 곡면공이 우수한 것으로 예측되었으나 2중곡면 반파공의 소파원리가 반파공의 원호내에서 쇄파를 야기하여 파에너지를 소멸하는 것이므로 쇄파를 유도하는 과정에서 충격쇄파압의 발생이 예측되는 바 이에 대한 계속적인 연구가 필요한 것으로 판단된다.

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Reliability Analysis of Sloped-Coastal Structures with Sea-Level Rise (해수면 상승에 따른 경사식 해안 구조물의 신뢰성 해석)

  • Lee, Cheol-Eung
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.20 no.1
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    • pp.42-48
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    • 2008
  • A system of risk assessment is developed by using the reliability analysis which evaluate quantitatively both stability and performance of sloped-coastal structures according to several scenarios of sea-level rise. By using reliability functions on armor unit and run-up, the probabilities of failure can be straightforwardly calculated with respect to several design parameters such as nominal diameter of armor unit, slope of coastal structure, and freeboard height. By comparing the results before and after sea-level rise, it may be possible to exactly assess some ranges of decrease of stability and performance of sloped-coastal structure with respect to sea-level rise. Therefore, it can also be possible to make a decision which parameters should be repaired or strengthened in order to maintain the original stability and performance of sloped-coastal structures. Finally, The present results may be useful for designing some kinds of new sloped-coastal structures including the effect of sea-level rise.

Estimation for Maximum Individual Wave Overtopping of a Rubble Mound Structure under Non-breaking Conditions (비쇄파조건에서 경사식구조물의 개별 최대월파량 산정)

  • Lee, Jong-In;Jeong, Jeong Kuk
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.41 no.6
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    • pp.663-673
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    • 2021
  • Normally, allowable mean overtopping discharge is used as a design parameter for coastal structures. The crest elevation of a structure must ensure wave overtopping discharge within acceptable limits for structural safety and the safety of pedestrians, vehicles, operations, and so on. Some researchers have alternatively proposed using the maximum individual wave overtopping volumes as design criteria during a design storm, since these can provide a better design measure than the mean overtopping rate. This study contributes to the knowledge on maximum individual overtopping volumes in Rayleigh-distributed wave conditions. Two-dimensional physical model tests on typical rubble mound structure geometries were performed, and the new measurement method for individual overtopping was adopted. An empirical formula was proposed to predict the maximum individual overtopping volumes based on the mean overtopping rate, and the reduction effects by the armor crest width on the mean wave overtopping discharge were assessed.

Physical Model Test for Wave Overtopping for Vertical Seawall with Relatively Steep Bottom Slope for the Impulsive Wave Condition (상대적으로 급한 경사 수심을 갖는 직립식 호안에서 충격파 조건에 대한 월파량 산정 수리실험)

  • Young-Taek Kim;Jong-In Lee
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.35 no.2
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    • pp.33-40
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    • 2023
  • Wave overtopping rate is one of the most important design parameters for coastal structures. In this study, the physical model tests for measuring the wave overtopping have been conducted with the foreshore slope in front of the seawall. The bottom seabed for the coastal road area was fabricated at the wave flume for two areas in the East sea areas. The wave overtopping rate was measured for various water depths and wave conditions in each coastal area. In particular, the impulsive wave conditions were compared with the previous research and the similar trends of wave overtopping was observed. It could be known that the effect of foreshore slope was significant and should be concerned for applying theses formula like EurOtop.

Physical Model Tests for Mean Wave Overtopping Discharge of Rubble-mound Structure Covered by Tetrapods: RC/AC = 1 and cotα = 1.5 Conditions (테트라포드로 피복된 경사식구조물의 평균월파량 산정을 위한 수리모형실험: RC/AC = 1 및 cotα = 1.5 조건)

  • Jong-In Lee;Young-Taek Kim
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.35 no.3
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    • pp.49-56
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    • 2023
  • The allowable mean overtopping discharge is used as a design parameter for coastal structures. The crest elevation of coastal structures should ensure the wave overtopping discharge within acceptable limits for structural safety and the safety of pedestrians, vehicles, operations, and so on. In this study, two-dimensional physical model tests on typical rubble-mound structure geometries were performed and the the mean wave overtopping discharges under various water depth and wave conditions were measrued. The various test conditions were applied to the tests with the change of the wave steepness, relative freeboard and relative wave height. An empirical formula from the experimental data was proposed to predict the mean wave overtopping volumes.

Determination of cross section of composite breakwaters with multiple failure modes and system reliability analysis (다중 파괴모드에 의한 혼성제 케이슨의 단면 산정 및 제체에 대한 시스템 신뢰성 해석)

  • Lee, Cheol-Eung;Kim, Sang-Ug;Park, Dong-Heon
    • Journal of Korea Water Resources Association
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    • v.51 no.9
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    • pp.827-837
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    • 2018
  • The stabilities of sliding and overturning of caisson and bearing capacity of mound against eccentric and inclined loads, which possibly happen to a composite caisson breakwaters, have been analyzed by using the technique of multiple failure modes. In deterministic approach, mathematical functions have been first derived from the ultimate limit state equations. Using those functions, the minimum cross section of caisson can straightforwardly be evaluated. By taking a look into some various deterministic analyses, it has been found that the conflict between failure modes can be occurred, such that the stability of bearing capacity of mound decreased as the stability of sliding increased. Therefore, the multiple failure modes for the composite caisson breakwaters should be taken into account simultaneously even in the process of deterministically evaluating the design cross section of caisson. Meanwhile, the reliability analyses on multiple failure modes have been implemented to the cross section determined by the sliding failure mode. It has been shown that the system failure probabilities of the composite breakwater are very behaved differently according to the variation of incident waves. The failure probabilities of system tend also to increase as the crest freeboards of caisson are heightening. The similar behaviors are taken place in cases that the water depths above mound are deepening. Finally, the results of the first-order modal are quite coincided with those of the second-order modal in all conditions of numerical tests performed in this paper. However, the second-order modal have had higher accuracy than the first-order modal. This is mainly due to that some correlations between failure modes can be properly incorporated in the second-order modal. Nevertheless, the first-order modal can also be easily used only when one of failure probabilities among multiple failure modes is extremely larger than others.