• Title/Summary/Keyword: 경사식구조물

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Wave runup heights on rubble-mound breakwaters by fixed-type floating breakwaters (수면에 고정된 부유식구조물 설치에 의한 사석경사제에서의 처오름높이 분석)

  • Han, Se-Jong;Yoon, Jae-Seon;Cho, Yong-Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.108-111
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    • 2012
  • 최근에 태풍 매미 등 이상 기후로 인한 기상이변이 빈번히 발생함에 따라 그에 대한 대처방안을 모색하기 위해 2005년 해양수산부에서는 지역 및 해역별 특성을 분석하여 종전 설계기준을 강화하였다. 하지만, 기존에 설계된 항만 구조물의 마루높이 및 피복재 중량 등이 새로 개정된 설계기준에 미치지 못하는 등 안전성에 대한 문제가 발생하고 있으며, 이러한 문제점을 개선하기 위해 기존 방파제를 보강하는 여러 방식이 제안되고 있다. 그 중 부유식방파제는 해수의 소통을 방해하지 않는 친환경적인 구조물로써, 연약지반에 시공이 가능하고 시공 시 오탁이 적게 발생하여 시공이 편하다는 장점을 가지고 있다. 또한 구조물의 해체 및 보강시 건설폐기물을 발생시키지 않는 친환경적인 구조물이기 때문에 새로운 방식의 대체 외곽항만구조물로 관심을 받고 있다. 이에, 본 연구에서는 사석경사제 전면에 부유식구조물을 설치하여 방파제 보강하는 방안을 제시하고자, 부유식구조물을 통과한 파랑이 사석경사제와 만나 발생하는 처오름높이를 분석하였다. 본 수치모의에서는 유체의 점성 및 난류특성을 포함하고 있는 Navier-Stokes 방정식을 그대로 해석하는 2차원 수치파동수조(CADMAS-SURF)를 이용하여 수치 모의을 수행하였다. 부유식구조물은 불투수성구조물로 수면에 고정시키는 방식을 적용하여 사석경사제의 전면에 설치하였으며, 고정된 부유식구조물의 흘수심을 변화시켜 사석경사제에서의 처오름높이를 산정하였다.

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Empirical Formula for Wave Runup of Rubble-Mound Structure Covered by Tetrapods: 1:1.5 Slope Condition (TTP로 피복된 경사식구조물의 처오름높이 산정식: 사면경사 1:1.5 조건)

  • Lee, Jong-In;Bae, Il-Ro
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.35 no.4
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    • pp.845-852
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    • 2015
  • The runup height is an important design parameter to determine the crest elevation of coastal structures and seawalls. In this study, two dimensional wave runup tests for rubble-mound structure covered by tetrapods were conducted. Incident waves at the toe include nonbreaking, breaking and broken random wave conditions. A empirical formula to predict runup elevation of rubble-mound structure with 1:1.5 front slope was proposed on the basis of physical model test results using a surf similarity parameter. The test results from this study were compared with those from van der Meer and Stam(1992).

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.

Experimental Study for Downfall Pressure on the Floor behind Rubble-Mound Structure by Wave Overtopping: Non-Breaking Condition (월파에 의한 경사식구조물 배후면에 작용하는 낙하파압에 대한 실험적 연구: 비쇄파조건)

  • Lee, Jong-In;Moon, Gang Il;Kim, Young Il
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.34 no.2
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    • pp.27-36
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    • 2022
  • The large uprush could be occurred when the waves hit the coastal structure and this uprush by wave could make the overtopping. The downfall of the wave overtopping water over the structure brought about the vertical impact loads. The vertical impact loads should be evaluated in order to design the pavement behind the crown wall however these loads were still unclear. In this study, the hydraulic model tests for the downfall impact loads by wave overtopping were performed and the various conditions were applied to the tests. The effect of the incident wave condition, the freeboard, the armour crest height and the height of the parapet were investigated. The test results showed that the parapet on the crown wall could reduce the wave overtopping however the inclusion of parapet could lead to the increased downfall wave pressures behind the crown wall. The empirical formulae were proposed for evaluating the maximum downfall pressures behind the crown wall of rubble mound structure.

Empirical Formula for Wave Runup of Rubble-Mound Structure Covered by Tetrapods: Effects of Front Slope and Armour Layer Thickness (TTP로 피복된 경사식구조물의 처오름높이 산정식: 사면경사 및 피복층 두께 효과)

  • Lee, Jong-In;Bae, Il-Ro
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.35 no.5
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    • pp.1051-1059
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    • 2015
  • Wave runup is one of the most important factors affecting the design of coastal structure exposed to wave attack. In this study, two dimensional laboratory tests were conducted under the different random wave conditions and structure configurations to develop a formula to predict runup heights. Rubble-mound structure consisted of tetrapod armour blocks with 1:1.5 and 1:2 slopes. The relative water depths (the ratio of the significant wave height to water depth at the toe) ranged from 0.14 to 0.56. The formula proposed here is applicable to surf similarity parameter ranging from 2 to 6. Runup heights on 1:2 slope were higher than those on 1:1.5 slope. Runup heights were reduced by 5% when the armour layer thickness increased two times.

Experiments for Wave Velocity Distribution in front of Composite Structure by Incident Wave Angles (입사각에 따른 혼성식구조물 전면의 유속분포 실험)

  • Lee, Jong-In;Moon, Gang Il;Lim, Ho Seok
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.39 no.6
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    • pp.759-768
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    • 2019
  • The extended Tanimoto formula has been widely used to estimate the stability for the toe protection of the composite structure. However, the extended Tanimoto formula usually over-estimates armor weight when the incident waves approach the structure obliquely because the formula incident originally considered the normally incident wave cases. In this study, three-dimensional hydraulic model experiments were conducted to investigate the horizontal wave velocity under monochromatic and random wave conditions to investigate the prediction capability of the extended Tanimoto formula under the different incident wave angle conditions. The maximum horizontal wave velocity was measured near the toe for the normally incident wave condition. In the case of obliquely incident waves, the maximum horizontal wave velocity was measured under the stem wave generation condition. The results of the experiments showed a good agreement with the results by Takahashi et al.

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.

Experimental Study of Mean Wave Overtopping for Rubble-Mound Structure (경사식구조물의 평균 월파량 실험연구)

  • Mun, Gang Il;Bae, Il Ro;Ma, Seung Ah;Lee, Jong In
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.304-304
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    • 2020
  • 항만구조물의 방파제 또는 방파호안의 마루높이는 배후지역의 활용도에 따라 내습파의 월파로 인한 전달파 또는 월파량에 의해 결정되기 때문에 월파량산정은 항만구조물을 설계함에 있어서 주요한 설계인자이다. 그동안 국내에서는 항만구조물 설계시 주로 외국의 기준이나 기법을 활용하고 있는 실정이다. 국내 항만설계기준에서는 Goda도표를 이용하여 직립제 및 방파호안에 대한 월파량 산정방법을 제시하고 있으나, 도표축이 log로 되어 있어 내삽 또는 외삽시 사용자에 따라 월파량 차이가 발생할 수 있다. 국내의 해역특성 및 최근 설계동향을 반영한 월파량 산정식의 개발이 필요하고, 동일조건에 대한 동일한 월파량 산정결과가 도출될 수 있어야 한다. 최근의 대표 연구성과인 EurOtop(2007)과 같이 지수함수의 형태로 월파량 산정식을 제시하고자 한다. 경사식구조물의 평균월파량 산정식 도출을 위해 적용한 구조물 위치에서의 수심(dt)은 0.40m, 0.55m, 0.70m 이다. 적용수심을 서로 다르게 한 것은 기존의 대부분의 연구에서 적용하지 않았던 구조물 위치에서의 쇄파조건을 고려하기 위한 것이다. 실험파는 Bretschneider-Mitsuyasu 주파수 스펙트럼을 사용한 불규칙파를 적용하였다. 본 연구에서는 주 피복재로 TTP를 대상으로 하였고, 주기 및 파고를 다양한 조건에서 수리실험을 수행하였다. 본 연구의 실험결과는 월파량 계측을 통해 분석된 평균 월파량을 적절한 산정식으로 나타내기 위해 EurOtop(2007)의 기존 월파량 산정식 형태에 대입하여 비교하여 분석하였다. 따라서, 본 논문은 월파량 산정식 제시를 통해 보다 합리적인 항만구조물의 마루높이 산정이 가능하게 하고, 또한 월파량 산정과 관련된 실험자료 구축을 통해 신뢰성해석 자료 및 수치모형의 검증 자료로 활용될 수 있을 것으로 판단된다.

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Wave Overtopping Formula for Impulsive and Non-Impulsive Wave Conditions against Vertical Wall (충격파 및 비충격파 조건에서 직립식구조물의 월파량산정식)

  • Kim, Young-Taek;Lee, Jong-In
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.27 no.3
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    • pp.175-181
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    • 2015
  • In this study, two dimensional wave overtopping tests for vertical wall were performed and overtopping formulas were suggested for impulsive and non-impulsive wave conditions. The test results from this study were compared with those from EurOtop(2007). The wave overtopping formulas were derived and suggested considering the recent research trends, while the existing method used the diagram. The wave overtopping formulas have the form of exponential and power functions using non-dimensional variables for wave overtopping and freeboard heights for non-impulsive and impulsive condition, respectively. The wave overtopping formula and effective parameters for inclined superstructure were also suggested. It is analyzed that the locations of inclined superstructure do not have the significant effects on wave overtopping, that is, the wave overtopping rate were almost same for each locations.

Hydraulic experiments on wave amplification at concave corner for rubble mound structures (경사식구조물 오목부 구간의 파랑증폭 실험)

  • Kim, Young-Taek;Ahn, Chang-Hyun;Lee, Jong-In
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.6
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    • pp.3074-3080
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    • 2013
  • Amplification of wave height at concave corner was investigated by three dimensional hydraulic tests. A typical rubble mound structure was tested with two-layer Tetrapod and the slope of 1:1.5. The irregular waves with Bretschneider-Mitsuyasu spectrum were applied to the tests. The center angles of concave corner were 120 degree, 140 degree and 160 degree. According to the test results, the maximum wave height amplification ratio at concave corner was about 1.5 times of incident wave height among the all test conditions, and the W-shaped wave height distribution was shown.