• Title/Summary/Keyword: 급한 경사 수심

Search Result 8, Processing Time 0.023 seconds

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
    • /
    • v.35 no.2
    • /
    • pp.33-40
    • /
    • 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.

Hydraulic and Numerical Tests on Wave Overtopping for Vertical Seawall with Relatively Shallow and Steep Sloped Water Depth (상대적으로 수심이 낮고 급한 전면 경사를 갖는 직립식 호안에서의 월파량 산정에 관한 수리 및 수치 실험)

  • Young-Taek, Kim;Hyukjin, Choi;Hwangki, Lee
    • Journal of Korean Society of Coastal and Ocean Engineers
    • /
    • v.34 no.6
    • /
    • pp.258-265
    • /
    • 2022
  • In Korea, the hydraulic model tests for measuring the wave overtopping have been almost conducted with no bottom slope or single slope condition in Korea. In this study, the bottom seabed for the coastal road area was fabricated at the wave flume and the wave overtopping was measured. The overtopping rate was also measured with the numerical modelling by OLAFoam. The measuring data were compared with EurOtop manual. It could be known the the influence of the foreslope in front of the vertical wall was significant and the these effects should be concerned when designing the coastal structures. And also it could be known that OLAFoam could be used to predict the wave overtopping rate for the complex bottom topography.

A numerical study on rip currents at the Haeundae coast changed after the beach nourishment (양빈 후 지형변화에 따른 해운대 이안류 수치모의)

  • Choi, Junwoo
    • Journal of Korea Water Resources Association
    • /
    • v.55 no.9
    • /
    • pp.669-678
    • /
    • 2022
  • The Haeundae beach and coast suffered synthetical dramatic changes especially in the nearshore topography by the beach nourishment project (i.e., 2013-2015). A previous study showed the rip current characteristics were changed according to the topographical change in terms of their magnitudes and likelihoods through numerical simulations using the FUNWAVE model. The magnitude and likelihood of rip currents decreased because the surfzone width decreased just after the beach nourishment. In this study, however, numerical simulations of the Haeundae rip currents were performed by using the 2017- and 2020-surveyed topographies changed for several years after the beach nourishment. From the simulation results using the topographies surveyed before and after the beach nourishment, it was found that the magnitude and likelihood of rip currents increased due to its increasing surfzone width in 2017 and 2020 and they might be increasing larger than those before the beach nourishment.

Effects of Protrusive Obstacles on Boundary Layer Height in Open Channel (개수로의 장애물 돌출이 흐름 경계층고에 미치는 영향)

  • Yoon, Min Woo;Pack, Sang Deog;Park, Sang Yeun;Shin, Seung Sook
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2017.05a
    • /
    • pp.464-464
    • /
    • 2017
  • 경사가 급한 산지하천은 대부분 전석이 산재한 자갈하상으로 되어 있다. 전석은 계곡이나 사면에서 발생한 토석류의 일부로 하천에 유입하여 하류로 이송되는 중에 하상에 퇴적된다. 이후 발생하는 홍수에 따라서 거대 전석은 단속적 이동하기 때문에 하천 흐름을 방해하는 돌출장애물로서 기능하는 경우가 많다. 본 연구에서는 개수로 흐름의 장애를 유발하는 돌출물이 경계층 높이에 어떤 영향을 미치는 지를 파악하기 위하여 장애물 돌출높이의 변화가 경계층고에 미치는 영향을 수리실험으로 조사하였다. 본 연구인 경계층분포 실험은 폭 0.6m, 길이 9m인 순환식 유량공급 개수로에서 진행하였으며 실제 경계층 측정 길이는 폭 0.6m, 최대 길이 1.2m, 수심 0.2m이다. 개수로에 돌출장애물을 부착 후 3차원 유속계를 이용하여 유속을 측정하였다. 유속계의 측정간격은 수로 방향, 폭 방향, 수심방향으로 각각 1cm씩 이동하며 유속 u, v, w를 측정하였으며 이때 흐름의 평균유속은 0.51m/s이다. 실험에 사용된 돌출 장애물의 크기는 가로와 세로는 6cm, 길이 6~10cm인 직육면체 콘크리트이다. 포설된 하상재료의 평균입경은 20.5mm의 강자갈이며 포설된 높이는 평균 20.5mm이다. 실험방법은 개수로 바닥에 돌출장애물을 부착 후 그 하류에서 수심, 유량, 유속, 수온을 측정한다. 또한 하상재료를 포설하고 위와 같은 방법으로 실험을 진행 후 결과를 비교, 분석한다. 본 연구는 결과를 정리하면, 동일한 높이의 돌출장애물이 있을 경우 개수로 유속분포는 자갈하상에서 기울기가 더 급하였다. 돌출 장애물에서 하류로 갈수록 무차원 경계층 두께는 감소하는 경향을 보였으나 자갈하상인 경우에는 진동을 나타내고 있어서 하상의 조도가 경계층 안정에 영향을 미치는 것으로 판단된다. 따라서 자갈하상과 같이 하상의 조도고가 클 때 경계층 변화에 미치는 기구를 파악하는 연구가 필요하다.

  • PDF

A Study on Detailed Bathymetry and Geophysical Characteristics of the Summit of the Dokdo Volcano (독도 화산체 정상부해역의 정밀해저지형 및 지구물리학적 특성 연구)

  • Kim, Chang Hwan;Park, Chan Hong;Lee, Myoung Hoon;Choi, Soon Young;Jou, Hyeong Tae
    • Economic and Environmental Geology
    • /
    • v.45 no.6
    • /
    • pp.685-695
    • /
    • 2012
  • We studied the detailed bathymetry and the geophysical characteristics of the summit of the Dokdo volcano using mutibeam echosounding and geophysical survey data. The bathymetry around the main east and west islets of the Dokdo volcano shows very shallow within about 10 m water depth. From near islets to about 30 m b.s.l., the shallow water area has very steep slope and many irregular sunken rocks. The area from about 30 m to about 80 m b.s.l. shows gentle rises and falls, and less steep slope. The area from 80 m b.s.l. has gradually flat undulation and smooth slope seabaed and is extended to offshore. The main islets of the Dokdo volcano and the rocky sea bottom elongated from the islets might be the residual part of the eroded and collapsed main crater of the Dokdo volcano. The bathymetry and the seafloor image(from backscattering) data show small craters, assumed to be formed by the eruption of later volcanism. The seafloor images propose that, except some areas with shallow sand sedimentary deposits, there are typical rocky bottom such as rocky protrusions and lack of sediments in the main morphology of the survey area. The stepped slopes of the seabed are deduced to be submarine terraces. The several prominent submarine terraces are found at the summit of the Dokdo volcano, suggesting repetition of sea level changes(transgressions and regressions) in the Quaternary. The results of the magnetic anomaly and the analytic signal have a good coherence with other geophysical consequences regarding to the location of the residual crater.

Estimation of Bathymetry Changes using Hyperspectral Measurements -Focused on Haeundae beach- (초미세분광 측정치를 이용한 해저지형 변화산정 - 해운대를 중심으로 -)

  • Yang, Intae;Jo, Young-Heon
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.34 no.4
    • /
    • pp.1335-1342
    • /
    • 2014
  • Shallow water depths were estimated using Compact Airborne Spectrographic Imager (CASI)-1500 and mapped to analyze the bottom bathymetry changes due to the rip currents in Haeundae beach, South Korea for the first time. The depths were estimated empirically using the maximum reflectances from 420nm to 597nm wavelength of CASI and 47 in situ water depth measurements, which were compared with ground-truth bathymetry measurements. The comparisons showed that the RMSE was 1.1m with a correlation coefficient of 0.76. In addition, CASI imagery showed remarkably detailed bottom features, especially those resulting from the rip currents within the beach. Two different channels carved by the rip current were analyzed and characterized with respect to the width and slope compared to surrounding regions. While the west side of the channel showed a wide and gentle slope, the east side of the channel showed a narrow and steep slope. The estimated bathymetry map revealed that the uneven offshore bottom features were related to the transport and accumulation of sediments by the rip current, which reaches hundreds of meters offshore. Accordingly, the accumulated sediments were estimated by adding topography changes compared to the depths of the non-rip current regions. The sediments were accumulated in off channels as much as almost twice the amount of annual sand supplements along the Haeundae beach.

Structural Evolution of the Eastern Margin of Korea: Implications for the Opening of the East Sea (Japan Sea) (한국 동쪽 대륙주변부의 구조적 진화와 동해의 형성)

  • Kim Han-Joon;Jou Hyeong-Tae;Lee Gwang-Hoon;Yoo Hai-Soo;Park Gun-Tae
    • Economic and Environmental Geology
    • /
    • v.39 no.3 s.178
    • /
    • pp.235-253
    • /
    • 2006
  • We interpreted marine seismic profiles in conjunction with swath bathymetric and magnetic data to investigate rifting to breakup processes at the Korean margin leading to the separation of the Japan Arc. The Korean margin is rimmed by fundamental elements of rift architecture comprizing a seaward succession of a rift basin and an uplifted rift flank passing into the slope, typical of a passive continental margin. In the northern part, rifting occurred in the Korea Plateau, a continental fragment extended and partially segmented from the Korean Peninsula, that provided a relatively broader zone of extension resulting in a number of rifts. Two distinguished rift basins (Onnuri and Bandal Basins) in the Korea Plateau we bounded by major synthetic and smaller antithetic faults, creating wide and symmetric profiles. The large-offset border fault zones of these basins have convex dip slopes and demonstrate a zig-zag arrangement along strike. In contrast, the southern margin is engraved along its length with a single narrow rift basin (Hupo Basin) that is an elongated asymmetric half-graben. Rifting at the Korean margin was primarily controlled by normal faulting resulting from extension in the west and southeast directions orthogonal to the inferred line of breakup along the base of the slope rather than strike-slip deformation. Although rifting involved no significant volcanism, the inception of sea floor spreading documents a pronounced volcanic phase which seems to reflect slab-induced asthenospheric upwelling as well as rift-induced convection particularly in the narrow southern margin. We suggest that structural and igneous evolution of the Korean margin can be explained by the processes occurring at the passive continental margin with magmatism intensified by asthenospheric upwelling in a back-arc setting.

Acoustic Characterization of Three Seamounts Located in the Northwest of Marshall Islands, Western Pacific (서태평양 마샬제도 북서쪽에 위치한 세 해저산에 대한 음향상 연구)

  • Lee, Tae-Gook;Lee, Kie-Hwa;Moon, Jai-Woon;Jung, Mee-Sook;Kim, Hyun-Sub;Lee, Sang-Mook
    • Journal of the Korean Geophysical Society
    • /
    • v.7 no.3
    • /
    • pp.193-206
    • /
    • 2004
  • Geophysical data including chirp (3 7 kHz) subbottom profile and detailed bathymetry were obtained over three seamounts in the Ogasawara Fracture Zone (OFZ) of the western Pacific, as a part of manganese crust survey onboard R/V Onnuri in 2003. The OFZ is a 150-km-wide, 600-km-long rift zone, which separates the East Mariana and Pigafetta Basin. The OFZ is unique in that it includes many seamounts (e.g., Magellan Seamounts andseamounts on the Dutton Ridge). The sub-seafloor acoustic echoes obtained near the OFZ were classified into following types on the basis of their characteristics: types I-1(pelagic sediment with parallel or subparallel reflectors), I-2 (pelagic sediment with no internal reflectors), and III-1 (reef build-up complex) on summit; types II-1 and III-2 (basement outcrop) on flank rift zone and upper slope, respectively; type III-3 (slump) on the lower slope and embayment between the flank rift zones; types II-2 (debrite) on the base of slope and basin floor; and types II-3 (turbidite or pelagic sediment) and II-4 (turbidite) on the basin floor. The mass-wasting that produced the complex of type II-2 debrite and III-3 slump on the lower slope and basin may have been caused by (1) strong tensional stress in the OFZ which may cause the numerous fissures or basement faults and (2) complex of the faults on the summit and steep upper slope. The variations in the echo type of pelagic sediment in the summit of seamounts may be related with the changes in the depositional and/or erosional environments. Type I-2 pelagic sediment, which is characterized by a thin and intermittent coverage, was probably deposited at a sheltered area when the current was strong, whereas type I-1 pelagic deposit occurred during a stage of progressive sedimentation.

  • PDF