• Title/Summary/Keyword: trapezoidal open-channel

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Experimental Study on Levee Seepage Considering Dynamic Head in a Trapezoidal Open-Channel (사다리꼴 개수로에서 동수두를 고려한 제방 침투에 관한 실험연구)

  • Im, Dongkyun;Kim, Kyu-Ho
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.29 no.3B
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    • pp.239-245
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    • 2009
  • Levees, the hydro-engineering structure, are similar to earth dams in aspects of shape and structure. However, they are different from earth dams in the external force conditions. As a levee is the structure that is complexly affected by the flow and the water stage in the river, it may be unreasonable to analyze the seepage safety as previous studies derived from the neglect of river flow. In this study, an experiment was conducted to investigate flow structures in a trapezoidal open-channel and the influence of the channel flow on the seepage through a levee. Flow structures in a trapezoidal open-channel were distinguished from a rectangular open-channel such as velocity and bottom shear stress distributions. In case with the flow velocity of 0.5 m/s, seepage water heads were higher 10 percent as compared with the stagnant case. This result is caused by dynamic heads, secondary currents, turbulent fluctuation forces, and various physical factors. It is suggested that external force boundary considered in terms of the flow as well as the water stage is proper to seepage analyses.

Wall-roughness effects of trapezoidal ribs on the flow of open channel (개수로 흐름에서 사다리꼴 돌출줄눈의 벽면조도 효과)

  • Shin, Seung Sook;Park, Sang Deog;Park, Ho Kook
    • Journal of Korea Water Resources Association
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    • v.52 no.4
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    • pp.255-264
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    • 2019
  • The trapezoidal ribs had been installed in the retaining wall in order to reduce to flood damage in the impingement of mountain rivers. In this study, experiments in open channel with the trapezoidal ribs on sidewall were conducted to evaluate the effect of flow resistance by the trapezoidal shape. The hydraulic flow characteristics according to the flow rates were surveyed where the wall roughness is k-type that dimensionless spacings, ${\lambda}_{nv}$, are 6, 9, and 12. The flow-resistance factors such as roughness and friction coefficients increased generally with increase of the spacing of ribs. In high flow rate the friction coefficient showed the maximum value when ${\lambda}_{nv}$ is 9. Though the trapezoidal ribs has the relatively smaller flow resistance compared to the square ribs, their form drag accounted for mean 62% of the total flow resistance. It was confirmed that the optimal spacing of trapezoidal ribs to maximize the effect of flow resistance as the wall roughness increases are 9 to 12 times of the height of trapezoidal ribs.

Normal Depth of Best Section (최량수리단면의 등류수심)

  • Yoo, Dong-Hoon
    • Journal of Korea Water Resources Association
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    • v.35 no.6
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    • pp.729-736
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    • 2002
  • The computation of normal depth is one of the most important parts in the design of open channel flow, and the best section is in general the most economic section in the case of constructing artificial open channels. Thus the determination of the normal depth of the best section is the essential item in the design of most open channel flows. To estimate the frictional forces a power law is introduced, which is applicable to most situations in open channel flows. Explicit and consistent forms of equations are deduced for the calculation of normal depth of triangular, rectangular and trapezoidal best sections. Furthermore the equations of normal depth are found to have the same form as those of pipe diameter for the design of pipe flow.

Finite difference TVD scheme for modeling two-dimensional advection-dispersion

  • Guan, Y.;Zhang, D.
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.22-27
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    • 2006
  • This paper describes the development of the stream-tube based dispersion model for modeling contaminant transport in open channels. The operator-splitting technique is employed to separate the 2D contaminant transport equation into the pure advection and pure dispersion equations. Then the total variation diminishing (TVD) schemes are combined with the second-order Lax-Wendroff and third-order QUICKEST explicit finite difference schemes respectively to solve the pure advection equation in order to prevent the occurrence of numerical oscillations. Due to various limiters owning different features, the numerical tests for 1D pure advection and 2D dispersion are conducted to evaluate the performance of different TVD schemes firstly, then the TVD schemes are applied to experimental data for simulating the 2D mixing in a straight trapezoidal channel to test the model capability. Both the numerical tests and model application show that the TVD schemes are very competent for solving the advection-dominated transport problems.

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3D Numerical Simulations of Secondary Currents in a Trapezoidal Open-Channel Flows (사다리꼴 개수로 흐름에서 이차흐름의 차원 3차원 수치모의)

  • Kang, Hyeong-Sik;Choi, Sung-Uk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.1631-1635
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    • 2006
  • 본 연구에서는 레이놀즈응력모형(RSM: Reynolds Stress Model)을 이용하여 사다리꼴 개수로 흐름을 수치모의 하였다. 측벽 경사에 따른 사다리꼴 개수로 흐름을 수치모의 하였으며 계산된 평균유속 분포는 기존의 실험 결과와 비교하였다. 그 결과 개발된 레이놀즈응력이 사다리꼴 개수로 흐름을 비교적 잘 예측하는 것으로 나타났다. 또한 사다리꼴 수로에서는 직사각형 개수로 흐름과 달리 velocity dip 현상이 발생하지 않는 것으로 나타났다. 특히 측벽 경사가 32..인 사다리꼴 수로에서의 평균유속 및 바닥 전단응력 분포는 측벽 경사가 큰 경우와 다른 형태의 평균유속 및 전단응력 분포가 형성되는 것으로 나타났다.

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Discharge Coefficient of Triangular Weir in Trapezoidal Open Channel (사다리꼴 단면 개수로에 설치된 삼각형 위어의 유량계수)

  • Park, Sang-Deog;Kim, Ho-Seop;Shin, Seung-Suk;Kim, Gun-Tae;Lee, Jong-Seol
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1107-1112
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    • 2009
  • 수위-유량관계곡선이 있는 위어는 월류수심을 측정하여 개수로 유량을 산정할 수 있는 매우 유용한 유량 측정 도구이다. 본 연구는 폭 1m인 사다리꼴 단면 상업용 개수로에 설치된 높이 26cm인 삼각형 위어의 수위-유량관계곡선을 도출하기 위하여 수리모형실험을 실시한 것이다. 위어 수리모형은 크기를 1/5 축척으로 제작하고 유량과 수로경사를 변화시키면서 수리실험을 하였다. 기존 위어 유량산정 공식들을 이용하기 곤란하기 때문에 본 연구에서는 사다리꼴 단면 개수로의 삼각형 위어의 유량산정 공식을 정립하였다. 이 공식은 월류수심을 $h_1$$h_2$로 구분하였다. 월류수심이 $h_1$보다 작으면 삼각형 위어 유량산정 공식을 이용하고, 이보다 크면 사다리꼴 단면 개수로의 삼각형 위어 유량산정 공식을 이용한다. 삼각형 위어에서는 유량이 증가함에 따라 유량계수 $C_1$이 작아지는 반면에 사다리꼴 단면 개수로 삼각형 위어의 유량계수 $C_2$는 균일한 것으로 나타났다. 이는 사다리꼴 단면 개수로 삼각형 위어에서는 삼각형 위어에서 유량계수 $C_1$이 사용되었기 때문으로 판단된다. 또한 본 연구에서는 위어가 설치된 수로의 접근유속을 구하여 위어에 미치는 영향을 조사하였다.

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Experimental Analysis for Characteristics of Bank-Scour around Barrier (수리실험을 통한 보 연결부 제방 세굴 특성 분석)

  • Jeong, Seok Il;Lee, Seung Oh
    • Journal of the Korean Society of Safety
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    • v.32 no.4
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    • pp.34-39
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    • 2017
  • Typical flow regime of overflow at barrier or weir constructed in mid and small streams becomes as the submerged flow during most flood events. One of major causes of barrier failure has been reported as the levee-scour near the conjuction node between barrier and levee. However, most related design guidelines in Korea have not mentioned about the protection of levee around barrier or weir in detail. Furthermore, most previous researches have focused on the flow characteristics of overflow around several types of weirs but they did not have considered the material properties of levee itself. In this study, local scour near barrier was investigated with different material properties of levee under the submerged overflow condition which is assumed to reenact a flood event. Based on results from Fritz et al. and Mavis et al., a theoretical formula was also proposed in initial stage of laboratory experiments. And hydraulic experiments were carried out for the verification of the proposed formula. Levee was installed in the prismetic trapezoidal open channel and most parts were made of concrete except for movable section in which scour was expected to occur for the efficiency of experimental procedure. Each compaction of movable section in levee was followed by the basis of the KS F 2312. Further, after performing the experiments to find the optimum water content for each sediment, the specific amount of water was injected before flowing water. The difference between the proposed theoretical formula and experiment results was not much but considerable, which might be caused by the effect of compaction. For theoretical approach, it seemed that the formula did not take into account the compaction of levee, thus the correction coefficient for levee compaction determined in the literature was considered. Finally, the formula for the length of scour around barrier or weir was proposed, which can be useful to predict a levee in the reference design of revetment in mid and small streams. As shortly future study, scour length of levee around barrier or weir under different flow conditions such as perfect overflow condition will be studied and it will be able to contribute to suggest the design formula or criteria under all overflow conditions near barrier or weir.