• Title/Summary/Keyword: 계단 흐름

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A Study on the Emergency Stairway Evacuation of Skyscraper (초고층 건물의 비상계단 대피실험에 관한 연구)

  • Back, Min-Ho;Shin, Ho-Jun
    • Journal of the Korean Society of Hazard Mitigation
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    • v.10 no.4
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    • pp.55-61
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    • 2010
  • In this study, the construction trend of skyscraper was summarized chirologically to examine the characteristics and current, and the issue in evacuation was examined through the case of fire breakout in skyscraper. Based on this, the type of evacuation using the emergency stairway during the fire breakout in skyscraper was decided on six types and empirical experiment was conducted for each type. The issues on the participants that participated in the emergency stairway evacuation experiment from the fire breakout in skyscraper and the difficulties in the evacuation were qualitatively evaluated to summarize each element of hindrance to summarize basic information on emergency stairway evacuation.

Comparative analysis of inundation flow patterns and flood risk assessment methods within subway stations (지하철 역사 내 침수 흐름 분석 및 침수 위험도 평가 방법 비교)

  • Shin, Jaehyun;Kim, Minjeong;Cho, Inhwan;Park, Inhwan
    • Journal of Korea Water Resources Association
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    • v.56 no.10
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    • pp.667-678
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    • 2023
  • In this study, quasi-3D inundation flow simulations were conducted for a simplified subway station configuration. The effects of variations in rainwater inflow locations and discharge were investigated, analyzing the resulting inundation flow patterns and flood risk. The inundation simulation results calculated the incipient velocities for slipping and toppling accidents to assess pedestrian safety. The results indicated that velocities exceeding the incipient velocity for slipping accidents mainly occurred on the flooded staircase. Meanwhile, velocities surpassing the incipient toppling accidents were observed around the staircase and the corridor near the staircase leading to B2F. This observation is consistent with the results from the specific force distribution analysis. To provide detailed flood risk assessments, the Flood Hazard Degree (FD) was applied with four levels of criteria, along with the Flood Intensity Factor (FIF). The results demonstrated that FD identified a broader area at risk of flood-induced consequences compared to FIF. When comparing the different inundation risk assessment methods, the specific force method tended to overestimate the risk area, whereas FIF tended to underestimate it. Furthermore, among all assessment methods, the influence of rainwater discharge was found to have a more dominant effect on flood risk assessment compared to the number of rainwater inflow locations. Additionally, the direction of inundation flow influenced the assessed risk, with collision-induced flow patterns leading to higher flood risk than those with identical flow directions.

Experimental study on the discharge coefficient of slope-type and step-type weirs (경사형 및 계단형 보의 유량계수 산정을 위한 실험연구)

  • Kang, Joon Gua;Kim, Jong Tae
    • Journal of Korea Water Resources Association
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    • v.49 no.12
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    • pp.961-969
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    • 2016
  • Due to the recent requirement of installing low-head structures considering environmental aspects, various types of fixed weir have been suggested. However, the design guideline of transverse structures for practical application is very limited. The purpose of the present study is to analyze the hydraulic properties of the fixed weirs installed at the small and middle sized rivers of Korea depending on the physical specifications to provide fundamental data that may be reflected to the design of a low-head fixed weir considering the relevant environmental aspects. The basic discharge coefficient of slope-type and step-type weirs depending on change of crest was estimated, and a stage-discharge curve was developed. In addition, the flow properties under free flow and submerged flow conditions were analyzed by varying the hydraulic conditions such as discharge and crest.

The Calculation of Reflection Coefficients of Water Waves over Various Shear Currents with a Uniform Depth Topography (다양한 외부흐름에 대한 평탄한 지형을 통과하는 파랑의 반사율 산정)

  • Lee, Jun-Whan;Cho, Yong-Sik
    • Journal of Korea Water Resources Association
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    • v.46 no.3
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    • pp.245-252
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    • 2013
  • The reflection coefficients of monochromatic water waves over various shear currents flowing on a constant topography are estimated analytically in this study. The region of varying shear currents is represented by a finite number of tiny steps with a uniform depth topography. The proper numbers of steps and evanescent modes needed for the analysis are proposed by a series of convergence tests. The characteristics of reflection coefficients for various shear currents conditions are also examined.

Damage of Nature-Friendly River Works by Heavy Rain (집중호우에 의한 자연형하천 공법의 훼손 및 유실 현황)

  • Kim, Jin-Hong;Kim, Eun-Loung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.182-182
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    • 2011
  • 2010년 9월 21일 오전부터 서울과 인천 등 수도권 지역에 최대 200mm가 넘는 집중호우가 내렸다. 이로 인해 도림천에서는 하천 복원 공사가 한창이었으나, 공사가 진행된 지점에서 자연형하천 공법의 훼손이 심각하게 발생하였다. 본 연구에서는 집중호우로 인한 자연형하천 공법의 훼손 현황을 현지조사를 통해 살펴보고, 이의 원인을 검토, 분석하여 복구대책 수립에 지침이 되도록 하였다. 자연형하천 공법의 훼손은 주로 하천의 수리적인 안정성을 고려하지 않고 설치함으로써 인위적으로 흐름에 지장을 초래하기 때문에 발생하였다. 흐름의 유속을 고려하지 않는 수생식물 식재, 하도 내에 설치된 진입계단, 전망데크, 불투수성의 자전거길 및 저수호안공의 훼손은 추후 흐름의 유속과 와류 등을 고려한 수리적인 안정성 확보가 중요함을 시사하였다. 한편, 저수호안에 식재한 갯버들+자연석 호안공은 이번 호우에도 어느 정도 대응 가능하였음을 감안할 때, 흐름의 유속이 빠르다고 하여 자연석 호안공을 시멘트로 메워 식생을 도입하지 않았던 공법에 대한 재검토가 필요함을 알 수 있었다.

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Numerical simulation of shallow-water flow over perpendicular broad-crested weir (직립 광정 위어를 지나는 천수 흐름의 수치 모의)

  • Hwang, Seung-Yong
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.248-248
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    • 2022
  • Hwang(2015)은 불연속 지형을 지나는 천수 흐름의 수치 해석에서 불연속 전면에 의한 추력(thrust)에 주목하여 그 영향을 흐름률(flux) 계산에 반영하는 새로운 기법을 제시하였다. 이 기법 덕분에 수심 적분 모형으로도 계단이나 보와 같이 직립한 하천 구조물의 불연속면을 경사로 완화하지 않고 직접 모의할 수 있다. 직립 측면 위어 실험에 Hwang(2015)의 기법이 적용됨으로써 연직면을 경사면으로 완화하여야 하는 기존의 수심 적분 모형에 비해 계산 격자 개수가 53%로 줄었다(Hwang, 2019). Hwang(2019)은 기존 모형과 비교를 통해, 정확도를 어느 정도 유지하면서도, 소요된 계산 시간이 20%에 불과하다고 주장하였다. 여기에서는 보다 다양한 직립 광정 위어 실험에 적용하여 수심 적분 모형에 의한 월류량을 검토하고자 한다.

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An Experimental Study of Roughness Effects on the Turbulent Flow Downstream of a Backward-Facing Step (조도가 후향계단 주위의 난류유동에 미치는 영향에 대한 실험적 연구)

  • 김병남;정명균
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.15 no.6
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    • pp.2083-2099
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    • 1991
  • An experiment has been carried out to investigate the aerodynamic effect of surface roughness on the characteristics of the turbulent separation and reattaching flow downstream of a backward-facing step. The distributions of boundary layer parameters, forward-flow fraction and turbulent stresses in the region near the reattachment point are measured with a split film sensor. It is demonstrated that the streamwise distributions of the forward-flow fraction in the recirculation and reattachment regions are similar, independent of the roughness. The reattachment length is found to be only weakly affected by the roughness. It is also shown that the velocity profile on the rough surface approaches to that of the equilibrium turbulent boundary layer faster than that on the smooth surface in the redeveloping region after reattachment.

Flow-structure Interaction Analysis for Durability Verification by the Wind Force of Outdoor Evacuation Stairs (옥외형 피난계단의 풍압에 따른 내구성 검증을 위한 유동-구조 연성해석)

  • Lee, Suk Young
    • Journal of Energy Engineering
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    • v.29 no.3
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    • pp.97-102
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    • 2020
  • In this study, one-way fluid structure interaction analysis was adapted to verify the durability of the outdoor evacuation stair structure operated in the event of a fire when wind pressure caused by a typhoon was applied. To this end, flow analysis was performed with the flow field around the structure of the evacuation stair in a steady state, and the durability was analyzed through structural analysis such as structural stress, deformation, and fatigue life using these analysis results by fluid data input data for structural analysis. As a result of flow numerical analysis, the air flow was different according to the shape of the evacuation stair structure, and this flow velocity distribution generated by the total pressure on the structure surface. Through the structural analysis results calculated by this total pressure, the safety factor calculated as the maximum stress value was found to be more than the safety factor, and durability was proven by fatigue life and deformation analysis.

An Inundation Analysis Model for Smart Staff Gauge (스마트 목자판을 위한 침수 해석 모형)

  • Hwang, Seung-Yong
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.255-255
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    • 2021
  • 내수 침수는 강물과 같은 외수보다는 제내지에서 하수 또는 우수의 배제가 불량하여 발생되는 범람이다. 내수 침수 상황에서 침수심의 정확한 관측과 예보된 강수로부터 침수심을 예측할 수 있는 시스템 즉, 스마트 목자판이 개발되고 있다. 시스템 운용에 사용될 소프트웨어 가운데 하나로서 침수 해석을 위한 수치 모형이 필요하다. 내수에 의한 침수와 그것의 배제를 무리 없이 모의하려면, 물이 차고 빠지는 물리 현상을 타당하게 해석하는 것이 관건일 것이다. 그에 따라 2차원 천수 방정식을 유한 체적법으로 해석할 때 흐름률(flux) 계산에 근사 Riemann 해법을 적용하는 모형을 도입하였다. 단순하면서도 내수 침수의 재현에서 드러날 수 있는 취약점들을 포괄할 수 있도록 경사면과 계단으로 가상 지형을 구성하였으며, 강수로 인한 지형의 침수에 대해 개발된 모형을 시험하였다. 근사 Riemann 해법은 흐름률의 정확한 평가로 잠김과 드러남 모의가 자연스런 장점이 있으나, 해석 방법이 복잡하여 계산 시간이 비교적 오래 걸리므로 그에 대한 대책이 요구된다.

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