• Title/Summary/Keyword: 수두손실

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Calculation of Head Loss Coefficient at Surcharged Circular Manhole Using Fluent Model (Fluent 모형을 이용한 과부하 원형 맨홀에서의 손실계수 계산)

  • Kim, Jung-Soo;Kim, Jong-Woo;Kim, Hyung-Min;Yoon, Sei-Eui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1828-1832
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    • 2008
  • 우수 관거 시스템에서 흐름은 중력에 의해서 흐르고 개수로 흐름과 같이 처리된다. 그러나 유입유량이 관거의 만관 상태를 초과하거나 하류 흐름의 제한 때문에 발생하는 역류의 영향을 받는다면, 우수 관거 시스템은 과부하(surcharge) 상태의 압력흐름이 된다. 개수로 상태에서 맨홀에서의 수두 손실은 일반적으로 무시되지만, 과부하 맨홀에서의 수두손실은 중요하며, 우수 관거 시스템의 전체 손실에 중요한 부분을 차지하게 된다. 이러한 현상은 여러 개의 맨홀을 가지는 우수 관거 시스템에서 특히 중요한 사항이 된다. 현재 계획 또는 설계단계에서 수행되고 있는 관거 시설의 수리계산에서는 연결관의 마찰손실만을 감안하여 수행하고 있으며, 맨홀에서의 수두손실은 고려되지 않는 실정이다. 본 연구에서는 일반적으로 3차원 유체거동의 특성분석에 많이 사용되는 Fluent 모형을 이용하여 과부하 원형 맨홀에서의 흐름특성을 수치모의 하였으며, 맨홀내 손실수두의 변화를 계산하여 손실계수를 산정하였다. 계산된 손실계수는 수리모형 실험을 통하여 산정된 손실계수와 비교하였다. 수치 모형에 의해서 산정된 손실계수 값이 수리모형 실험에 의해서 산정된 손실계수 값보다 약간 크게 산정되었다. 앞으로 난류 모형의 매개 변수들의 조정을 통한 정확한 수치모의 연구가 필요하다고 판단된다.

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Experimental Study of Chemical Effects on Head Loss across Containment Sump Strainer under Post-LOCA Environment (LOCA이후 원자로건물집수조 여과기의 수두손실에 대한 화학적 영향의 실험연구)

  • Ku, Hee-Kwan;Jung, Bum-Young;Hong, Kwang;Jung, Eun-Sun;Jeong, Hyun-Jun;Park, Byung-Gi;Rhee, In-Hyoung;Park, Jong-Woon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.12
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    • pp.3748-3754
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    • 2009
  • An integral head loss test in a test apparatus was conducted to simulate chemical effects on a head loss across a strainer in a pressurized water reactor (PWR) containment water pool after a loss of coolant accident (LOCA). The test was conducted during 30 days in the condition of a short spray, a long spray, and no materials with chemical effects. The result exhibited that the head loss was affected on amounts of the exposed materials according to spray conditions. XRD analysis of the collected precipitates showed that the precipitates were phosphate compounds. Comparison of the head loss with dissolved species concentration showed that high increase rate of the head loss resulted from the corrosion of aluminum and zinc but slow increase rate of the head loss resulted from the precipitates induced by Si, Mg, and Ca from leaching reaction at NUKON and concrete after passivation of metal specimens.

Analysis of Hydraulic Similarity at Surcharged Square Manhole (과부하 사각형 맨홀에서의 수리학적 상사성 분석)

  • Kim, Jung-Soo;Yoon, Young-Noah;Han, Chyung-Such;Yoon, Sei-Eui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.510-514
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    • 2008
  • 우수 관거 시스템에서 맨홀의 설치 시 연결관 내부와 맨홀의 내부는 여러 가지 수리학적 조건이 다르므로 수두손실의 발생이 필연적일 수밖에 없다. 현재 계획 또는 설계단계에서 수행되고 있는 관거 시설의 수리계산에는 연결관 내에서의 마찰손실만을 고려하여 설계를 수행하고 있으며, 맨홀에서의 수두 손실은 거의 대부분 고려되지 않고 있다. 단지 맨홀에서의 수두손실을 저감하기 위하여 하수도시설기준(환경부, 2005)상의 단차 및 인버트 규정만 있을 뿐, 우수 관거 설계에 직접적으로 필요한 적절한 맨홀의 손실계수가 제시되지 않고 있는 실정이다. 국외에서는 축소 수리 모형을 이용한 실험과 수치해석 기법 등을 이용하여 맨홀에서의 손실계수를 산정하는 연구가 꾸준히 진행되어 왔으나 국내에서는 맨홀의 손실계수 산정에 관한 연구가 미흡한 실정이며, 더욱이 맨홀에서의 손실계수 산정을 위한 상사성 적용에 관한 연구는 전무한 실정이다. 그러므로 본 연구에서는 맨홀의 축척 변화에 따른 손실계수의 변화를 분석하기 위하여 하수도시설기준(환경부, 2005)의 특 1호(사각형) 맨홀을 각각 1/2과 1/5로 축소 제작하고, 수리실험 장치를 제작하였다. Froude 상사 법칙을 적용하여 1/2의 축소 모형의 실험 조건을 1/5 축소 모형의 값으로 환산하였으며, 각 축소 모형에 대한 수리 실험을 실시하였다. 과부하된 맨홀의 손실계수를 예측하는데 Froude 상사법칙의 사용 가능성을 확인 하였으며, 1/2 축소 모형과 1/5 축소 모형에서 산정된 손실계수 값이 0.45로 일치하고 있으므로 우수 관거 시스템의 맨홀 설계 시, 축소 수리 모형실험에서 산정된 손실계수의 직접적인 적용이 가능하다고 판단된다.

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An Analysis of Energy Loss with Variation of Square Manhole Profile (직사각형 맨홀의 구조 변화에 따른 에너지손실 분석)

  • Kim, Jung-Soo;Jang, Suk-Jin;Yoon, Young-Noh;Yoon, Sei-Eui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.537-541
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    • 2007
  • 관거시설의 맨홀에서 수두손실이 과대해지면 관거의 통수능력이 저하되어 배수구역의 침수피해가 발생되고, 우수의 분출 시 맨홀 뚜껑이 유실되어 인명사고를 유발할 수도 있다. 특히 1990년대부터 국지성 집중호우에 의한 도심지역의 침수피해가 빈번히 발생하고 있는 현실을 감안할 때, 관거시설 내 맨홀에서의 수리적 에너지 손실에 대한 연구와 보다 구체적인 설계 기준의 제시가 요구되고 있는 실정이다. 이러한 점을 고려할 때, 도시지역의 우수관거 시스템의 우수 배제 능력을 증가시켜 도심지의 침수를 방지하기 위한 관거시설의 적정 설계 기준이 필요하며, 합리적인 설계 기준을 제시하기 위하여 맨홀 내에서의 수두 손실을 분석할 필요가 있다. 그러므로 본 연구에서는 일반적으로 설치되어 있는 직사각형 맨홀의 현장조사와 설계기준을 조사하여 수리 실험 장치를 제작하였다. 선정된 실험조건인 맨홀의 내부형상 변화와 하수도 시설기준상의 맨홀 내의 단차규정에 따른 수리실험을 실시하여 맨홀 내부의 흐름특성의 변화와 에너지 손실에 대하여 분석하였다. 또한 실험조건 변화에 따른 수두 손실계수를 산정하여 직사각형 맨홀 내부의 에너지 손실을 감소시키기 위한 방안을 제시하였다.

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Chemical Effects on Head Loss across Containment Sump Strainer under Post-LOCA Environment (LOCA이후 환경에서 원자로건물집수조 여과기의 수두손실에 대한 화학적 영향)

  • Ku, Hee-Kwon;Jung, Bum-Young;Hong, Kwang;Jeong, Eun-Sun;Jung, Hyun-Jun;Park, Byung-Gi;Rhee, In-Hyoung;Park, Jong-Woon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.11
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    • pp.3260-3268
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    • 2009
  • A test apparatus has been fabricated to simulate chemical effect on head loss through a strainer in a pressurized water reactor (PWR) containment water pool after a loss of coolant accident (LOCA). Tests were conducted under condition of same ratio of strainer surface area to water volume between the test appratus and the containment sump. A series of tests have been performed to investigate the effects of spray, existence of calcium-silicate with tri-sodium phosphate (TSP), and composition of materials. The results showed that head loss across the chemical bed with even a small amount of calcium-silicate insulation instantaneously increased as soon as TSP was added to the test solution. Also, the head loss across the test screen is strongly affected by spray duration and is increased rapidly at the early stage, because of high dissolution and precipitation of aluminum and zinc. After passivation of aluminum and zinc by corrosion, the head loss increase is much slowed down and is mainly induced by materials such as calcium, silicon, and magnesium leached from NUKONTM and concrete. Furthermore, it is newly found that the spay buffer agent, tri-sodium phosphate, to form protective coating on the aluminum surface and reduce aluminum leaching is not effective for a large amount of aluminum and a long spray.

An Analysis of Attenuation Effect of Pressure Head Using an Air Chamber (공기실을 사용한 압력수두의 완화효과에 대한 분석)

  • Lee, Jae-Su;Yun, Yong-Nam;Kim, Jung-Hun
    • Water for future
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    • v.28 no.5
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    • pp.141-150
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    • 1995
  • An air chamber is designed to keep the pressure from exceeding a predetermined value, or to prevent low pressures and column separation. Therefore, it can be used to protect against rapid transients in a pipe system following abrupt pump stoppage. In this research, an air chamber was applied to a hypothetical pipe system to analyze attenuation effect of pressure head for different air volumes, locations, chamber areas, coefficients of orifice loss and polytropic exponents. With an increase of air volume, the maximum pressure head at pump site is decreased and the minimum pressure head is increased. For different locations and areas of the chamber, the attenuation effects do not show much difference. Also, as the orifice loss coefficient increases, the maximum pressure head is decreased. For different polytropic exponents, isothermal process shows lower maximum pressure head than that of the adiabatic process.

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The Estimation of Friction Velocity by Hydraulic Parameters Reflecting Turbulent Flow Characteristics in a Smooth Pipe Line (매끄러운 관수로 내 난류흐름특성을 반영한 수리학적 매개변수에 의한 마찰속도의 산정)

  • Choo, Tai Ho;Son, Jong Keun;Kwon, Yong Been;Ahn, Si Hyung;Yun, Gwan Seon
    • The Journal of the Korea Contents Association
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    • v.16 no.4
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    • pp.614-623
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    • 2016
  • Grid(pipe network) design is an important element of Smart Water Grid, which essential to estimate hydraulic parameters such as the pressure, friction factor, friction velocity, head loss and energy slope. Especially, friction velocity in a grid is an important factor in conjunction with energy gradient, friction coefficient, pressure and head loss. However, accurate estimation friction head loss, friction velocity and friction factor are very difficult. The empirical friction factor is still estimated by using theory and equation which were developed one hundred years ago. Therefore, in this paper, new equation from maximum velocity and friction velocity is developed by using integration relationship between Darcy-Weisbach's friction head loss equation and Schlichting equation and regression analysis. To prove the developed equation, smooth pipe data areis used. Proposed equation shows high accuracy compared to observed data. Study results are expected to be used in stability improvements and design in a grid.

Numerical Analysis on the Determination of Head Loss by Perforated Vertical Walls (연직 유공벽의 수두손실 결정을 위한 수치해석)

  • Chun, In-Sik;Lee, Seong-Yeop;Park, Kyung-Soo;An, Dong-Keun
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.19 no.3
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    • pp.194-204
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    • 2007
  • A numerical analysis and hydraulic experiments were undertaken to investigate the head loss occurring when a flow passes through vertical perforated walls. The numerical analysis applied continuity, momentum and energy equations to the control volumes that were set near the perforated wall. Non-dimensional equations were then derived to calculate both upstream depth and head loss for the given values of downstream depth and velocity. The hydraulic experiments were performed with several single and triple perforated plates varying their opening ratios and intervals. The numerical results with the single plates were compared with the experimental results, and it was shown that the contraction coefficient of the vertical line jet formed after the perforated plates relies on downstream Froude number as well as opening ratio. Based on the experimental results, empirical formulas were formulated. Finally, the formulas were applied to the triple plates sequentially from downstream side to upstream side, and it was found that in general the predicted values nicely agreed with the experimental results.

A Study of Head Loss with Geometry Modification of Bifurcation (수압 분기관 형상 변화에 따른 수두손실 고찰)

  • Kang, Seung-Kyu;Yoon, Joon-Yong;Kang, Sin-Hyoung;Sung, Nak-Won
    • 유체기계공업학회:학술대회논문집
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    • 2005.12a
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    • pp.789-795
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    • 2005
  • This study proposes a modified bifurcation model with a computational fluid analysis according to variation of a bifurcation geometry. FLUENT is used for a calculation of the head losses in case of a generation and a pumping. The pressure, velocity field and turbulent intensity are simulated in a bifurcation. With consideration about these flow properties, we propose the modified model to improve a flow efficiency and reduce a sound. The proposed model is able to cut down a head loss by 45% when a generation and 36% when a pumping.

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A Study on the Distribution of Hydraulic Head Along the Lateral in a Pilot-Scale Riverbank Filtration (강변여과에서 파일럿규모 수평집수관의 수두분포 연구)

  • Jeong, Jae-Min;Park, Jae-Young;Lee, Jong-Jin;Kim, Yong-Woon;Kim, Seung-Hyun
    • Journal of Korean Society of Environmental Engineers
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    • v.35 no.5
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    • pp.334-339
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    • 2013
  • A pilot-scale sand-box experiment simulating a lateral of collector well used in riverbank filtration was performed, and hydraulic head distributions along the lateral were measured according to the various drawdowns at the well. The results of this experiment were compared to the predicted values obtained using a theory previously developed by Kim in order for its validation. This theory predicts the head loss in a large-scale lateral given the loss in a small-scale one, and to have actual values for comparison, the results from a lab-scale experiment previously performed by Kim were employed. Comparing the experimental values to the extrapolated value indeed confirmed the validity of the theory. A procedure to determine the hydraulic head distribution of a practical-scale lateral was also presented applying the theory to the experimental result of this study in an effort to show the process of lateral design for riverbank filtration.