• 제목/요약/키워드: 유동경사각

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High-Altitude Environment Simulation of Space Launch Vehicle in a Ground-Test Facility (지상시험장비를 통한 우주발사체 고공환경모사 기법 연구)

  • Lee, Sungmin;Oh, Bum-Seok;Kim, YoungJun;Park, Gisu
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.45 no.11
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    • pp.914-921
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    • 2017
  • The experimental research on a high-altitude environment simulation of space launch vehicle is important for securing independent technologies with launching space vehicles and completing missions. This study selected an altitude of 65 km for the experiment environment where it exceeded Mach number of 6 after the launch of Korean Space Launch Vehicle(KSLV-II). Shock tunnel was used to replicate the flight condition. After flow establishment, in order to confirm aerodynamic characteristics and normal and oblique shockwaves, the flow verification was carried out by measuring stagnation pressure and heat flux of a forebody model, and shockwave stand-off distance of a hemispherical model. In addition, a shock-free technique to recover free-stream condition has been developed and verified. From the results of the three verification tests, it was confirmed that the flow was replicated with the error of about ${\pm}3%$. The error between the slope angle of inclined shockwave of the scaled down transition section model using the shock-free shape and the slope angle of the horizontal plate model, and between the theoretical and the experimental value of the static pressure of the model were confirmed to be 2% and 1%, respectively. As a result, the efficiency of the shockwave cancellation technique has been verified.

Simulation of Erosion/deposition in Debris Flow (토석류의 침식/퇴적과정 모의)

  • Jun, Byong Hee;Jun, Kye Won;Kim, Byung Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.63-63
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    • 2015
  • 산사태나 토석류와 같은 산지재해가 빈발하고 인명과 재산의 피해가 증가함에 따라 적절한 대책이 시급하게 요구되고 있다. 토석류 매커니즘에 대한 많은 선행 연구가 이루어졌으며, 토석류 수치해석은 설정된 지형이나 수문곡선 등의 조건하에서 토석류의 발생, 이동, 퇴적, 범람범위 등의 거동을 표현하는 것이다. 본 연구에서는 토석류 해석에 자주 이용되는 Takahashi model과 Egashira model을 이용하여 침식과 퇴적과정을 모의하였다. Takahashi model에서는 토석류, 소류 상집합유동 등에 따라 유동형태가 달라지는 반면, Egashira model에서는 유동형태의 구분없이 침식이나 퇴적이 일어나지 않는 평형경사를 상정하여 하상구배가 평형구배를 만족시키는 방향으로 침식/퇴적이 발생한다고 평가한다. 이러한 각각의 토석류 모델을 이용하여 여러 가지 하상에서의 침식현상, 퇴적현상을 수치모의하고 각 모델의 해석결과를 비교하였다. 또한 이동상에서의 침식/퇴적거동을 해석하였으며, 실제 지형에 대한 적용가능성을 검토하였다. 이러한 토석류 수치해석 결과를 이용하여 토석류재해의 규모나 범위를 예측할 수 있으며 실제로 발생한 토석류재해의 검증, 사방구조물의 기능평가에도 유용하게 이용될 수 있다. 본 연구에서는 1차원해석에 머물러 있으나 계류상의 거동을 표현하고 사방구조물의 위치선정을 위해서는 무리가 없으며, 향후 2차원해석을 통해 범람거동을 해석한다면 토석류위험지도 작성에 유효할 것으로 판단되었다.

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A Study on PIV Measurement of Multi-Channel Flow with Inclination angle (경사각을 갖는 다층채널 흐름의 PIV 계측에 관한 연구)

  • 조대환
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2000.05a
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    • pp.153-158
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    • 2000
  • Flow visualization and PIV measurements were conducted to investigate the flow characteristics of multi-channel with inclination angle. The water flow seeded with tiny vegetable powder as tracers revealed details of flow field. The PIV measurement to acquire multi-point velocity data simulatneously was carried out at three space of plates for 5, 10, and 15mm with variation of inlet flow rates of $0.25m^3/h$ and <$0.5m^3/h.$ Experiment results show that space of plates acts a significant role in separating process.

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Local Mean Water Layer Thickness in Countercurrent Stratified Two -Phase Fllow (물-증기 역류 성층이상유동에서의 국부 평균 액체층 두께)

  • Kim, Hho-Jung;Kim, Kap
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.10 no.6
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    • pp.947-958
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    • 1986
  • 물-증기 역류 성층이상유동에서의 평균 액체층 두께가 여러가지 경사각과 종횡비에 따라 측정되었다. 난류유동에 있어서 전단응력분포의 선형화와 von Karman의 혼합길이 이론을 근거로 평균 액체층의 두께에 대한 관계식이 제시되었으며 실험결과와 잘 일치하였음을 보였다. 접촉면에서의 조파저항이 고려되지 않은 해석결과는, 수평 성층유동의 경우에, 평균 액체층 두께보다는 오히려 파곡까지의 액체층 두께를 예측하고 있는 것으로 나타났다. 또한 평균 액체층 두께에 대한 실험 상관관계식이 계산시 편의를 위해 쉽게 인지할 수 있는 매개변수들의 항들롤 제시되었다.

Surface Runoff Friction Factor and Time of Concentration (지표면 유출 마찰계수와 도달시간)

  • Yoo, Dong-Hoon;Lee, Min-Ho;Lee, Tae-Hee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1057-1062
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    • 2009
  • 대부분의 홍수 예측모형은 도달시간 산정에 있어 지표면 흐름을 중력흐름으로 가정한다. 그러나 Woo & Brater(1961)의 실험결과 지표면 흐름의 마찰계수는 바닥정사의 함수인 것으로 나타나며 수심이 매우 얕은 흐름의 경우 조고뿐만 아니라 바닥경사에 의한 영향이 매우 큰 것으로 나타났다. 새로운 무차원수 Y는 바닥경사, 수심, 조고 및 표면장력 등을 고려하는 인자로서 중력흐름과 표면장력흐름의 각 흐름특성을 반영하기 위한 새로운 도달시간 산정식을 개발하였다. 새로운 무차원수 Y는 표면장력과 관계된 후르드수 및 웨버수의 조합으로 조고뿐만 아니라 바닥경사, 수심의 함수로 나타난다. 지표면 흐름의 마찰계수 산정시 비례상수 ${\alpha}$를 새로운 무차원수 Y의 함수로 취하여 Butler(1977)의 실험자료를 분석하였다. 중력흐름의 경우 조고만의 함수로 나타나지만 표면장력흐름은 조고뿐만 아니라 바닥경사의 영향이 매우 중요한 것으로 나타났다. 중력흐름만을 고려하여 도달시간 산정시 관측치보다 작게 산정되는 반면 표면장력흐름으로 고려하여 도달시간 산정시 관측치와 근접하게 산정되었다. 따라서 지표면 유출 흐름은 중력과 함계 표면장력의 영향이 크게 작용하는 것으로 판단된다. 분석결과와 같이 표면장력흐름 특성을 고려한 도달시간 산정식을 모형에 적용할 경우 유출모형을 통한 유출량산정의 정확도 향상에 기여할 것으로 판단된다.

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The Study of Sediment Volume Concentration in Liquefied-Layer of Debris Flow (토석류 유동층에서 토사체적 농도 특성에 관한 연구)

  • Kim, Sungduk
    • Journal of the Korean GEO-environmental Society
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    • v.15 no.12
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    • pp.109-115
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    • 2014
  • The purpose of this study is to estimate the sediment volume concentration of the liquified-solid mixture which is included fine sediment fractions, according to the variance of the channel slope and the water supply. The numerical model was performed by using the Finite Differential Element Method (FDM) based on the equation for the mass conservation, momentum conservation and the equation of coarse sediment an fine sediment. In comparison of varying the channel slope, the deeper the channel slope, the inflection point of the sediment concentration was occurred rapidly. In comparison of variance of the water supply, as the water supply increases fluctuation with high sediment concentration. In this situation, debris flow changes to the turbulent flow and the sediment becomes to be floated. In comparison varying the length paved saturated sediment, the longer the length, the high concentration of sediment occurred, for the safety of the slope it is needed to check the possibility of the erosion in the slope by debris flow. The results of this study will provide useful information in predicting of the disaster by the liquified-solid mixture and in prevention of the debris flow with various the slope in the mountain side.

Numerical Analysis of Natural Convection from an Inclined Ice Flat Plate Immersed in cold Water Near Its Density Maximum (최대밀도점 부근의 물속에 잠겨있는 경사진 얼음평판에 의한 자연대류의 수치해석)

  • 유갑종;추홍록
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.16 no.11
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    • pp.2136-2149
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    • 1992
  • The natural convection from an inclined ice flat plate immersed in cold water near its density maximum is studied numerically. Finite difference analysis has been performed for the heat and momentum transfer with respect to various inclined angles and ambient water temperatures. The results of the analysis are presented for ambient water temperatures, 1.0deg. C. leq. T/sub .inf./.leq. 15.0deg. C and the inclined anales from 0deg to 60deg. They include velocity profiles, temperature profiles, melting velocities, and mean Nusselt numbers for entire flow fields, Generally, in the range of 0deg. C .leq.theta. .leq. 60.deg. C, the results show three distinct flow regimes, In the range of 1.0 deg. C .leq. T/sub .inf./ .leq. 4.6 .deg. C, the greatest mean Nuselt number exists about 3.0deg. C. In the range of 5.7deg. C .leq. T/sub .inf./ .leq. 15.0deg. C, mean Nuselt number increases as ambient water temperature increases. Also, the mean Nuselt number decreases as the inclined angle increases. This theoretical results are compared with previous experimental ones and multiple steady state ones.

Numerical Study on the Effect of Injection Nozzle Shape on the Cooling Performance in Supersonic Film Cooling (초음속 막냉각 유동에서 분사 노즐 형상이 냉각성능에 미치는 영향에 관한 수치해석적 연구)

  • Kim, Sang-Min
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.44 no.8
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    • pp.641-648
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    • 2016
  • In this study, the effect of injection nozzle shape on the supersonic film cooling performance is analyzed using CFD. The design parameters are inside and outside angles of upper plate of nozzle and nozzle tip thickness. It is observed that the mass flow rate of film cooling decreases with increase of inside angle, while the effect of the change of mass flow rate on the film cooling effectiveness is relatively small. In addition, cooling performance is generally reduced, except ahead of the local region where shock wave interaction with film cooling occurs, in accordance with the growth of the outside angle and tip thickness. In this paper, the CFD simulation is performed using a commercial software, ANSYS Fluent V15.0, and the CFD model is validated by comparing it with the experimental data shown in preceding research.

An Experimental Study on Flow Characteristics of a Supersonic Impinging Jet (초음속 충돌제트의 유동특성에 대한 실험적 연구)

  • 신필권;신완순;이택상;박종호;김윤곤
    • Journal of the Korean Society of Propulsion Engineers
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    • v.2 no.3
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    • pp.10-19
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    • 1998
  • When an under-expanded supersonic jet impinges on an inclined flat surface, a complex flow structure is established due to the intersection between the flat surface and the shock system of the free jet. This study reports on an experimental results of flows due to under-expanded axisymmetric sonic jets impinging on flat plate. Plate inclination from $60^{\cire}$~$90^{\cire}$ were investigated by means of detailed measurements of the surface pressure and schlieren photograph and surface flow visualization. The schlieren photograph are consistent with the pressure distribution and the surface flow visualization pictures are clearly related to the pressure distributions. The maximum wall pressure is found to be large on the inclined plate than on the perpendicular plate.

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Structural Safety of Lightweight Valve Disc by Topology Optimization Design based on Computational Simulation (전산 시뮬레이션 기반의 위상최적설계에 의한 경량 밸브디스크의 구조적 안전성)

  • Kim, Taehyung
    • Journal of Energy Engineering
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    • v.29 no.3
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    • pp.25-33
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    • 2020
  • In this study, flow and structural computational analysis were performed to investigate the structural safety of the lightweight butterfly valve disc designed by topology optimization. After flow analysis, as the opening angle increased, the flow coefficient increased non-linearly and showed a gentle slop. When the opening angle was 12 degree, the cavitation could be predicted. After FE analysis, all FE von-Misses stresses of the lightweight disc were smaller than the yield strength of the material, and all FE maximum deformations were also smaller than the conservative deformation of the previous study. Ultimately, it was confirmed that the structural safety of the lightweight valve disc based on computational analysis is effective.