• 제목/요약/키워드: phase explosion

검색결과 100건 처리시간 0.033초

유체 내 전기선폭발법에 의한 은 나노입자 유체의 제조 및 특성 (Production and Properties of Ag Metallic Nanoparticle Fluid by Electrical Explosion of Wire in Liquid)

  • 박은주;;김지순;권영순;김진천;최혜선;정용훈
    • 한국분말재료학회지
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    • 제16권3호
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    • pp.217-222
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    • 2009
  • This paper presents a novel single-step method to prepare the Ag nanometallic particle dispersed fluid (nanofluid) by electrical explosion of wire in liquid, deionized water (DI water). X-ray diffraction (XRD), field emission scanning electron microscope (FE-SEM) and transmission electron microscope (TEM) were used to investigate the characteristics of the Ag nanofluids. Zeta potential was also used to measure the dispersion properties of the as-prepared Ag nanofluid. Pure Ag phase was detected in the nanofluids using water. FE-SEM analysis shows that the size of the particles formed in DI water was about 88 nm and Zeta potential value was about -43.68 without any physical and chemical treatments. Thermal conductivity of the as-prepared Ag particle dispersed nanofluid shows much higher value than that of pure DI water.

KMTNet Supernova Project : The Initial Status

  • Kim, Sang Chul;Moon, Dae-Sik;Lee, Jae-Joon;Pak, Mina
    • 천문학회보
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    • 제40권1호
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    • pp.56.1-56.1
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    • 2015
  • We are at the initial performance-verification phase of our KMTNet Supernova Project (KSP) using the three wide-field telescopes of the KMTNet in the southern hemisphere. The primary science objectives of KSP, which take advantage of its unique 24-hour continuous sky coverage, are to study early (i.e., within a few hours from explosion) and rare/peculiar (e.g. fast decay) supernovae (SNe), SN progenitors, explosion mechanisms, as well as other exotic optical transients. We present the initial status/results of the program, along with the program strategy, science objectives, target fields, and future plan. While the target field selection will be made based on the performance of the system and consideration of various scientific merits, the initial target fields are focused on nearby galaxies with increased cadence and filter coverage.

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Simple P-I diagram for structural components based on support rotation angle criteria

  • Kee, Jung Hun;Park, Jong Yil
    • Advances in concrete construction
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    • 제10권6호
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    • pp.509-514
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    • 2020
  • In the preliminary design phase of explosion-proof structures, the use of P-I diagram is useful. Based on the fact that the deformation criteria at failure or heavy damage is significantly larger than the yield deformation, a closed form solution of normalized P-I diagram is proposed using the complete plastic resistance curve. When actual sizes and material properties of RC structural component are considered, the complete plasticity assumption shows only a maximum error of 6% in terms of strain energy, and a maximum difference of 9% of the amount of explosives in CWSD. Thru comparison with four field test results, the same damage pattern was predicted in all four specimens.

A Review on Spray Characteristics of Bioethanol and Its Blended Fuels in CI Engines

  • No, Soo-Young
    • 한국분무공학회지
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    • 제19권4호
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    • pp.155-166
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    • 2014
  • This review will be concentrated on the spray characteristics of bioethanol and its derived fuels such as ethanol-diesel, ethanol-biodiesel in compression ignition (CI) engines. The difficulty in meeting the severe limitations on NOx and PM emissions in CI engines has brought about many methods for the application of ethanol because ethanol diffusion flames in engine produce virtually no soot. The most popular method for the application of ethanol as a fuel in CI engines is the blending of ethanol with diesel. The physical properties of ethanol and its derivatives related to spray characteristics such as viscosity, density and surface tension are discussed. Viscosity and density of e-diesel and e-biodiesel generally are decreased with increase in ethanol content and temperature. More than 22% and 30% of ethanol addition would not satisfied the requirement of viscosity and density in EN 590, respectively. Investigation of neat ethanol sprays in CI engines was conducted by very few researchers. The effect of ambient temperature on liquid phase penetration is a controversial topic due to the opposite result between two studies. More researches are required for the spray characteristics of neat ethanol in CI engines. The ethanol blended fuels in CI engines can be classified into ethanol-diesel blend (e-diesel) and ethanol-biodiesel (e-biodiesel) blend. Even though dodecanol and n-butanol are rarely used, the addition of biodiesel as blend stabilizer is the prevailing method because it has the advantage of increasing the biofuel concentration in diesel fuel. Spray penetration and SMD of e-diesel and e-biodiesel decrease with increase in ethanol concentration, and in ambient pressure. However, spray angle is increased with increase in the ethanol percentage in e-diesel. As the ambient pressure increases, liquid phase penetration was decreased, but spray angle was increased in e-diesel. The increase in ambient temperature showed the slight effect on liquid phase penetration, but spray angle was decreased. A numerical study of micro-explosion concluded that the optimum composition of e-diesel binary mixture for micro-explosion was approximately E50D50, while that of e-biodiesel binary mixture was E30B70 due to the lower volatility of biodiesel. Adding less volatile biodiesel into the ternary mixture of ethanol-biodiesel-diesel can remarkably enhance micro-explosion. Addition of ethanol up to 20% in e-biodiesel showed no effect on spray penetration. However, increase of nozzle orifice diameter results in increase of spray penetration. The more study on liquid phase penetration and SMD in e-diesel and e-biodiesel is required.

Multiphase Flow Modeling of Molten Material-Vapor-Liquid Mixtures in Thermal Nonequilibrium

  • Park, Ik-Kyu;Park, Goon-Cherl;Bang, Kwang-Hyun
    • Journal of Mechanical Science and Technology
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    • 제14권5호
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    • pp.553-561
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    • 2000
  • This paper presents a numerical model of multi phase flow of the mixtures of molten material-liquid-vapor, particularly in thermal nonequilibrium. It is a two-dimensional, transient, three-fluid model in Eulerian coordinates. The equations are solved numerically using the finite difference method that implicitly couples the rates of phase changes, momentum, and energy exchange to determine the pressure, density, and velocity fields. To examine the model's ability to predict an experimental data, calculations have been performed for tests of pouring hot particles and molten material into a water pool. The predictions show good agreement with the experimental data. It appears, however, that the interfacial heat transfer and breakup of molten material need improved models that can be applied to such high temperature, high pressure, multi phase flow conditions.

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LPG 탱크로리 폭발시 파편 형상에 따른 비산거리 산정에 관한 연구 (A Study on the decision of Scattering distance by Shape of Fragments in LPG Tank lorry Explosion)

  • 이영진;황용우;이익모;문진영
    • 한국방재안전학회논문집
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    • 제10권2호
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    • pp.29-34
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    • 2017
  • LPG는 사고발생시 사람이나 환경에 치명적인 피해를 가져올 수 있으므로 많은 주의가 필요한 물질이다. LPG는 고정시설 뿐 아니라 운송시설에서도 사고가 빈번하게 발생하며, 그 중 LPG 탱크로리의 사고가 가장 많다. LPG 탱크로리가 운송중 전도되었을 때 LP가스는 2상(two phase) 상태로 누출되어, 대부분 기체로 누출되고 일부분 액체로 누출된다. 이때 누출된 기체도 공기보다 무겁기 때문에 아래로 가라앉게 되고, 누출이 계속된다면 증기운을 형성하여 점화원에 의해 폭발할 수도 있다. 본 연구에서는 LPG 탱크로리의 증기운 폭발 사고 발생시 파편에 대한 영향거리를 분석하여 대피거리를 제시함을 목적으로 한다. 파편의 비산반경 산출 결과, 최대 561m 비산하였다. 따라서 LPG 탱크로리의 누출시 대피하여야 하는 거리는 561 m 이상으로 설정하는 것이 필요하다고 판단된다.

2-유체 2상-유동 모델에서 근사 Jacobian 행렬을 이용한 2차원 캐비테이션의 예측 (TWO-DIMENSIONAL CAVITATION PREDICTION BASED ON APPROXIMATE JACOBIAN MATRIX IN TWO-FLUID TWO-PHASE FLOW MODELS)

  • 염금수;장근식
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2005년도 추계 학술대회논문집
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    • pp.183-186
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    • 2005
  • We developed an upwind numerical formulation based on the eigenvalues of the approximate Jacobian matrix in order to solve the hyperbolic conservation laws governing the two-fluid two-phase flow models. We obtained eight analytic eigenvalues in the two dimensions that can be used for estimate of the wave speeds essential in constructing an upwind numerical method. Two-dimensional underwater cavitation in a flow past structural shapes or by underwater explosion can be solved using this method. We present quantitative prediction of cavitation for the water tunnel wall and airfoils that has both experimental data as well as numerical results by other numerical methods and models.

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A Simple Volume Tracking Method For Compressible Two-Phase Flow

  • SHYUE KEH-MING
    • 천문학회지
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    • 제34권4호
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    • pp.237-241
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    • 2001
  • Our goal is to present a simple volume-of-fluid type interface-tracking algorithm to compressible two-phase flow in two space dimensions. The algorithm uses a uniform underlying Cartesian grid with some cells cut by the tracked interfaces into two subcells. A volume-moving procedure that consists of two basic steps: (1) the update of volume fractions in each grid cell at the end of the time step, and (2) the reconstruction of interfaces from discrete set of volume fractions, is employed to follow the dynamical behavior of the interface motion. As in the previous work with a surface-tracking procedure for general front tracking (LeVeque & Shyue 1995, 1996), a high resolution finite volume method is then applied on the resulting slightly nonuniform grid to update all the cell values, while the stability of the method is maintained by using a large time step wave propagation approach even in the presence of small cells and the use of a time step with respect to the uniform grid cells. A sample preliminary numerical result for an underwater explosion problem is shown to demonstrate the feasibility of the algorithm for practical problems.

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증기운 폭발이 인체에 미치는 영향에 대한 확률론적 평가 (Probabilistic Assesment of the Effects of Vapor Cloud Explosion on a Human Body)

  • 윤용균;주은혜
    • 터널과지하공간
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    • 제31권1호
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    • pp.52-65
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    • 2021
  • 본 연구에서는 멕시코시티 외곽에 있는 프로판 저장기지인 PEMIX 터미널에서 발생한 프로판 누출에 따른 증기운 폭발을 분석하였다. 누출된 4750 kg의 프로판에 대한 TNT 등가량은 9398 kg으로 평가되었다. 폭원으로부터 40~400 (m) 떨어진 지점에서의 최대과압, 양의 압력 지속시간, 충격량과 같은 폭발변수를 TNT 등가법과 다중에너지법을 적용하여 구하였다. 폭발 변수들을 이용하여 구한 프로빗 함수를 적용하여 폐 손상, 고막 파열, 머리 충격, 전신 전위 충격으로 인한 손상 확률을 평가하였다. 고려한 모든 거리에서 다중에너지법을 이용하여 구한 최대과압이 TNT 등가법을 적용하여 구한 최대과압보다 큰 것으로 나타났으나, 200 m 이후 지점부터는 큰 차이가 없는 것으로 평가되었다. 다중에너지법에 의해 구해진 최대과압을 적용하여 구조물 손상 범위를 평가한 결과 폭원으로부터 100 m 이내에 있는 구조물의 경우 완전히 붕괴될 것으로 예측되고, 400 m 떨어진 구조물의 유리창도 거의 파손될 것으로 추정되었다. 폐 손상에 의한 사망 확률은 충격파 진행방향으로 위치하고 있는 인체의 자세에 따라 달라지는 것으로 나타났으며, 인체 주변에 반사면이 있는 경우 사망 확률이 가장 큰 것으로 평가되었다. 충격파가 폐 손상, 고막 파열, 머리 충격, 전신 전위 충격에 미치는 영향을 평가한 결과 전신 전위 충격 < 폐 손상 < 고막파열 < 머리 충격 순으로 영향을 미치는 것으로 나타났다.