• Title/Summary/Keyword: Liquid Particle

검색결과 928건 처리시간 0.026초

전산유체 기법을 이용한 용존공기부상법에서의 접촉도 조건변화에 따른 충돌효율평가 (Collision Efficiency Estimation in the DAF Contact Zone using Computational Fluid Dynamics)

  • 김성훈;유제선;박희경
    • 상하수도학회지
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    • 제18권2호
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    • pp.201-207
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    • 2004
  • Dissolved air flotation (DAF) is a solid-liquid separation process that uses fine rising bubbles to remove particles in water. Most of particle-bubble collision occurs in the DAF contact zone. This initial contact considered by the researchers to play a important role for DAF performance. It is hard to make up conceptual model through simple mass balance for estimating collision efficiency in the contact zone because coupled behavior of the solid-liquid-gas phase in DAF system is 90 complicate. In this study, 2-phase(gas-liquid) flow equations for the conservation of mass, momentum and turbulence quantities were solved using an Eulerian-Eulerian approach based on the assumption that very small particle is applied in the DAF system. For the modeling of turbulent 2-phase flow in the reactor, the standard $k-{\varepsilon}$ mode I(liquid phase) and zero-equation(gas phase) were used in CFD code because it is widely accepted and the coefficients for the model are well established. Particle-bubble collision efficiency was calculated using predicted turbulent energy dissipation rate and gas volume fraction. As the result of this study, the authors concluded that bubble size and recycle ratio play important role for flow pattern change in the reactor. Predicted collision efficiency using CFD showed good agreement with measured removal efficiency in the contact zone. Also, simulation results indicated that collision efficiency at 15% recycle ratio is higher than that of 10% and showed increasing tendency of the collision efficiency according to the decrease of the bubble size.

Efficient Representation of Pore Flow, Absorption, Emission and Diffusion using GPU-Accelerated Cloth-Liquid Interaction

  • Jong-Hyun Kim
    • 한국컴퓨터정보학회논문지
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    • 제29권6호
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    • pp.23-29
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    • 2024
  • 본 논문에서는 옷감과 입자 기반 유체 해법인 SPH(Smoothed particle hydrodynamics)를 이용한 액체 간의 상호작용으로 표현되는 다공성 흐름(Pore flow), 흡수, 방출 그리고 확산 효과를 GPU 기반으로 빠르게 표현할 수 있는 방법을 제안한다: 1) 옷감-액체의 상호작용에 의해 표현되는 다양한 물리적 효과를 GPU 기반으로 표현할 수 있는 통합형 프레임워크, 2) SPH 기반으로 노드의 포화도를 효율적으로 계산하고 이를 주변 Porous 입자들로 전달하는 방법, 3) 유체 흡수 및 방출 방향을 안정적으로 계산하기 위해 다르시 법칙(Darcy's law)을 기반으로 안정성을 개선시키는 방법, 4) Porous 입자들로 흡수되는 과정에서 유체의 흐름 방향에 따라 흡수되는 양을 조절하는 방법, 마지막으로 5) SPH 입자의 최대 질량이 넘지 않도록 방출할 수 있는 방법을 제시한다. 제안하는 방식의 가장 큰 장점은 모든 연산이 GPU에서 계산되고 동작하기 때문에 빠르게 옷감과 유체의 상호작용으로 표현되는 다공성 재질, 다공성 흐름, 흡수, 반사, 확산 등을 모델링할 수 있다.

바이오디젤 사용에 따른 경유승용차의 나노입자 배출특성 연구 (A Study on the Nano-particles Emission Exhausted from Diesel Passenger Vehicle According to Using Biodiesel)

  • 권상일;이창식
    • 한국분무공학회지
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    • 제12권1호
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    • pp.65-70
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    • 2007
  • This paper is to investigate the characteristics of exhaust emissions and nano-particle emission from diesel passenger vehicle according to using biodiesel fuel as an alternative fuel. In this work, the particulate matters (PM) of exhaust emissions in diesel engine were investigated by number of particles and mass measurement. The mass of the total PM was measured using the standard gravimetric measurement method, the total number concentrations were measured on a ECE15+EUDC driving cycle using Condensation Particle Counter (CPC). Total PM emission was reduced $2{\sim}38%$ and number concentration was reduced $1{\sim}27%$ according to increasing blended ratio of biodiesel with diesel fuel. Total PM emission was reduced more than particle number emission because volatile particles were measured in total PM but were not measured in particle number emissions.

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분무 액적 특성 계측을 위한 디지털 입자 홀로그래피 시스템의 개발 (Development of Digital Particle Holographic System for Measurements of the Characteristics of Spray Droplets)

  • ;강보선
    • 한국분무공학회지
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    • 제15권2호
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    • pp.53-60
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    • 2010
  • This study presents development of digital particle holographic system and its application to spray field to measure three-dimensional velocities and sizes of spray droplets. A double exposure hologram recording system with synchronization system for time control was established and digital holograms can be recorded in a short time interval. To process recorded holograms, the correlation coefficient method was used for focal plane determination of particles. To remove noises and improve the quality of holograms and reconstructed images, the Wiener filter was adopted. The two-threshold and image segmentation methods were used in binary image transformation. For particle pairing, the match probability method was adopted. The developed system was applied to spray field and three-dimensional velocities and sizes of spray droplets were measured. The measurement results of digital holographic system were compared with those made by laser instruments, PDPA(Phase Doppler Particle Analyzer), which proved the feasibility of in-line digital particle holographic system as a good measurement tool for spray droplets.

디지털 홀로그래피 입자 속도 계측시스템의 검증 (Validation of Digital Holographic Particle Velocity Measurement System)

  • 노현석;강보선
    • 한국분무공학회지
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    • 제18권3호
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    • pp.119-125
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    • 2013
  • Digital holographic particle velocity measurement system can be a promising optical tool for the measurements of three dimensional particle velocities. In this research, validation experiments for the digital holographic particle velocity measurement system were conducted with measuring the velocities of glass beads on a rotating disk. Uncertainty analysis was performed to identify the sources of all relevant errors and to evaluate their magnitudes. The measurement results of particle velocities obtained with digital holographic method are compared reasonably well with the known values within acceptable range of errors. Moreover, digital holographic method showed better performance compared with that of optical holographic system.

가스-입자 동시주입법에 의한 A356/SiCp 복합재료의 제조 및 기계적 특성 (Fabrication and Mechanical Properties of A356/SiCp Manufactured by Gas-Particle Co-injection Method)

  • 이정무;강석봉;엄칠용;임차용
    • 한국주조공학회지
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    • 제21권1호
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    • pp.33-40
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    • 2001
  • Among the many techniques available to synthesis metal matrix composites, liquid phase processing, especially, conventional casting process such as stir-casting process is particularly attractive for their simplicity, economy and flexibility, In the present study, A356/20%SiCp composites were fabricated by gas-particle co-injection method. The gas-particle co-injection method is a modified stir-casting method and the corporation of particle could be improved by acceleration of particles due to rotation of impeller and gas purging. The microstructures and mechanical properties such as tensile properties and resistance to wear of fabricated materials were examined. Further, the particle injection mechanism in gas-particle co-injection method was discussed.

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Squeeze Casting법에 의해 제조된 A356/coated SiC복합재료의 미세조직과 기계적 특성에 관한 연구 (A Study on Microstructures and Mechanical Properties of A356/coated SiC Composites Fabricated by Squeeze Casting)

  • 이경구;이도재
    • 한국주조공학회지
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    • 제14권5호
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    • pp.429-437
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    • 1994
  • Influence of interfacial structure between matrix and particle in A356/coated SiC composite fabricated by squeeze casting method was studied. Experimental variables are types of coated metallic film on SiC particles such as Cu, Ni-P, and applied pressure for squeeze casting. It was found that coating treatment on SiC particles improves the wetting of liquid A356 alloy on SiC particles. SiC particle distribution is very homogeneous in A356 matrix alloy which is fabricated by squeeze casting. Analysing the surface morphology of fractured A356/coated SiC, it was concluded that metallic thin film by coating treatment on SiC particle improves the interfacial bonding between particle and matrix, and so does on mechanical properties such as tensile strength. However, there was on significant difference in hardness between those composite made of as-received SiC particle and coated SiC particle.

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홀로그래피 입자속도 측정시스템의 개발과 분무 액적에의 적용 (Development of Holographic Particle Velocimetry System and Its Application to Spray Droplets)

  • 추연준;강보선
    • 한국분무공학회지
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    • 제10권3호
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    • pp.17-28
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    • 2005
  • The Holographic Particle Velocimetry system can be a promising optical tool for the measurements of three dimensional particle velocities. In this study, diffused illumination holographic system to measure the sizes and 3D velocities of moving particles based on automatic image processing was developed. First of all basic optical systems for pulse laser recording, continuous laser reconstruction, and image acquisition, were constructed. To determine the position of particles in the optical axis, new three auto-focusing parameters(AEP), namely, Correlation Coefficient, Sharpness Index, and Depth Intensity were introduced and verified. The developed system was applied to spray droplets to validate the capability of the system. Three dimensional positions of particles viewed from two sides were decided using AFP and then 3D velocities of Particles were extracted by particle tracking algorithm. Comparison of measurement results of sizes and 3D velocities of particles with those obtained by laser instrument, PDPA, showed good consistency of the developed holographic system.

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