• 제목/요약/키워드: Particle Size Measurement

검색결과 444건 처리시간 0.026초

황사 시 제주지역 에어로졸의 수농도 특성 (The Characteristics of the Aerosol Number Concentration in Jeju Area During Asian Dust Events)

  • 강창희;허철구
    • 한국환경과학회지
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    • 제22권3호
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    • pp.347-358
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    • 2013
  • The aerosol number concentration have measured with an aerodynamic particle sizer spectrometer(APS) at Gosan in Jeju Island, which is known as background area in Korea, from March 2010 to February 2011. The obtained results of asian dust events and non-asian dust period have been compared. The results show that the entire averaged aerosol number concentration from APS measurement during asian dust events and non-asian dust period are about 341 particles/$cm^3$ and 240 particles/$cm^3$, respectively. During asian dust events, the number concentration in small size ranges(${\leq}0.4{\mu}m$) are similar to non-asian dust period, however, those in large size ranges(${\geq}0.7{\mu}m$) are very higher than non-asian dust period. The contributions of the size resolved number concentration(23 channel in $0.25{\sim}10.0{\mu}m$) to total number concentration in that range are dramatically decreased with increased particle size. The contributions of smaller size ranges(${\leq}0.4{\mu}m$) during asian dust events are very low compared with non-asian dust period, on the other hand, those of larger size ranges(${\geq}0.4{\mu}m$) are higher than non-asian dust period. The number concentration in each size range are strongly correlated with the concentration in adjacent size range. And the total aerosol number concentration are depended on the number concentration in range of smaller than $0.58{\mu}m$ during non-asian dust period and asian dust events. On the other hand, $PM_{10}$ mass concentration has mainly affected with the number concentration in range of smaller than $1.0{\mu}m$ during non-asian dust period, however, during asian dust events, the mass concentration has mainly affected with the number concentration in range of $0.65{\sim}3.0{\mu}m$.

Aspects of size effect on discrete element modeling of normal strength concrete

  • Gyurko, Zoltan;Nemes, Rita
    • Computers and Concrete
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    • 제28권5호
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    • pp.521-532
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    • 2021
  • Present paper focuses on the modeling of size effect on the compressive strength of normal concrete with the application of Discrete Element Method (DEM). Test specimens with different size and shape were cast and uniaxial compressive strength test was performed on each sample. Five different concrete mixes were used, all belonging to a different normal strength concrete class (C20/25, C30/37, C35/45, C45/55, and C50/60). The numerical simulations were carried out by using the PFC 5 software, which applies rigid spheres and contacts between them to model the material. DEM modeling of size effect could be advantageous because the development of micro-cracks in the material can be observed and the failure mode can be visualized. The series of experiments were repeated with the model after calibration. The relationship of the parallel bond strength of the contacts and the laboratory compressive strength test was analyzed by aiming to determine a relation between the compressive strength and the bond strength of different sized models. An equation was derived based on Bazant's size effect law to estimate the parallel bond strength of differently sized specimens. The parameters of the equation were optimized based on measurement data using nonlinear least-squares method with SSE (sum of squared errors) objective function. The laboratory test results showed a good agreement with the literature data (compressive strength is decreasing with the increase of the size of the specimen regardless of the shape). The derived estimation models showed strong correlation with the measurement data. The results indicated that the size effect is stronger on concretes with lower strength class due to the higher level of inhomogeneity of the material. It was observed that size effect is more significant on cube specimens than on cylinder samples, which can be caused by the side ratios of the specimens and the size of the purely compressed zone. A limit value for the minimum size of DE model for cubes and cylinder was determined, above which the size effect on compressive strength can be neglected within the investigated size range. The relationship of model size (particle number) and computational time was analyzed and a method to decrease the computational time (number of iterations) of material genesis is proposed.

상관영역 크기 변화에 따른 영상유속계의 오차 분석 (Error Analysis of Image Velocimetry According to the Variation of the Interrogation Area)

  • 김서준;류권규;윤병만
    • 한국수자원학회논문집
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    • 제46권8호
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    • pp.821-831
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    • 2013
  • 최근 수리 실험 및 계측 분야에 영상유속계가 많이 이용되고 있다. 그러나 영상유속계의 영상 분석에 대한 표준적인 방법과 측정 불확도가 정립되어 있지 않아 일반 사용자들이 사용하기 어려운 것이 사실이다. 특히 영상유속계를 이용한 유속 산정 시 상관영역 크기 결정에 대한 기준이 없기 때문에 사용자마다 유속 산정 결과가 차이가 나는 문제가 있다. 이에 본 연구에서는 영상유속계의 상관영역 크기 변화에 따른 오차분석을 통해 상관영역 크기 결정을 위한 자료를 제시하고 자한다. 오차분석을 위해 12개의 인공영상군을 제작하였으며, 다양한 입자수와 입자크기의 영상을 획득한 후 상관영역의 크기를 변화시키면서 산정한 유속을 인공영상의 유속 참값과 비교하여 오차분석을 수행하였다. 오차 분석결과 상관영역의 크기 변화에 따라 영상유속계로 산정한 유속값에 대한 오차가 달라짐을 확인하였고, 상관영역의 크기를 크게 결정할수록 오차가 줄어드는 것으로 나타났고, 동일한 상관영역의 크기로 유속을 산정할 경우 입자 크기가 증가할수록 또는 입자수가 증가할수록 오차가 작게 나타났다. 특히 영상유속계의 오차는 입자의 크기 보다는 입자수의 변화에 좀 더 영향을 많이 받는 것으로 나타났다. 또한 상관영역의 크기가 커짐에 따라 최대 오차와 최소 오차간의 간격이 줄어드는 것을 확인하였으며, 영상 전체에서 산정한 유속의 평균 오차가 5% 이하를 만족시키는 상관영역 크기를 기준으로 그 이하의 상관영역에 대해서는 최대 오차와 최소 오차간의 차이가 크게 나타나 영상유속계의 측정 불확실성이 큰 것으로 나타났다. 영상유속계의 신뢰수준별 입자밀도 변화에 따른 최소 상관영역의 크기를 분석한 결과 전반적으로 입자밀도가 커짐에 따라 상관영역의 크기는 작아지는 것으로 나타났지만 입자밀도가 작더라도 입자수가 큰 경우에는 신뢰수준을 만족시키는 최소 상관영역의 크기가 감소하는 것으로 나타났다.

Enhancing the Moisturizing Ability of the Skin Softener using Nanoemulsion Based on Phospholipid Liposome

  • Lee, Jinseo;Park, Su In;Heo, Soo Hyeon;Kim, Miok;Shin, Moon Sam
    • International Journal of Advanced Culture Technology
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    • 제8권1호
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    • pp.236-242
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    • 2020
  • In this paper, we present the improvement in low moisturizing ability and stability that existing skin softeners have due to the low oil content, by developing skin softener using nanoemulsion of phospholipid liposome, based on the properties of nanoemulsion in cosmetic formulation. In this study, two types of oil; dimethicone (DC 200/6cs) or medium chain triglyceride (MCT), and two kinds of lecithin; unsaturated or saturated were respectively applied to produce nanoemulsion. In the particle size analysis of nanoemulsion, the droplet size of nanoemulsion containing DC200/6cs and unsaturated lecithin was the smallest, and all nanoemulsion showed high stability in the measurement of zeta potential. Therefore, with the smallest particle size and high stability, moisture contents and trans epidermal water loss(TEWL) were measured using the skin softener of DC200/6cs and unsaturated lecithin contained nanoemulsion, and the measurement was compared with the non-oil skin softener and the skin softener with only small amount of oil. The results showed that the moisture content of the skin softener using nanoemulsion increased greatly than other two skin softeners, showing high hydration ability and water retention capacity, and TEWL decreased greatly, therefore preventing the evaporation of moisture from the skin. As a result, the oil content and stability of the skin softener was improved by utilizing nanoemulson based of phospholipid liposome, and it is expected to be used in various ways in cosmetic industry.

광산란법을 이용한 국내 석탄화력발전소 굴뚝에서 배출되는 PM10, PM2.5 측정 및 분석 (Measurement and analysis of PM10 and PM2.5 from chimneys of coal-fired power plants using a light scattering method)

  • 신동호;김영훈;홍기정;이건희;박인용;김학준;김용진;한방우;황정호
    • 한국입자에어로졸학회지
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    • 제16권4호
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    • pp.131-140
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    • 2020
  • Air pollutants emitted from chimneys of coal-fired power plants are considered to be a major source of fine particulate matter in the atmosphere. In order to manage fine particle in the chimney of a coal-fired power plant, it is necessary to know the concentration of fine particle emitted in real time, but the current system is difficult. In this study, a real-time measurement system for chimney fine particle was developed, and measurements were performed on six coal-fired power plants. Through the measurements, the mass concentration distribution according to the particle size could be secured. All six chimneys showed bimodal distribution, and the count median diameters of each mode were 0.5 and 1.1 ㎛. In addition, it was compared with the gravimetric measurement method, and it was determined that the relative accuracy for PM10 was within 20%, and the value measured using the developed measuring instrument was reliable. Finally, three power plants were continuously measured for one month, and as a result of comparing the concentration of PM10 according to the amount of power generation, it was confirmed that the PM10 discharged from the chimney increased in the form of an exponential function according to the amount of power generation.

PFOA Free 불소 고분자 및 실리카 나노졸을 이용한 self cleaning 표면 가공에 관한 연구 (A Study on the Self-cleaning Surface Finishing Using PFOA Free Fluoric Polymer and Silica Nano-sol)

  • 박성민;권일준;김란;염정현;윤남식;이경남
    • 한국염색가공학회지
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    • 제21권6호
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    • pp.1-11
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    • 2009
  • Super-hydrophobic surface, with a water contact angle greater than $150^{\circ}$, has a self cleaning effect termed 'lotus effect'. We introduced super-hydrophobicity onto aramid/rayon mixture fabric with dual-scale structure by assembling silica nano-sol. Mixture fabric was treated with silica nano-sol, fluoric polymer using various parameters such as particle size, concentration. Silica nano-sol size were measured using particle size analyzer. Morphological changes by particle size were observed using field emission scanning electron microscopy(FE-SEM), contact angle measurement equipment. The contact angle of water was about $134.0^{\circ}$, $137.0^{\circ}$, $143.0^{\circ}$, $139.5^{\circ}$ and $139.0^{\circ}$ for mixture fabric coated with 100.2nm, 313.7nm, 558.2nm, 628.5nm and 965.4nm silica nano-sol, compared with about $120.0^{\circ}$ for mixture fabric coated with fluoric polymer. When we mixed particle sizes of 100.2nm and 558.2nm by 7:3 volume ratio, the contact angle of water was about $146.2^{\circ}$. And we mixed particle sizes of 313.7nm and 558.2nm by 7:3 volume ratio, the contact angle of water was about $141.8^{\circ}$. Also we mixed particle sizes of 558.2nm and 965.4nm by 7:3 volume ratio, the best super-hydrophobicity was obtained. In this paper, we fabricated the water-repellent surfaces with various surface structures by using four types of silica nano-sol, and we found that the dual-scale structure was very important for the super-hydrophobicity.

구리의 선택적 전착에서 결정 입자의 크기가 전기적 접촉성에 미치는 영향 (Effect of the particle size on the electrical contact in selective electro-deposition of copper)

  • 황규호;이경일;주승기;강탁
    • 한국결정성장학회지
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    • 제1권2호
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    • pp.79-93
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    • 1991
  • 초 고집적 회로의 시대로 접어들면서 지금까지의 금속선 형성 기술 및 배선 재료에 많은 문제점들이 나타나고 있다. 알루미늄의 대체 재료로서 검토되고 있는 구리를, 전기 화학적 방법에 의해 미세 접촉창에 선택적으로 충전함으로써 새로운 금속선 형성 기술을 제시하고자 하였다. 0.75M의 황산구리 수용액을 전해액으로 사용하여 p형 (100) 규소 박판위에 구리 전착막을 형성한 후 Alpha Step, 주사 전자 현미경, 4-탐침법을 사용하여 막의 두께, 입자 크기, 비저항을 측정함으로써 전착 시간, 전류 밀도, 첨가물로 사용한 젤라틴 농도가 전착막의 성질에 미치는 영향에 대해 조사하였다. 평균 전착 속도는 전류 밀도가 $ 2A/dm^2$일 때 0.5-0.6\mu\textrm{m}$/min 였고 구리 입자의 크기는 전류밀도 증가에 따라 증가하였다. 입자 크기 $4000{\AA}$이상에서 얻어진 비저항값은 3-6 Ω.cm였다. 젤라틴을 첨가하여 입자의 크기를 $0.1\mu\textrm{m}$이하로 감소시킴으로써 크기 $1\mu\textrm{m}$이하의 접촉장에 구리를 선택적으로 충전시키는데 성공하였다.

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AlN 세라믹의 hot pressing에 사용되는 Y2O3 및 Al2O3 소결조제의 효과 (Effects of Y2O3 and Al2O3 Addition on the Properties of Hot Pressed AlN Ceramics)

  • 공만식;홍현선;이성규;서민혜;정항철
    • 한국재료학회지
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    • 제17권10호
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    • pp.560-566
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    • 2007
  • AlN plates were fabricated by hot pressing at $1700-1900^{\circ}C$ using yttria and alumina (3 and $10\;{\mu}m$ particle size) powders as additives and characterized: density, thermal conductivity, transverse rupture strength, and grain size measurement by SEM and EDS. Density values of $3.31-3.34\;g/cm^3$ are largely attributed to hot pressing of powder mixtures in carbon mold under $N_2$ atmosphere which caused effective degree of oxygen removal from yttrium-aluminate phase expected to form at $1100^{\circ}C$. The grain size of hot pressed AlN was almost homogeneous, with size approximately from 3.2 to $4.0\;{\mu}m$ after hot pressing. $Al_2O_3$ powder of $3\;{\mu}m$ particle size resulted in better transverse rupture strength and finer grain size compared to $10\;{\mu}m$ $Al_2O_3$ powder. The thermal conductivity of AlN ranged between $83-92.7\;W/m{\cdot}K$ and decreased with $Al_2O_3$ addition. Fine grain size is preferred for better mechanical properties and thermal conductivity.

용탕단조한 AC4A $Al/Al_2O_3+SiC_p$ 하이브리드 금속복합재료의 미세조직과 기계적 성질 (Microstructure of Squeeze Cast AC4A $Al/Al_2O_3+SiC_p$ Hybrid Metal Matrix Composite)

  • 김민수;조경목;박익민
    • 한국주조공학회지
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    • 제14권3호
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    • pp.258-266
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    • 1994
  • AC4A $Al/Al_2O_3+SiC_p$ hybrid composites were fabricated by the squeeze infiltration technique. Effect of applied pressure, volume fraction of reinforcement($Al_2O_3$ and SiC) and SiC particle size($4.5{\mu}m$, $6.5{\mu}m$ and $9.3{\mu}m$) on the solidification microstructure of the hybrid composites were examined. Mechanical properties were estimated preliminarly by fractographic observation, hardness measurement and wear test. Results show that the microstructure of the hybrid composites were quite satisfactory, namely revealing relatively uniform distribution of reinforcements and refined matrix. Some aggregation of SiC particle caused by particle pushing was observed especially in the hybrid composites containg in fine particle($4.5{\mu}m$). Refined matrix was attributed to applied pressure and increased nucleation sites with addition of reinforcements. Fractured facet also revealed finer for the hybrid composites possibly due to refined matrix. Hardness and wear resistance increased with volume fraction of reinforcements. For hybrid composites with $9.3{\mu}m$ SiC, hardness was somewhat lower and wear resistance higher than other composites.

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산화촉매를 장착한 대형 CNG 엔진의 나노입자 배출특성 (Nanoparticles Emission Characteristics of Heavy-Duty CNG Engine with Oxidation Catalyst)

  • 김태준;김화남;최병철
    • 동력기계공학회지
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    • 제12권5호
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    • pp.27-33
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    • 2008
  • Natural gas has been considered one of the most promising alternative fuels for transportation because of its abundance as well as its ability to reduce regulated pollutants. We measured emission characteristics of nanoparticles from lean burn H/D(Heavy-Duty) CNG (Compressed Natural Gas) engine equipped with oxidation catalysts. The experiments were carried out to measure the emission and engine performance according to the ESC test cycle. The CO and THC conversion efficiencies on the best catalyst in the ESC test cycle achieved about 91 % and 83 %, respectively. From the measurement by the SMPS, the number of nanoparticles emitted from H/D CNG engine is reduced by about 99 % which is more than that of 2.5 L diesel engine. The particle number concentrations of H/D CNG engine were almost nanoparticles. Nanoparticles smaller than 30 nm emitted from the H/D CNG engine and diesel engine equipped with a CDPF(Catalyzed Diesel Particulate Filter) were quite similar. However, the particles bigger than 30nm from the CNG engine were smaller than the particles from diesel engine equipped with a CDPF. The higher the CNG engine load, the lower the particle number from engine-out, but it increased slightly at full load.

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