• 제목/요약/키워드: Fuel Film

검색결과 350건 처리시간 0.024초

세 가지 유형 와류 분사기들의 미립화 특성 (Atomization Characteristics of Three Types of Swirl Injectors)

  • 정하동;안종현;안규복
    • 한국분무공학회지
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    • 제28권2호
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    • pp.75-88
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    • 2023
  • In this paper, the atomization characteristics of bi-swirl coaxial injectors for a 420 N-class bipropellant thruster were investigated. Three types of injectors, namely closed-type, open-type, and screw-type, were manufactured and designed to have the same spray angle and injection pressure drop. Water was used as a simulant, and cold-flow tests were conducted under ambient temperature and pressure conditions. Since the inner and outer injectors were designed to be the same type, only the inner fuel injectors that were easy to measure were used. Using a phase doppler particle analyzer, the velocity and diameter of atomized droplets were measured. Closed-type swirl injector exhibited droplet distributions with relatively high velocities and small SMD compared to the other two injectors. Open-type swirl injector formed droplets with reverse velocities in the center region and had a large recirculation zone. Screw-type swirl injector showed a sharp decrease in droplet velocity and size with radial distance from the liquid film breakup point. For the same design requirements, the closed-type swirl injector has superior atomization performance.

VISUALIZATION AND MEASUREMENT OF A NARROW-CONE DI GASOLINE SPRAY FOR THE IMPINGEMENT ANALYSIS

  • Park, J.S.;Im, K.S.;Kim, H.S.;Lai, M.C.
    • International Journal of Automotive Technology
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    • 제5권4호
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    • pp.221-238
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    • 2004
  • Wall interactions of direct injection spray were investigated using laser-sheet imaging, shadowgraphy, wetted footprint and phase Doppler interferometry techniques. A narrow-cone high-pressure swirl injector is used to inject iso-octane fuel onto a plate, which has three different impact angles inside a pressurized chamber. Heated air and plate conditions were compared with unheated cases. Injection interval was also varied in the heated case to compare dry- and wet- wall impingement behaviors. High-speed macroscopic Mie-scattering images showed that presence of wall and air temperature has only minor effect on the bulk spray structure and penetration speed for the narrow-cone injector tested. The overall bulk motions of the spray plume and its spatial position at a given time are basically unaffected until a few millimeters before impacting the wall. The surface properties of the impact surface, such as the temperature, the presence of a preexisting liquid film also have a small effect on the amount of wetting or the wetted footprint; however, they have strong influence on what occurs just after impact or after a film is formed. The shadowgraph in particular shows that the plate temperature has a significant effect on vapor phase propagation. Generally, 10-20% faster horizontal vapor phase propagation is observed along the wall at elevated temperature condition. For impingement onto a preexisting film, more splash and evaporation were also observed. Contrary to some preconceptions, there is no significant splashing and droplet rebounding from surfaces that are interposed in the path of the DI gasoline spray, especially for the oblique impact angle cases. There also appears to be a dense spray front consists of large sac spray droplets in the oblique impact angle cases. The bulk of the spray is not impacted on the surface, but rather is deflected by it The microscopic details as depicted by phase Doppler measurements show that the outcome of the droplet impaction events can be significantly influenced. Only droplets at the spray front have high enough Weber numbers for wall impact to wet, splash or rebound. Using the sign of vertical velocity, the time-resolved downward droplets and upward droplets are compared. The Weber number of upward moving droplets, which seldom exceeds unity, also decreases as the impact angle decreases, as the droplets tend to impact less and move along the wall in the deflected spray plume.

Development of Visible-light Responsive $TiO_2$ Thin Film Photocatalysts by Magnetron Sputtering Method and Their Applications as Green Chemistry Materials

  • Matsuoka, Masaya
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2010년도 춘계학술발표대회
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    • pp.3.1-3.1
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    • 2010
  • Water splitting reaction using photocatalysts is of great interest in the utilization of solar energy [1]. In the present work, visible light-responsive $TiO_2$ thin films (Vis-$TiO_2$) were prepared by a radio frequency magnetron sputtering (RF-MS) deposition method and applied for the separate evolution of $H_2$ and $O_2$ from water as well as the photofuel cell. Special attentions will be focused on the effect of HF treatment of Vis-$TiO_2$ thin films on their photocatalytic activities. Vis-$TiO_2$ thin films were prepared by an RF-MS method using a calcined $TiO_2$ plate and Ar as the sputtering gas. The Vis-$TiO_2$ thin films were then deposited on the Ti foil substrate with the substrate temperature at 873 K (Vis-$TiO_2$/Ti). Vis-$TiO_2$/Ti thin films were immersed in a 0.045 vol% HF solution at room temperature. The effect of HF treatments on the activity of Vis-$TiO_2$/Ti thin films for the photocatalytic water splitting reaction have been investigated. Vis-$TiO_2$/Ti thin films treated with HF solution (HF-Vis-$TiO_2$/Ti) exhibited remarkable enhancement in the photocatalytic activity for $H_2$ evolution from a methanol aqueous solution as well as in the photoelectrochemical performance under visible light irradiation as compared with the untreated Vis-$TiO_2$/Ti thin films. Moreover, Pt-loaded HF-Vis-$TiO_2$/Ti thin films act as efficient and stable photocatalysts for the separate evolution of $H_2$ and $O_2$ from water under visible light irradiation in the presence of chemical bias. Thus, HF treatment was found to be an effective way to improve the photocatalytic activity of Vis-$TiO_2$/Ti thin films. Furthermore, unique separate type photofuel cell was fabricated using a Vis-$TiO_2$ thin film as an electrode, which can generate electrical power under solar light irradiation by using various kinds of biomass derivatives as fuel. It was found that the introduction of an iodine ($I^-/{I_3}^-$) redox solution at the cathode side enables the development of a highly efficient photofuel cell which can utilize a cost-efficient carbon electrode as an alternative to the Pt cathode.

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TEOS/염기 및 MTMS/산 혼성 용액으로 제조한 반사방지 코팅막의 특성 (Characteristics of Anti-reflective Coating Film Prepared from Hybrid Solution of TEOS/Base and MTMS/Acid)

  • 박현규;김효섭;박주식;김영호
    • 공업화학
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    • 제30권3호
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    • pp.358-364
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    • 2019
  • 반사 방지(anti-reflective; AR) 코팅막의 광학 특성 및 내오염성을 향상하기 위하여 tetraethylorthosilicate (TEOS)/염기 및 methyltrimethoxysilane (MTMS)/산 혼성 용액의 혼합비를 변화시키며 다양한 AR 코팅막을 제조하였다. 제조된 AR 코팅막은 UV-Vis, 접촉각 측정기, AFM, FT-IR 및 연필 경도 시험을 통해 특성을 분석하였다. MTMS/산 용액의 함량이 10 wt%인 혼성 용액으로 제조한 AR 코팅막에서 유리 기판은 매우 우수한 광학 특성(97.2%의 투과율), 우수한 내오염성($121^{\circ}$의 물 접촉각 및 $90^{\circ}$$CH_2I_2$ 접촉각), 중간 정도의 기계적 강도(4 H의 연필 경도)를 나타내었다. 특히 우수한 내오염성은 기판의 표면 위에서 혼성 용액 내 소량의 MTMS/산 용액으로부터 유래된 메틸기($-CH_3$)의 고른 분산에 기인한 것으로 고려되었다. 연필 경도 시험 결과로부터, AR 코팅막의 기계적 강도는 MTMS/산 용액의 함량이 증가할수록 향상되는 것으로 나타났다.

첨가제가 혼합된 미세물분무의 소화성능에 관한 연구 (A Study on the Extinguishing Performance of Water Mist with Additives)

  • 이경덕;신창섭
    • 한국화재소방학회논문지
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    • 제16권1호
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    • pp.1-7
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    • 2002
  • 할론 소화약제는 오존층파괴지수와 지구온난화지수가 높아 환경문제를 야기하며, 이의 대체기술의 일환으로 미세물분무에 대한 관심이 집중하고 있다. 미세물분무에 대한 연구로는 적용화재에 보다 효과적인 소화를 위한 최적의 물입자를 만들려는 연구와 함께 첨가제를 이용하여 미세물분무의 소화성능을 향상시키기 위한 연구가 진행되고 있다. 본 연구는 이전 연구$^{1)}$ 에서 제시한 순수한 미세물분무의 입자크기, 방사분포 및 화염크기에 따른 ethanol과 n-heptane 화염의 진압특성과 소화시간에 대한 연구를 기반으로, 여기에 미세물분무의 물리적 소화성능의 향상과 화학적 소화성능을 부여하기 위해 첨가제를 첨가하였을 때의 성능을 평가하고 최적의 조건을 구하고자 하였다. 실험결과, ethanol panl 화염에 7N3노즐을 4kg/$\textrm{cm}^2$로 방사한 경우 0.3% AFFF와 2.5wt% NaCl를 첨가한 미세물분무는 순수한 미세물분무 보다 27%와 60% 빠른 소화시간을 나타냈다. AFFF의 첨가는 연료표면 위에서 얇은 막을 형성하여 화염으로부터 연료 표면으로 되돌아오는 열을 감소하므로 연료표면에서의 화염온도 감소와 함께 n-heptane 연료의 증발을 감소함으로서 소화가 이루어지는 것으로 판단되며, 또한 알칼리 염인 2.5wt% NaCl을 첨가한 경우 화염면에 알칼리염 결정체가 형성되는 현상이 나타났다.

Sulfonated Ether Sulfone을 포함한 Crosslinkable m-Aramid계 Ionomer의 합성과 연료전지 막으로의 이용 (Synthesis of Crosslinkable m-Aramid Ionomer Containing Sulfonated Ether Sulfone and Their Characterization for PEMFC Membrane)

  • 정현진;김정민;조창기
    • 폴리머
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    • 제34권3호
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    • pp.202-209
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    • 2010
  • 열적 안정성과 기계적 강도에서 우수한 장점을 지니고 있는 메타계 aramid segment와 제막 특성이 우수하고 내가수분해성이 우수한 sulfone segment로 이루어진 공중합체를 이용하여 연료 전지용 막으로서의 응용가능성을 연구하였다. 아라미드 고분자의 solubility와 processability를 향상시키기 위해 아민기를 갖는 sulfonated ether sulfone단량체와 m-phenylene diamine 그리고 isophthaloyl chloride를 반응시켜 아민으로 말단화된 랜덤공중합체를 합성하고 이것을 acryloyl chloride와 반응시켜 양 말단에 2중 결합이 도입된 고분자전구체를 합성하였다. 얻어진 고분자전구체는 열 가교를 통해 고분자 전해질 막으로 제조되었으며, 전구체의 합성을 비롯한 각 단계의 반응은 $^1H$ NMR, FTIR, 및 적정에 의하여 확인되었다. 얻어진 전해질막은 이온교환용량과 함수율, 수소이온전도도, 열적 특성 등이 측정되었으며, sulfonated ether sulfone 단량체의 함유량이 증가할수록 이온교환용량, 함수율, 수소이온전도도가 증가하는 것이 관찰되었다. Sulfonic acid sulfone segment를 30 몰%로 갖는 고분자 전해질 막의 경우 이온교환용량이 1.57 meq/g, 함수율은 44 wt% 이하의 수치를 보였으며, 가장 높은 수소이온전도도의 값은 상대습도 100%, $25^{\circ}C$에서 $3.93{\times}10^{-2}S/cm$이었다.

Aluminum Powder Metallurgy Current Status, Recent Research and Future Directions

  • Schaffer, Graham
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2001년도 추계학술강연 및 발표대회
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    • pp.7-7
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    • 2001
  • The increasing interest in light weight materials coupled to the need for cost -effective processing have combined to create a significant opportunity for aluminum P/M. particularly in the automotive industry in order to reduce fuel emissions and improve fuel economy at affordable prices. Additional potential markets for Al PIM parts include hand tools. Where moving parts against gravity represents a challenge; and office machinery, where reciprocating forces are important. Aluminum PIM adds light weight, high compressibility. low sintering temperatures. easy machinability and good corrosion resistance to all advantages of conventional iron bm;ed P/rv1. Current commercial alloys are pre-mixed of either the AI-Si-Mg or AL-Cu-Mg-Si type and contain 1.5% ethylene bis-stearamide as an internal lubricant. The powder is compacted in closed dies at pressure of 200-500Mpa and sintered in nitrogen at temperatures between $580~630^{\circ}C$ in continuous muffle furnace. For some applications no further processing is required. although most applications require one or more secondary operations such as sizing and finishing. These sccondary operations improve the dimension. properties or appearance of the finished part. Aluminum is often considered difficult to sinter because of the presence of a stable surface oxide film. Removal of the oxide in iron and copper based is usually achieved through the use of reducing atmospheres. such as hydrogen or dissociated ammonia. In aluminum. this occurs in the solid st,lte through the partial reduction of the aluminum by magncsium to form spinel. This exposcs the underlying metal and facilitates sintering. It has recently been shown that < 0.2% Mg is all that is required. It is noteworthy that most aluminum pre-mixes contain at least 0.5% Mg. The sintering of aluminum alloys can be further enhanced by selective microalloying. Just 100ppm pf tin chnnges the liquid phase sintering kinetics of the 2xxx alloys to produce a tensile strength of 375Mpa. an increilse of nearly 20% over the unmodified alloy. The ductility is unnffected. A similar but different effect occurs by the addition of 100 ppm of Pb to 7xxx alloys. The lend changes the wetting characteristics of the sintering liquid which serves to increase the tensile strength to 440 Mpa. a 40% increase over unmodified aIloys. Current research is predominantly aimed at the development of metal matrix composites. which have a high specific modulus. good wear resistance and a tailorable coefficient of thermal expnnsion. By controlling particle clustering and by engineering the ceramic/matrix interface in order to enhance sintering. very attractive properties can be achicved in the ns-sintered state. I\t an ils-sintered density ilpproaching 99%. these new experimental alloys hnve a modulus of 130 Gpa and an ultimate tensile strength of 212 Mpa in the T4 temper. In contest. unreinforcecl aluminum has a modulus of just 70 Gpa.

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직접 메탄올 연료전지를 위한 술폰화 폴리스티렌/테플론 복합막 제조 및 특성연구 (Sulfonated Polystyrene/PTFE Composite Membranes for Direct Methanol Fuel Cell)

  • 김정훈;신정필;박인준;이수복;서동학
    • 멤브레인
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    • 제14권2호
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    • pp.173-184
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    • 2004
  • 술폰화 폴리스티렌/테플론(Polystyrene/Teflon, 이하 'PS/PTFE'로 칭함) 복합막을 제조하여 직접 메탄을 연료전지용 막에 관한 특성을 조사하였다. 복합막은 다음과 같이 제조되었다. 먼저 다공성 테플론 필름에 styrene 단량체와 가교제인 diviny benzene (이하 'DVB'로 칭함)의 비율을 달리하면서, 개시제 2,2'-azobis(isobutylonitlie) (AIBN)와 함께 함침시킨 후 열을 가해 폴리스티렌/테플론 복합막을 제조하였다. 그 후 술폰화제인 chlorosulfonic acid와 1,2-dichloroethane혼합용액을 사용하여 술폰화된 복합막을 제조하였다. 제조된 복합막의 술폰화 전과 후의 물리화학적 구조는 ATR-FTIR, SEM, THF 및 물에 대한 함유율, 이들의 이온교환량을 통하여 확인하였다. 이러한 결과로부터 스티렌/디비닐벤젠의 비율에 따라 복합막이 성공적으로 제조되었음을 확인하였다. 또한 가교제인 디비닐벤젠의 함량이 높을수록, 가교도가 증가하여 물 및 THF에 대한 함유율이 감소하였다. 이온전도도, 메탄올투과도를 조사한 결과, 디비닐벤젠의 함량 증가와 함께 이온전도도는 감소하였으며, 메탄올 투과도가 감소하였다. 제조된 술폰화된 폴리스티렌/테플론 복합막은 Nafion$^{(R)}$ 과 비교할 만한 높은 이온 전도도(0.11∼0.08 S/cm, $25^{\circ}C$)를 보이면서 훨씬 낮은 메탄올 투과도($6.6{\times}10^{-7}∼1.3{\timas}10^{-7}$ $\textrm{cm}^2$/s)를 나타내었다. 이러한 결과들은 본 연구에서 개발된 복합막이 직접 메탄올 연료전지에 적용될 가능성이 높다는 것을 보여준다.

Sulfonated Poly(ether sulfone)과 p-Phenylene Terephthalamide 세그먼트를 포함하는 가교 공중합체 멤브레인의 제조 및 특성 연구 (Preparation and Characterization of Crosslinked Copolymer Membrane Containing Sulfonated Poly(ether sulfone) and p-Phenylene Terephthalamide Segments)

  • 김정민;황승식;조창기
    • 폴리머
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    • 제35권2호
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    • pp.106-112
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    • 2011
  • 열적 안정성과 기계적 강도에서 우수한 장점을 지니고 있는 파라계 aramid 세그먼트와 제막 특성이 우수하고 내 가수분해성이 우수한 sulfone 세그먼트로 이루어진 공중합체를 이용하여 연료 전지용 막으로써의 응용가능성을 연구하였다. 아라미드 고분자의 용해도를 향상시키기 위해 아민기를 갖는 sulfonated ether sulfone 단량체와 p-phenylene diamine 그리고 terephthaloyl chloride를 일정한 순서로 반응시켜 아민으로 말단화된 공중합체를 합성하고 이것을 epoxy group을 함유하고 있는 trimethylolpropane triglycidyl ether(TMPTGE)와 열 가교를 통해 고분자 전해절막으로 제조되었으며, 전구체의 합성을 비롯한 각 단계의 반응은 $^lH$ NMR, FTIR, 및 적정에 의하여 확인되었다. 얻어진 전해질막은 이온교환용량과 함수율, 수소이온전도도 등이 측정되었으며 sulfonated ether sulfone 단량체의 함유량이 증가할수록 이온교환용량, 함수율, 수소이온전도도가 증가하는 것이 관찰되었다. Sulfonic acid sulfone 세그먼트를 60 몰%로 갖는 고분자 전해질막의 경우 이온교환용량이 1.88 meq/g, 함수율은 110wt% 이하의 수치를 보였으며, 가장 높은 수소이온전도도의 값은 상대습도 100%, $25^{\circ}C$에서 $7.4{\times}10^{-2}$ S/cm이었다.

Development of Semi-basement Type Greenhouse Model for Energy Saving

  • Kim, Seoung Hee;Joen, Jong Gil;Kwon, Jin Kyeong;Kim, Hyung Kweon
    • Journal of Biosystems Engineering
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    • 제41권4호
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    • pp.328-336
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    • 2016
  • Purpose: The heat culture areas of greenhouses have been continuously increasing. In the face of international oil price fluctuations, development of energy saving technologies is becoming essential. To save energy, auxiliary heat source and thermal insulation technologies are being developed, but they lack cost-efficiency. The present study was conducted to save energy by developing a conceptually new semi-basement type greenhouse. Methods: A semi-basement type greenhouse, was designed and constructed in the form of a three quarter greenhouse as a basic structure, which is an advantageous structure to inflow sunlight. To evaluate the performance of the developed greenhouse, a similar structured general greenhouse was installed as a control plot, and heating tests were conducted under the same crop growth conditions. Results: Although shadows appeared during the winter in the semi-basement type greenhouse due to the underground drop, the results of crop growth tests indicated that there were no differences in crop growth and development between the semi-basement type greenhouse and the control greenhouse, indicating that the shadows did not affect the crop up to the height of the crop growing point. The amount of fuel used for heating from January to March was almost the same between the two greenhouses for tests. The heating load coefficients of the experimental greenhouses were calculated as $3.1kcal/m^2{\cdot}^{\circ}C{\cdot}h$ for the semi-basement type greenhouse and $2.9kcal/m^2{\cdot}^{\circ}C{\cdot}h$ for the control greenhouse. Since the value is lower than the double layer PE (polyethylene) film greenhouse value of $3.5kcal/m^2{\cdot}^{\circ}C{\cdot}h$ from a previous study, Tthe semi-basement type greenhouse seemed to have energy saving effects. Conclusions: The semi-basement type greenhouse could be operated with the same fuel consumption as general greenhouses, even though its underground portion resulted in a larger volume, indicating positive effects on energy saving and space utilization. It was identified that the heat losses could be reduced by installing a thermal curtain of multi-layered materials for heat insulation inside the greenhouse for the cultivation of horticultural products by installing thermal curtain of multi-layered materials for heat insulation inside the greenhouse, it was identified that the heat losses could be reduced.