• 제목/요약/키워드: Recondensation

검색결과 9건 처리시간 0.024초

열적 메커니즘에 의한 펄스레이저 어블레이션 현상의 수치계산 (Numerical computation of pulsed laser ablation phenomena by thermal mechanisms)

  • 오부국;김동식
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 춘계학술대회
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    • pp.1572-1577
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    • 2003
  • High-power pulsed laser ablation under atmospheric pressure is studied utilizing numerical and experimental methods with emphasis on recondensation ratio, and the dynamics of the laser induced vapor flow. In the numerical calculation, the temperature pressure, density and vaporization flux on a solid substrate are first obtained by a heat-transfer computation code based on the enthalpy method, and then the plume dynamics is calculated by using a commercial CFD package. To confirm the computation results, the probe beam deflection technique was utilized for measuring the propagation of a laser induced shock wave. Discontinuities of properties and velocity over the Knudsen layer were investigated. Related with the analysis of the jump condition, the effect of the recondesation ratio on the plume dynamics was examined by comparing the pressure, density, and mass fraction of ablated aluminum vapor. To consider the effect of mass transfer between the ablation plume and air, unlike the most previous investigations, the equation of species conservation is simultaneously solved with the Euler equations. Therefore the numerical model computes not only the propagation of the shock front but also the distribution of the aluminum vapor. To our knowledge, this is the first work that employed a commercial CFD code in the calculation of pulsed ablation phenomena.

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대기중 나노초 펄스레이저 어블레이션의 수치계산 (Numerical simlation of nanosecond pulsed laser ablation in air)

  • 오부국;김동식
    • 한국레이저가공학회지
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    • 제6권3호
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    • pp.37-45
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    • 2003
  • Pulsed laser ablation is important in a variety of engineering applications involving precise removal of materials in laser micromachining and laser treatment of bio-materials. Particularly, detailed numerical simulation of complex laser ablation phenomena in air, taking the interaction between ablation plume and air into account, is required for many practical applications. In this paper, high-power pulsed laser ablation under atmospheric pressure is studied with emphasis on the vaporization model, especially recondensation ratio over the Knudsen layer. Furthermore, parametric studies are carried out to analyze the effect of laser fluence and background pressure on surface ablation and the dynamics of ablation plume. In the numerical calculation, the temperature, pressure, density, and vaporization flux on a solid substrate are obtained by a heat-transfer computation code based on the enthalpy method. The plume dynamics is calculated considering the effect of mass diffusion into the ambient air and plasma shielding. To verify the computation results, experiments for measuring the propagation of a laser induced shock wave are conducted as well.

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LNG 기지에서 BOG 액화공정 개선에 관한 연구 (Study on the improvement of BOG recondensation process at LNG receving terminal)

  • 백영순;김동혁;하종만;박영;윤익근
    • 한국가스학회지
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    • 제5권3호
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    • pp.23-28
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    • 2001
  • LNG(액화 천연가스) 기지의 LNG 저장탱크로부터 자연적으로 발생되는 BOG(증발 천연가스)가 약 0.05 vol$\%$/day로 생성되므로, 이를 회수하기 위해서 혼합드럼 방식의 Condenser에 질량비로 LNG와 BOG를 11 : 1로 혼합시키므로서 $-159^{\circ}C$ LNG 냉열을 활용하여 액화 처리하는 공정이다. 이러한 방식의 공정은 단순하지만 에너지 측면에서 비효율적인 것으로 알려졌다. 따라서 본 연구에서는 새로운 열교환식 방식을 제시하고 공정해석 시뮬레이터인 ASPEN PLUS를 이용하여 공정을 비교 분석하여 타당성을 조사하고자 한다.

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Chromatin Structural Rearrangement during Dedifferentiation of Protoplasts of Cucumis sativus L.

  • Ondrej, Vladan;Kitner, Miloslav;Dolezalova, Ivana;Nadvornik, Petr;Navratilova, Bozena;Lebeda, Ales
    • Molecules and Cells
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    • 제27권4호
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    • pp.443-447
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    • 2009
  • This paper reports on the structural rearrangement of satellite DNA type I repeats and heterochromatin during the dedifferentiation and cell cycling of mesophyll protoplasts of cucumber (Cucumis sativus). These repeats were localized in the telomeric heterochromatin of cucumber chromosomes and in the chromocenters of interphase nuclei. The dramatic reduction of heterochromatin involves decondensation of subtelomeric repeats in freshly isolated protoplasts; however, there are not a great many remarkable changes in the expression profile. In spite of that, reformation of the chromocenters, occurring 48 h after protoplast isolation, is accompanied by recondensation of satellite DNA type I; however, only partial reassembly of these repeats was revealed. In this study, FISH and a flow cytometry assay show a correlation between the partial chromocenter and the repeats reassembly, and with the reentry of cultivated protoplasts into the cell cycle and first cell division. After that, divided cells displayed a higher variability in the expression profile than did leaves' mesophyll cells and protoplasts.

Pyrolysis of Lignin Obtained from Cinnamyl Alcohol Dehydrogenase (CAD) Downregulated Arabidopsis Thaliana

  • Kim, Kwang Ho;Kim, Jae-Young;Kim, Chang Soo;Choi, Joon Weon
    • Journal of the Korean Wood Science and Technology
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    • 제47권4호
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    • pp.442-450
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    • 2019
  • Despite its potential as a renewable source for fuels and chemicals, lignin valorization still faces technical challenges in many aspects. Overcoming such challenges associated with the chemical recalcitrance of lignin can provide many opportunities to innovate existing and emerging biorefineries. In this work, we leveraged a biomass genetic engineering technology to produce phenolic aldehyde-rich lignin structure via downregulation of cinnamyl alcohol dehydrogenase (CAD). The structurally altered lignin obtained from the Arabidopsis thaliana CAD mutant was pyrolyzed to understand the effect of structural alteration on thermal behavior of lignin. The pyrolysis was conducted at 400 and $500^{\circ}C$ using an analytical pyrolyzer connected with GC/MS and the products were systematically analyzed. The results indicate that aldehyde-rich lignin undergoes fragmentation reaction during pyrolysis forming a considerable amount of C6 units. Also, it was speculated that highly reactive phenolic aldehydes facilitate secondary repolymerization reaction as described by the lower yield of overall phenolic compounds compared to wild type (WT) lignin. Quantum mechanical calculation clearly shows the higher electrophilicity of transgenic lignin than that of WT, which could promote both fragmentation and recondensation reactions. This work provides mechanistic insights toward biomass genetic engineering and its application to the pyrolysis allowing to establish sustainable biorefinery in the future.

Characteristic analysis and condenser design of gas helium circulation system for zero-boil-off storage tank

  • Jangdon Kim;Youngjun Choi;Keuntae Lee;Jiho Park;Dongmin Kim;Seokho Kim
    • 한국초전도ㆍ저온공학회논문지
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    • 제25권4호
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    • pp.65-69
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    • 2023
  • Hydrogen is an eco-friendly energy source and is being actively researched in various fields around the world, including mobility and aerospace. In order to effectively utilize hydrogen energy, it should be used in a liquid state with high energy storage density, but when hydrogen is stored in a liquid state, BOG (boil-off gas) is generated due to the temperature difference with the atmosphere. This should be re-condensed when considering storage efficiency and economy. In particular, large-capacity liquid hydrogen storage tank is required a gaseous helium circulation cooling system that cools by circulating cryogenic refrigerant due to the increase in heat intrusion from external air as the heat transfer area increases and the wide distribution of the gas layer inside the tank. In order to effectively apply the system, thermo-hydraulic analysis through process analysis is required. In this study, the condenser design and system characteristics of a gaseous helium circulation cooling system for BOG recondensation of a liquefied hydrogen storage tank were compared.

초본계 바이오매스의 물리-화학적 유기용매 전처리 공정 (Physico-Chemical Pretreatment of Herbaceous Biomass by Organosolv Flow-Through Process)

  • 김준석
    • Korean Chemical Engineering Research
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    • 제56권4호
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    • pp.441-446
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    • 2018
  • 초본계 바이오매스는 목본계 바이오매스에 비해 구조가 견고하지 않아 화학적 전환이 용이하다. 하지만 당질계 바이오매스에 비해 리그닌이 많아 전처리가 필수적으로 요구된다. 오르가노솔브는 리그닌과 같은 효소당화에 저해가 되는 물질을 분별하기 쉬우며 특히 에탄올과 같은 낮은 분자량의 용매는 증류를 통해 재사용이 용이하다는 장점이 있다. 한편 침출식 전처리 공정은 기존의 회분식 공정에서 문제점으로 언급되었던 분별된 성분들의 재결합 현상을 방지할 수 있고 고-액 분리가 용이하다는 장점이 있으며, 향후 스케일업에도 유리하다. 아직까지는 바이오알코올 생산 공정 중 전처리 과정에서 소모되는 에너지 비용이 크기 때문에 본 연구의 전처리에서는 촉매 없이 에탄올만을 이용해 부가공정의 발생을 줄이려고 했다. 침출식 전처리는 $150{\sim}190^{\circ}C$에서 30~99.5 wt% 에탄올을 이용하여 20~60분 동안 수행되었다. 높은 반응온도와 긴 반응시간은 에너지 소모가 크기 때문에 물리적 전처리 방법과의 연계를 적용하여 에너지 저감의 가능성을 알아보았다.

화염증 CO2 Laser를 이용한 입자의 크기 및 형상 제어 (Control of Size and Morphology of Particles Using CO2 Laser in a Flame)

  • 이동근;이선재;최만수
    • 대한기계학회논문집B
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    • 제23권11호
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    • pp.1379-1389
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    • 1999
  • A new technique for control of size and shape of flame-made particles is Introduced. The characteristic sintering time can be controlled Independently of collision time by heating the particles with irradiation of laser because the sintering time strongly depends on temperature. A coflow oxy-hydrogen diffusion flame burner was used for $SiCl_4$ conversion to silica particle. Nanometer sized aggregates irradiated by a high power CW $CO_2$ laser beam were rapidly heated up to high temperatures and then were sintered to approach volume-equivalent spheres. The sphere collides much slower than the aggregate, which results in reduction of sizes of particles maintaining spherical shape. Light scattering of Ar ion laser and TEM observation using a local sampling device were used to confirm the above effects. When the $CO_2$ laser was irradiated at low position from the burner surface, particle generation due to gas absorption of laser beam occurred and thus scattering intensity increased with $CO_2$ laser power. At high irradiation position, scattering intensity decreased with $CO_2$ laser power and TEM image showed a clear mark of evaporation and recondensation of particles for high $CO_2$ laser power. When the laser was irradiated between the above two positions where small aggregates exist, average size of spherical particles obviously decreased to 58% of those without $CO_2$ laser irradiation with the spherical shape. Even for increased carrier gas flow rate by a factor of three, TEM photograph also revealed considerable reduction of particle size.

아산화질소를 산화제로 사용하는 실험용 액체로켓의 폭발사례 및 안전사용방안 (Explosive Accidents and Safe Handling of an Experimental Liquid Rocket Engine Using Nitrous Oxide as Oxidizer)

  • 최송이;박석영;이동건;김도헌;구자예
    • 한국추진공학회지
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    • 제19권2호
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    • pp.46-54
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    • 2015
  • 아산화질소는 친환경적이고 비교적 안전하며 자발가압으로 공급될 수 있어서 다수의 액체로켓엔진 관련 연구기관 및 학교에서 산화제로 사용하고 있다. 그러나 본 연구실에서 에탄올 및 기체 아산화질소 추진제 조합을 이용한 연소시험 중 원인을 알 수 없는 폭발 현상이 다수 발생하였고, 본 논문에서는 분사기 내부에서의 아산화질소 분해 반응, 아산화질소 공급압력을 높이기 위한 탱크 가열에 따른 배관 내 아산화질소 재응축을 폭발현상의 원인으로 지목하고 해결책 및 안전한 아산화질소 산화제 사용방안을 제시하였다.