• Title/Summary/Keyword: Gradient Diffusion Model

검색결과 71건 처리시간 0.03초

리튬브로마이드 수용액 유하액막의 흡수과정에 대한 근사 해법 : 증기 유동의 영향 (Approximate solutions on the absorption process of an aqueous LiBr falling film : effects of vapor flow)

  • 김병주;이찬우
    • 설비공학논문집
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    • 제9권2호
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    • pp.144-152
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    • 1997
  • Film absorption involves simultaneous heat and mass transfer in the vapor-liquid system. In the present work, the absorption process of water vapor by an aqueous soluton of LiBr flowing inside of the vertical tube was investigated. The continuity, momentum, energy and diffusion equations for the solution film and vapor were formulated in integral forms and solved numerically. The model could predict the film thickness, the pressure gradient, and the heat and mass transfer rate. Particularly the effects of vapor flow conditions on the absorption process were investigated in terms of the vapor Reynolds number. As the vapor Reynolds number increased, the shear stress at the vapor-solution interface also increased. Consequently solution film became thinner at higher vapor flowrate under the co-currentflow condition. Thinner film was capable of higher heat transfer to the wall and leaded to higher absorption rate of the water vapor into the solution film.

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가압경수형 원자로 부하추종 운전시 제논진동 최적화 (Optimization for Xenon Oscillation in Load Following Operation of PWR)

  • 김건중;오성헌;박인용
    • 대한전기학회논문지
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    • 제38권11호
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    • pp.861-869
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    • 1989
  • 본 논문에서는 폰트라이긴의 최대원리를 이용한 가압경수형 원자로(PWR)의 부하추종 운전시 제논진동 최적화 문제가 제시되었다. 최적화 모델은 2차 목적함수를 갖고 있는 최적 추적제어문제로 정식화 하였으며, 1군 확산방정식과 제논-아이오다인 동특성 방정식을 등호 제약조건으로 고려하였다. 최적화 모델에 최대원리를 적용하므로서, 문제는 제약조건이 없는 단일시간 문제로 분리되었으며, 분리된 부 문제는 공액 경사법을 이용하여 최적화 하였다. 계산결과는 제논진동이 최소화되어 원자로가 규정된 출력분포를 유지하면서 전력계총에서 요구하는 출력을 잘 추종 하였다.

가열된 표면에 고착된 액적의 증발 특성에 관한 수치해석 연구 (Numerical Analysis of the Sessile Droplet Evaporation on Heated Surfaces)

  • 정찬호;이형주;윤국현;이성혁
    • 한국분무공학회지
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    • 제26권1호
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    • pp.1-8
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    • 2021
  • Droplet evaporation has been known as a common phenomenon in daily life, and it has been widely used for many applications. In particular, the influence of the different heated substrates on evaporation flux and flow characteristics is essential in understanding heat and mass transfer of evaporating droplets. This study aims to simulate the droplet evaporation process by considering variation of thermal property depending on the substrates and the surface temperature. The commercial program of ANSYS Fluent (V.17.2) is used for simulating the conjugated heat transfer in the solid-liquid-vapor domains. Moreover, we adopt the diffusion-limited model to predict the evaporation flux on the different heated substrates. It is found that the evaporation rate significantly changes with the increase in substrate temperature. The evaporation rate substantially varies with different substrates because of variation of thermal property. Also, the droplet evaporates more rapidly as the surface temperature increases owing to an increase in saturation vapor pressure as well as the free convection effect caused by the density gradient.

Numerical study on conjugate heat transfer in a liquid-metal-cooled pipe based on a four-equation turbulent heat transfer model

  • Xian-Wen Li;Xing-Kang Su;Long Gu;Xiang-Yang Wang;Da-Jun Fan
    • Nuclear Engineering and Technology
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    • 제55권5호
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    • pp.1802-1813
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    • 2023
  • Conjugate heat transfer between liquid metal and solid is a common phenomenon in a liquid-metal-cooled fast reactor's fuel assembly and heat exchanger, dramatically affecting the reactor's safety and economy. Therefore, comprehensively studying the sophisticated conjugate heat transfer in a liquid-metal-cooled fast reactor is profound. However, it has been evidenced that the traditional Simple Gradient Diffusion Hypothesis (SGDH), assuming a constant turbulent Prandtl number (Prt,, usually 0.85 - 1.0), is inappropriate in the Computational Fluid Dynamics (CFD) simulations of liquid metal. In recent decades, numerous studies have been performed on the four-equation model, which is expected to improve the precision of liquid metal's CFD simulations but has not been introduced into the conjugate heat transfer calculation between liquid metal and solid. Consequently, a four-equation model, consisting of the Abe k - ε turbulence model and the Manservisi k𝜃 - ε𝜃 heat transfer model, is applied to study the conjugate heat transfer concerning liquid metal in the present work. To verify the numerical validity of the four-equation model used in the conjugate heat transfer simulations, we reproduce Johnson's experiments of the liquid lead-bismuth-cooled turbulent pipe flow using the four-equation model and the traditional SGDH model. The simulation results obtained with different models are compared with the available experimental data, revealing that the relative errors of the local Nusselt number and mean heat transfer coefficient obtained with the four-equation model are considerably reduced compared with the SGDH model. Then, the thermal-hydraulic characteristics of liquid metal turbulent pipe flow obtained with the four-equation model are analyzed. Moreover, the impact of the turbulence model used in the four-equation model on overall simulation performance is investigated. At last, the effectiveness of the four-equation model in the CFD simulations of liquid sodium conjugate heat transfer is assessed. This paper mainly proves that it is feasible to use the four-equation model in the study of liquid metal conjugate heat transfer and provides a reference for the research of conjugate heat transfer in a liquid-metal-cooled fast reactor.

완전혼합영역을 갖는 성층축열조의 충전과정에 대한 이론적인 해석 (Theoretical Analysis of the Charging Process with Perfectly Mixed Region in Stratified Thermal Storage Tanks)

  • 유호선;박이동
    • 설비공학논문집
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    • 제7권2호
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    • pp.184-195
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    • 1995
  • A theoretical one-dimensional model for the charging process in stratified thermal storage tanks is established presuming that the fluid ensuing from the tank inlet creates a perfectly mixed, layer above the thermocline. Both the generic and asymptotic closed-form solutions are obtained via the Laplace transformation. The asymptotic solution describes the nature of the charging pertaining to the case of no thermal diffusion, whereas the generic solution is of practical importance to understand the role of operating parameters on the stratification. The present model is validated through comparison with available experimental data, where they agree well with each other within a reasonable limit. An interpretation of the exact solution entails two important features associated with the charging process. The first is that an in-crease in the mixing depth $h_m$ causes a relatively slow temperature rise in the perfectly mixed region, but on the other hand it results in a faster decay of the overall temperature gradient across the thermocline. Next is the predominance of the mixing depth in the presence of the prefectly mixed region. In such a case the effect of the Peclet number is marginal and there-fore the thermal characteristics are solely dependent on the mixing depth paticularly for large $h_m$. The Peclet number affects significantly only for the case without mixing. Variation of the storage efficiency in response to the change in the mass flow rate agrees favorably with the published experimental results, which confirms the utility of the present study.

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콘형 배플판을 갖는 Gun식 가스버너의 난류유동장에 대한 슬릿과 스월베인의 역할 (The Role of Slits and Swirl Vanes on the Turbulent Flow Fields in Gun-Type Gas Burner with a Cone-Type Baffle Plate)

  • 김장권;정규조
    • 대한기계학회논문집B
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    • 제27권4호
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    • pp.466-475
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    • 2003
  • The gun-type gas burner adopted in this study is generally composed of eight slits and swirl vanes. Thus, this paper is studied to investigate the effect of slits and swirl vanes on the turbulent flow fields in the horizontal plane of gas swirl burner with a cone type baffle plate measured by using X-probe from hot-wire anemometer system. This experiment is carried out at flow rate 450 $\ell$/min in the test section of subsonic wind tunnel. The axial mean velocity component in the case of burner model with only swirl vanes shows the characteristic that spreads more remarkably toward the radial direction than axial one, it does, however, directly opposite tendency in the case of burner model with only slits. Consequently. both slits and swirl vanes composing of gun-type gas burner play an important role in decrease of the speed near slits and increase of the flow speed in the central part of a burner because the biggest speed spurted from slits encircles rotational flow by swirl vanes and it drives main flow toward the axial direction. Moreover, the turbulent intensities and turbulent kinetic energy of gun-type gas burner are distributed with a fairly bigger size within X/R<0.6410 than burner models which have only slits or swirl vanes because the rotational flow by swirl vanes and the fast jet flow by slits increase flow mixing, diffusion, and mean velocity gradient effectively.

융기가 기반암 하상하천의 종단곡선에 미치는 영향에 대한 연구 -수리 모형을 통한 연구- (Influence of Tectonic Uplift on Longitudinal Profiles of Bedrock Rivers: Numerical Simulations)

  • 김종연
    • 대한지리학회지
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    • 제39권5호
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    • pp.722-734
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    • 2004
  • 기반암 하상 하천의 종단 곡선은 지형 경관 발달의 기본 조건을 형성함으로서 경관 변화에 강력한 영향을 행사한다. 하천 종단 곡선은 기후 환경 조건의 변화, 기반암의 물리 화학적 특성, 지각 운동과 같은 변수들에 의해서 그 형태의 변화를 경험하게 된다. 특히 지각 운동의 시 공간적 양상은 지각 운동이 활발한 혹은 활발했던 것으로 알려진 지역에서 종단곡선에 강력한 영향력을 행사하는 것으로 추론되어 왔다. 그러나, 현재까지의 기반암 하상 하천에 대한 연구는 기반암 하상 하천의 침식 작용을 통제하는 변수들에 대한 이해의 부족으로 답보상태를 면하지 못하여 왔다. 현대 지형학의 주요 연구 기법인 컴퓨터를 이용한 지형 발달 시뮬레이션은 지형 발달의 단계들을 파악하는데 유용한 연구 도구로 환용 되어 왔으나. 기반암 하상 하천의 경우 그 이해의 부족으로 인하여 광범위한 응용이 가능한 모형의 마련에 어려움을 겪어 왔다. 그 결과 기존의 연구들은 단순한 확산 모형을 침식의 기본 모형으로 이용했다. 본 고 에서는 물리적 침식과정에 기반한 기반암 침식 모형들을 검토 수정한 새로운 모형을 소개하고 해당 모형을 이용하여 지각운동의 시 공간적 분포와 강도가 하천 종단 곡선에 미치는 영향을 시뮬레이션을 통해 모사하고 논의하였다.

점착성, 비점착성 부유사 모형에 대한 Schmidt 수의 영향 (Effect of Schmidt Number on Cohesive and Non-cohesive Sediment Suspension Modeling)

  • 변지선;손민우
    • 한국수자원학회논문집
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    • 제47권8호
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    • pp.703-715
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    • 2014
  • 본 연구는 Schmidt 수(${\sigma}_c$)에 따른 부유사의 부유 거동 변화 및 흐름 특성의 변화를 살펴본 후, 그에 따라 계산된 성층 흐름의 척도가 되는 Flux Richardson 수($Ri_f$)와 Gradient Richardson 수($Ri_g$)를 근거로 타당한 ${\sigma}_c$의 범위를 산정하는 것을 목적으로 수행되었다. 부유사의 종류를 점착성 유사와 비점착성 유사로 구분하였으며 진동 흐름과 흐름 조건을 가정하고 1차원 연직 수치 모형을 이용하여 수치 실험을 수행하였다. 이 과정에서 ${\sigma}_c$가 난류 감소효과와 관계되는 상수인 것에 근거하여 부유사의 존재로 인한 난류 감소효과 고려 여부에 따른 흐름 특성의 변화를 살펴보았다. 그 결과, 흐름 조건에 관계없이 ${\sigma}_c$의 크기에 따라 부유 거동이 일관된 경향을 나타내는 것이 확인 되었으며 난류 감소효과를 고려하지 않는 경우 유속 및 난류 에너지가 과대 산정 되는 결과가 나타났다. 부유로 인한 성층화 조건을 형성하는 $Ri_f$$Ri_g$의 범위에 기초하여 결과를 분석하고 ${\sigma}_c$가 0.3에서 0.5의 범위에 해당될 때 성층 흐름 내 유사의 수직 혼합이 유효하게 계산된다는 결론이 도출되었다.

경화하는 콘크리트의 수분확산도 모형 (A Moisture Diffusivity Model of Hardening Concrete)

  • 정진훈
    • 한국도로학회논문집
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    • 제7권1호
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    • pp.31-38
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    • 2005
  • 콘크리트의 타설 직후, 상대적으로 콘크리트는 높은 증기압을 갖게 되며, 주위의 대기는 낮은 증기압을 갖게 된다. 콘크리트와 대기 간의 증기압의 평형을 유지하려는 작용 때문에 콘크리트의 표면에서 대기로 수분이 이동하는 증발이 발생한다. 표면에서 일어나는 증발로 인하여 콘크리트의 내부에서도 증기압의 차이가 발생하며, 이로 인하여 콘크리트 내부의 수분이 서서히 표면으로 이동하는 수분확산이 일어난다 이 수분확산의 속도는 콘크리트의 소성 균열, 수화도, 강도와 같은 요인으로 작용하여 콘크리트의 품질에 크게 영향을 미친다. 본 논문에서는 콘크리트 수분확산의 지배방정식과 실내에서 측정된 콘크리트의 온도와 상대습도를 이용하여 초기재령의 콘크리트의 수분확산도를 역계산하였다. 역계산된 콘크리트의 수분확산도를 이용하여 콘크리트의 수분확산도 모형을 개발하였으며, 이를 입력값으로 사용하여 유한요소법에 의해 콘크리트의 상대습도를 계산하였다. 그 결과로서 계산된 상대습도는 측정된 상대습도와 대체로 일치하였다.

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Polarity affects the antioxidant and antimicrobial activities of jellyfish (Acromitus hardenbergi) extracts

  • Khong, Nicholas M.H.;Foo, Su Chern;Yau, Sook Kun;Chan, Kim Wei;Yusoff, Fatimah Md.
    • Fisheries and Aquatic Sciences
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    • 제25권4호
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    • pp.189-201
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    • 2022
  • Jellyfish is an emerging aquaculture species, farmed for Oriental cuisines and nutraceutical ingredients. This study aimed to examine antioxidative and antimicrobial potentials of various fractions of the jellyfish, Acromitus hardenbergi. The bell and oral arms of the jellyfish were sequentially extracted with petroleum ether (PE), dichloromethane (DCM), chloroform (CHCl3), methanol (MeOH), and water (H2O) to extract its bioactive in an increasing polarity gradient. Test fractions were assayed for antiradical activities using electron spin resonance spectrometry, β-carotene-linoleate model and Folin-Ciocalteu assay; and antimicrobial activity against 2 Gram-negative bacteria, 4 Gram-positive bacteria and 2 fungal species using the disc diffusion assay. All fractions were also subjected to Fourier Transform Infrared (FTIR) analysis to identify types of functional groups present. It was found that the hydrophilic extracts (H2O fractions) possessed the most effective radical scavenging activity (p < 0.05) while the lipophilic extracts (PE fractions) the most active antimicrobial activity, especially against Gram-positive bacteria (p < 0.05). Total oxidation substrates content was found to be highest in the PE fractions of jellyfish bell and oral arms (p < 0.05). FTIR data showed that the H2O and MeOH fractions contains similar functional groups including -OH, -C=O, -N-H and -S=O groups, while the PE, DCM, and CHCl3 fractions, the -CH3, -COOH groups. This study showed that A. hardenbergi contains antioxidants and antimicrobials, thereby supporting the traditional claim of the jellyfish as an anti-aging and health-promoting functional food. Bioassay-guided fractionation approach serves as a critical milestone for the strategic screening, purification, and elucidation of therapeutically significant actives from jellyfish.