• 제목/요약/키워드: Air water interfacial area

검색결과 7건 처리시간 0.021초

모세관 모델을 이용한 불포화토양의 물-가스 접촉면적 및 가스공극 크기분포의 계산 및 검증 (Capillary Bundle Model for the Estimation of Air-water Interfacial Area and the Gas-filled Pore Size Distribution in Unsaturated Soil)

  • 김헌기
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권1호
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    • pp.1-7
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    • 2021
  • Air-water interfacial area is of great importance for the analysis of contaminant mass transfer processes occurring in the soil systems. Capillary bundle model has been proposed to estimate the specific air-water interfacial areas in unsaturated soils. In this study, the measured air-water interfacial areas of a soil (loam) using the gaseous interfacial tracer technique were compared to those from capillary bundle model. The measured values converged to the specific solid surface area (7.6×104 ㎠/㎤) of the soil. However, the simulated air-water interfacial areas based on the capillary bundle model deviated significantly from those measured. The simulated values were substantially over-estimated at low end of the water content range, whereas the model under-estimated the air-water interfacial area for the most of the water content range. This under-estimation is considered to be caused by the nature of the capillary bundle model that replaces the soil pores with a bundle of glass capillaries and thus no surface roughness at the inner surface of the capillaries is taken into account for the estimation of the air-water interfacial area with the capillary bundle model. Subsequently, appropriate correction is necessary for the capillary bundle model to estimate the air-water interfacial area in soils. Since the soil-moisture release curve data is the basis of the capillary bundle model, the model can be of use due to its simplicity, while the gaseous tracer technique requires complicated experimental equipment followed by moment analysis of the breakthrough curves. The size distribution profile of the pores filled with gas estimated by the water retention curve was found to be similar to that of particle size at different size range. The shifted distribution of gas-filled pores toward smaller size side compared to the particle size distribution was also found.

Span 20과 Tween계 계면활성제의 물/공기 계면에서의 분자면적과 계면장력 거동 (Molecular Area and Interfacial Tension Behavior of Span 20 and Tween series surfactants at water/air interface)

  • 김천희
    • 한국의류학회지
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    • 제24권7호
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    • pp.1065-1072
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    • 2000
  • The molecular areas and the interfacial tension behavior of ten nonionic surfactants, i.e., Span 20 and Tween 20, 40, 60. 80, 21, 61, 81, 65, & 85 are tested to assay their effects on the wetting and liquid retention properties of hydrophilic and hydrophobic fibrous materials. The molecular areas at water/air interface are derived from Gibbs’adsorption equations. The following conclusions are drawn from the results: 1) Span 20 is efficient in lowering the interfacial tension and effective in adsorption at the water/air interface, resulting in the low interfacial tension at critical micelle concentration (${\gamma}$$_{CMC}$) and a small molecular area($\omega$), 2) when the hydrophiles of the surfactants are constant, $\omega$’s increase as hydrophobe carbon numbers of the surfactants increase, 3) when the hydrophobes are constant, ${\gamma}$$_{CMC}$’s and $\omega$’s increase as the hydrophile ethylene oxide units increase, indicating effectiveness and efficiency is parallel in this case, 4) the ethylene oxide unit length as a hydrophile has greater influence on u than the hydrophobe chain length.han the hydrophobe chain length.gth.

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DEVELOPMENT OF INTERFACIAL AREA TRANSPORT EQUATION

  • ISHII MAMORU;KIM SEUNGJIN;KELLY JOSEPH
    • Nuclear Engineering and Technology
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    • 제37권6호
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    • pp.525-536
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    • 2005
  • The interfacial area transport equation dynamically models the changes in interfacial structures along the flow field by mechanistically modeling the creation and destruction of dispersed phase. Hence, when employed in the numerical thermal-hydraulic system analysis codes, it eliminates artificial bifurcations stemming from the use of the static flow regime transition criteria. Accounting for the substantial differences in the transport mechanism for various sizes of bubbles, the transport equation is formulated for two characteristic groups of bubbles. The group 1 equation describes the transport of small-dispersed bubbles, whereas the group 2 equation describes the transport of large cap, slug or chum-turbulent bubbles. To evaluate the feasibility and reliability of interfacial area transport equation available at present, it is benchmarked by an extensive database established in various two-phase flow configurations spanning from bubbly to chum-turbulent flow regimes. The geometrical effect in interfacial area transport is examined by the data acquired in vertical fir-water two-phase flow through round pipes of various sizes and a confined flow duct, and by those acquired In vertical co-current downward air-water two-phase flow through round pipes of two different sizes.

Development of the Interfacial Area Concentration Measurement Method Using a Five Sensor Conductivity Probe

  • Euh, Dong-Jin;Yun, Byong-Jo;Song, Chul-Hwa;Kwon, Tae-Soon;Chung, Moon-Ki;Lee, Un-Chul
    • Nuclear Engineering and Technology
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    • 제32권5호
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    • pp.433-445
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    • 2000
  • The interfacial area concentration (IAC) is one of the most important parameters in the two-fluid model for two-phase flow analysis. The IAC can be measured by a local conductivity probe method that uses the difference of conductivity between water and air/steam. The number of sensors in the conductivity probe may be differently chosen by considering the flow regime of two-phase flow. The four sensor conductivity probe method predicts the IAC without any assumptions of the bubble shape. The local IAC can be obtained by measuring the three dimensional velocity vector elements at the measuring point, and the directional cosines of the sensors. The five sensor conductivity probe method proposed in this study is based on the four sensor probe method. With the five sensor probe, the local IAC for a given referred measuring area of the probe can be predicted more exactly than the four sensor probe. In this paper, the mathematical approach of the five sensor probe method for measuring the IAC is described, and a numerical simulation is carried out for ideal cap bubbles of which the sizes and locations are determined by a random number generator.

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Spreading Kinetics of Poly(diisobutylene maleic acid) at the Air-water Interface

  • Kim, Nam Jeong
    • 한국응용과학기술학회지
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    • 제32권4호
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    • pp.661-668
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    • 2015
  • The surface rheological properties of polymer monolayer show complicated non-linear viscoelastic flow phenomena when they are subjected to spreading flow. These spreading flow properties are controlled by the characteristics of flow units. The kinetics of the formation of an interfacial film obtained after spreading poly(diisobutylene maleic acid) at air-water interface were studied by measuring of the surface pressure with time. The experimental data were analyzed theoretically according to a nonlinear surface viscoelastic model. The values of dynamic modulus, static modulus, surface viscosities and rheological parameters in various area/ monomer were obtained by appling experimental data to the equation of nonlinear surface viscoelastic model.

반도체 생산공정의 대기질 개선을 위한 복합 대기오염물의 습식화학 제거공정 (Wet Chemical Process for Improving Air Quality in Semiconductor Manufacturing Process)

  • 전창성;김학주;박영무;이대원;함동석;전상문;이관영
    • 청정기술
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    • 제13권2호
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    • pp.109-114
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    • 2007
  • 본 연구에서는 반도체 제조공정 내의 습식 대기공조 정화설비에 사용될 화학수용액의 선정과 이를 이용한 대기오염물 정화 모사시험을 수행하였다. 50 ppm의 $NH_3$, SOx, NOx의 제거에 있어서 0.5 M의 이산화망간($KMnO_4$) 수용액은 99% 이상의 제거율을 보였다. $O_3$의 제거율은 $22{\sim}30%$ 수준에서 머물러, 별도의 건식 제거 장치가 필요한 것으로 판단된다. 또한 모든 화학수용액들에 있어 NOx의 제거효율은 $O_3$가 공존할 경우, $NO_2$ 농도 증가로 인해 보다 증가될 수 있었다. 마지막으로 액상분사 시스템을 구성하여 화학수용액들이 공기압 분사식 노즐을 통해 $60\;{\mu}m$ 수준의 미세 액적 형태로 분사됨에 따라, 기-액상간의 반응면적이 증가되어 기상 오염물의 제거효율이 보다 향상될 수 있었다.

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Noncondensable gas's influence in waster vapor absorption accompanying interfacial disturbance into aqueous solution of LiBr

  • Dong-Ho RIE;Keun-Oh Lee
    • 한국안전학회지
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    • 제7권2호
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    • pp.63-70
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    • 1992
  • 흡수식 열펌프에서 폭 넓게 사용되고 있는 대표적인 냉매/흡수용액은 $H_2O$ / LiBr 계이다 그러나, LiBr 수용액의 점성계수는 LiBr의 농도가 커짐에 따라 증가하기 때문에, LiBr수용액의 농용액 영역에서 물질확산계수가 감소한다. 이 결점을 보완하기 위해 흡수용액에 계면활성제를 첨가시키므로서 흡수를 촉진시키는 방식을 이용하고 있다. 계면활성제의 첨가에 의한 흡수용액의 열 및 물질이동 촉진에 관한 연구는 계면활성제 첨가농도에 의해 흡수용액의 표면상에서 게면활성제가 액적으로 존재하는 계면활성제 포화용해도 이상의 조건에서 발생하는 마랑고니대류가 효과적이다. 이 흡수촉진효과는 냉매증기의 흡수시 흡수용액표면상의 분포한 계면활성제와 흡수용액사이의 표면장력차에 기인하는 계면교한 현상에 기인한다. 그러나, 이흡수촉지효과는 냉매증기의 흡수가 일어나는 흡수기 내부의 不안정상태, 즉, 불응축성가스(공기)가 존재하지 않는 조건하에서 이루어지며, 불응축성가스가 흡수촉진저하(열 및 물질이동의 저하)에 기인하는 연구는 보고된 바 없다. 이러한 불응축성가스가 흡수기 내부에 존재할 때 계면교한의 거동 및 열 및 물질이동저하현상을 파악하기 위하여 계면활성제 농도변화(포화용해도 이상 및 이하의 두 조건)에 따른 증기흡수 실험 및 계면교한가시화 실험을 행하였다. 결과적으로 본실험을 통하여 불응축성가스가 수증기흡수에 끼치는 영향을 파악(계면교란의 악화) 첨가시의 흡수량과 不安定상태(불응축성가스가 존재시)의 증기흡수량의 비교에 의해 급격한 증기흡수저하가 不安定상태하에서 발생함으로서 불응축성가스가 흡수촉진효과(계면교한현상)을 저해시키는 결론을 얻었다.es and facts obtained by the expenence in this area, respectively. Both depth-first search and backward chaining schemes are used in reasoning process. This expert system is written in an artificial intelligence language "PROLOG", and its availability is demonstrated through the case study.e함량은 감소되었으며 sulfhydryl기가 증가됨에 따라서 disulfide groups은 감소되는 경향을 보였고 ascorbic acid는 열처리 온도뿐만 아니라 시간과도 관련이 있음을 알 수 있었다. 저온 살균유와 초고온 살균유 사이에서는 지표물질들의 함량이 다소 차이가 있음을 볼 수 있었다.담시간이 구체적으로 기술되지 않았으며, 고유한 언어를 통역하는 과정에서 의미론적 문제에 대한 고려가 부족하였다. 면접과 기록과정에서 보면 자료의 기록과정과 분류 및 분석과정이 명시되어 있지 않았다. 참여관찰과 면접방법을 사용시 이에 대한 자세한 기술이 되어 있지 않았다. 5. 연구결과의 적용 및 이에 대한 논의는 상당히 제한되어 있었는데, 수편의 연구만이 방법론 문제점과 앞으로의 연구분야에 대한 전망을 제시하였으며, 특이한 것은 어 떤 연구자도 이른 개발을 위한 적용 및 임상실무적 차원에서 간호에 대한 제언을 하지 않았다.유모델변수들은 유입-유출 자료들로부터 평가할 수 있으며, 이를 위해서 본 논문에서는 Gauss-Newton 방법을 이용한 Bard

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