• Title/Summary/Keyword: 수분 전달

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Saturation Boiling Heat Transfer on a Heated Surface With Impinging Water Jet (충돌수분류에 의한 포화비등열전달)

  • Ohm, Ki-Chan;Seo, Jeong-Yun
    • The Magazine of the Society of Air-Conditioning and Refrigerating Engineers of Korea
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    • v.15 no.2
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    • pp.182-187
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    • 1986
  • Experimental measurements of the heat transfer and heat flux to a jet impinging on a heated surface were obtained in the nucleate boiling regimes. Tes-variables were jet at velocity and aspect ratio ($b/\ell$) of the heated surface. A slope of nucleate boiling curve increased with increasing the aspect ratio of the heated surface, namely approaching a rectangular square, and it is shown that surface tension has an important role for the onset of nucleate boiling heat transfer. A generalized correlation of the jet nucleate boiling heat transfer. A generalized correlation of the jet nucleate boiling heat transfer was found using a pi theorem.

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Determination of Proper Application Rate of Curing Compound for Cement Concrete Pavement (콘크리트 포장 양생제의 적정살포량 결정 연구)

  • Kim, Jang-Rak;Suh, Young-Chan;Ahn, Sung-Soon
    • International Journal of Highway Engineering
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    • v.7 no.2 s.24
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    • pp.45-55
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    • 2005
  • It is known that the Q/C(Quality Control) in the early age of portland cement concrete(PCC) pavement gives a huge effect on long term pavement performance. Thus, many studies regarding the construction of PCC pavement have focused on how to assure construction quality at the early age stage. Curing is one of the most important factor in Q/C of PCC pavement. Membrane curing that protects the evaporation of moisture by placing an impermeable layer on the slab surface is the most common practice for curing the PCC pavement. In order to improve the membrane curing practice, the rate of curing compound should be optimized. However, the optimum rate of curing compound considering Korean weather and environmental conditions has not been specified in the pavement construction specifications. In this study, a proper application rate was recommended in terms of minimizing evaporation with several full-scale tests where various rates of curing compound have been applied. Four test sites on the expressway were enlisted during the summer of 2002 and 2003. Application rates tested were in the range of $0. The rate of evaporation, the temperature pattern of the slab and the pulse velocity of concrete surface have been monitored at each test construction. The result from this study showed that the rate of current construction was approximately $160ml/m^2$ and that approximately $400ml/m^2$ of curing application was recommended as the proper rate for minimizing the moisture evaporation.

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Determination of Degree of Hydration, Temperature and Moisture Distributions in Early-age Concrete (초기재령 콘크리트의 수화도와 온도 및 습도분포 해석)

  • 차수원;오병환;이형준
    • Journal of the Korea Concrete Institute
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    • v.14 no.6
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    • pp.813-822
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    • 2002
  • The purpose of the present study is first to refine the mathematical material models for moisture and temperature distributions in early-age concrete and then to incorporate those models into finite element procedure. The three dimensional finite element program developed in the present study can determine the degree of hydration, temperature and moisture distribution in hardening concrete. It is assumed that temperature and humidity fields are fully uncoupled and only the degree of hydration is coupled with two state variables. Mathematical formulation of degree of hydration Is based on the combination of three rate functions of reaction. The effect of moisture condition as well as temperature on the rate of reaction is considered in the degree of hydration model. In moisture transfer, diffusion coefficient is strongly dependent on the moisture content in pore system. Many existing models describe this phenomenon according to the composition of mixture, especially water to cement ratio, but do not consider the age dependency. Microstructure is changing with the hydration and thus transport coefficients at early ages are significantly higher because the pore structure in the cement matrix is more open. The moisture capacity and sink are derived from age-dependent desorption isotherm. Prediction of a moisture sink due to the hydration process, i.e. self-desiccation, is related to autogenous shrinkage, which may cause early-age cracking in high strength and high performance concrete. The realistic models and finite element program developed in this study provide fairly good results on the temperature and moisture distribution for early-age concrete and correlate very well with actual test data.

Changes of Drought Tolerance and Photosynthetic Characteristics of Populus davidiana Dode According to PEG Concentration (PEG농도에 따른 사시나무의 내건성과 광합성 특성의 변화)

  • Oh Chang-Young;Han Sim-Hee;Kim Yong-Yul;Lee Jae-Cheon
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.7 no.4
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    • pp.296-302
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    • 2005
  • We investigated changes in photosynthetic characteristics of P. davidiana in order to understand damage patterns to photosynthetic apparatus under drought stress. Root sprout saplings of P. davildiana were treated with $0\%,\;2\%,\;5\%,\;and\;10\%$ of 300ml polyethylene glycol (PEG) once a weer far one month. After one month, we measured photosynthetic parameters and analyzed the photochemical and $CO_2$ fixation systems. Photosynthetic rate, stomatal conductance, and respiration rate in the leaves of P. davildiana decreased according to increasing stress strength. In the photochemical system, quantum yield of PSII was reduced by the increment of PEG concentration, The decrease of apparent quantum yield was related to reduction of electron transport. Respiration rate decreased with an increase in PEG concentration, whereas photorespiration rate in the $CO_2$ fixation system increased. In conclusion, photosynthesis of P. davidiana responded sensitively under drought stress, and the sensitivity depended upon the strength of water stress. P. davidiana exhibited an increase of water use efficiency under water stress.

Sea Cucumber (Stichopus japonicus) Grading System Based on Morphological Features during Rehydration Process (수화 시의 형태학적 특징에 따른 건해삼의 등급 분류 시스템 개발)

  • Lee, Choong Uk;Yoon, Won Byong
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.46 no.3
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    • pp.374-380
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    • 2017
  • Image analysis and k-mean clustering were conducted to develop a grading system of dried sea cucumber (SC) based on rehydration rate. The SC images were obtained by taking pictures in a box under controlled light conditions. The region of interest was extracted to depict the shape of the SC in a 2D graph, and those 2D shapes were rendered to build a 3D model. The results from the image analysis provided the morphological features of the SC, including length, width, surface area, and volume, to obtain the parameters of the k-mean clustering weight. The k-mean clustering classified the SC samples into three different grades. Each SC sample was rehydrated at $30^{\circ}C$ for 40 h. During rehydration, the flux of each grade was analyzed. Our study demonstrates that the mass transfer rate of SC increased as the surface area increased, and the grade of SC was classified based on rehydration rate. This study suggests that the optimal rehydration process for SC can be achieved by applying a suitable grading system.

Evaporation Theory for Reclaimed Clay (준설 점토 지반에서의 증발 이론 개발)

  • 이형주;이인모;이영남;성상규
    • Journal of the Korean Geotechnical Society
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    • v.19 no.4
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    • pp.55-64
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    • 2003
  • Desiccation of a soil is basically the removal of water by evaporation, which is controlled by evaporativity and evaporability. Surface evaporation improves the trafficability which is essential for the access of construction equipment in the area reclaimed with soft clay. The existing traditional methods for evaluating evaporation can not account for the deformation of reclaimed soft soils during evaporation. Therefore, a theoretical model for predicting the rate of evaporation from the surface of a deformable material is proposed. The model is based on a system of equations for coupled heat and mass transfer in unsaturated soils. The modified pressure plate extractor test and glass desiccator test were carried out to obtain the soil-water characteristic curve for a deformable soil. The column drying test was conducted to investigate one dimensional water flow, heat flow and evaporation in the surface. A finite difference program was developed to solve the coupled nonlinear partial differential equations, which permit the study of water, vapor and heat flows in the deformable soil. Comparison between measured and simulated values shows a reasonably good matching between the two.

The Effect of Mass Transfer on the Cure Properties of the Urea Resin Moulding Compounds Under the Drying Process (건조 공정 중 요소 수지 성형재료의 경화 특성에 대한 물질전달 효과)

  • Kim, Sang Yeul;Choi, Il Gon;Kim, Byoung Chul
    • Korean Chemical Engineering Research
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    • v.40 no.6
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    • pp.681-686
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    • 2002
  • In the industrial field, the theory of drying process is different from the practical application, and it is effective to reduce energy by recirculation of the heat of exhausting gas. But the study of this field may not be performed still. The cure properties of the urea resin moulding compounds was investigated according to drying temperature, drying time, recycle rate of exhausting gas and moulding temperature in the process of drying and moulding. We obtained the following results; water content of material decreases with increasing drying time and drying temperature, and the rate of drying also decreases with increasing recycle rate of exhausting gas. Specially, The cure fluidity of the urea resin moulding compounds decreases, with increasing drying temperature, recycle rate of exhausting gas and moulding temperature. And the correlation equations on water content and cure fluidity of the urea resin moulding material were obtained through a regression analysis of experimental data.

Preparation of Liquid Crystal Emulsion for Transdermal Delivery of Glycyrrhizic Acid and Physical Characteristics and In Vitro Skin Permeation Studies (글리시리직애씨드의 경피 전달을 위한 액정 에멀젼의 제조와 물리적 특성 및 In Vitro 피부투과 연구)

  • Jung, Jin Woo;Yoo, Cha Young;Park, Soo Nam
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.41 no.4
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    • pp.315-324
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    • 2015
  • In this study, we prepared liquid crystal emulsion composed of amphiphilic substance $C_{14-22}$ alcohol, $C_{12-20}$ alkyl glucoside, behenyl alcohol and studied liquid crystal emulsion of properties and in vitro skin permeation. The results of formulation experiments, the clear liquid crystalline structure was observed in the ratio of $C_{14-22}$ alcohol 0.8%, $C_{12-20}$ alkyl glucoside 3.2%, behenyl alcohol 4% in the formulation. The results of physical property measurements, the viscosity of liquid crystal emulsion and O/W emulsion applied as a control group was respectively $1871.26{\sim}1.15Pa{\cdot}s$, $1768.69{\sim}1.14Pa{\cdot}s$ and the shear stress of O/W emulsion was 178.68 ~ 909.18 Pa, that of liquid crystal emulsion was 190.45 ~ 919.38 Pa. The storage modulus of O/W emulsion was 3428.53 ~ 9157.45 Pa, that of liquid crystal emulsion was 4487.82 ~ 8195.59 Pa. The tan (delta) value of O/W emulsion which means a ratio of viscosity to elasticity was 0.43 ~ 0.19, and that of liquid crystal emulsion was 0.23 ~ 0.25. The water content value on the skin for liquid crystal emulsion was significantly higher from 1 h to 6 h compared with that of O/W emulsion and the transepidermal water loss on the skin was significantly superior in skin moisture loss suppression from 30 min to 4 h compared with that of O/W emulsion. The results of skin permeation using glycyrrhizic acid, the result of skin permeation amount of liquid crystal emulsion for 24 h was $64.58{\mu}g/cm^2$, that of O/W emulsion was $37.07{\mu}g/cm^2$, that of butylene glycol solution was $41.05{\mu}g/cm^2$. Hourly permeability results, it is showed that skin penetration effect of the liquid crystal emulsion increases after 8 h. These results suggest that liquid crystal emulsions are effective for skin moisturizing effect and function as potential efficacy ingredient delivery system for the transdermal delivery.

Development of Porous Cellulose Hydrogel for Enhanced Transdermal Delivery of Liquiritin and Liquiritigenin as Licorice Flavonoids (감초 플라보노이드 Liquiritin 및 Liquiritigenin을 담지한 피부전달체인 셀룰로오스 다공성 하이드로젤 제형 개발)

  • Kim, Su Ji;Kwon, Soon Sik;Yu, Eun Ryeong;Park, Soo Nam
    • Polymer(Korea)
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    • v.38 no.5
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    • pp.676-681
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    • 2014
  • Licorice, widely used as a herbal medicine, has flavonoids such as liquiritin and its aglycone, liquiritigenin that show anti-oxidant and anti-inflammatory properties. Licorice flavonoid-loaded cellulose hydrogels were prepared as carriers for skin drug delivery, and their properties were investigated. The porous cellulose hydrogel was made by reacting cellulose with epichlorohydrin as a cross-linking agent in NaOH/urea(1~10%) solutions. Through studies on the rheological properties and water uptake of the hydrogel, a NaOH/urea(6%) solution was established as being optimum for the synthesis of the cellulose hydrogel containing liquiritin and liquiritigenin. Scanning electron microscopy (SEM) observations of a cross-section of the prepared hydrogel indicated its porosity. In particular, in skin permeation experiments using a Franz diffusion cell, hydrogel containing the licorice flavonoids showed remarkable transdermal permeation compared to the control group. These results indicate that porous cellulose hydrogel is a potential drug delivery system to enhance the skin permeation of licorice flavonoids.

진공조건에 따른 Parylene 코팅박막의 투명도 평가

  • Lee, Su-Min;Jo, Gyu-Seok;Lee, Ji-Yun;Lee, Yun-Jin;Heo, Seung-Uk;Nam, Sang-Hui
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.297-297
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    • 2012
  • Parylene 코팅은 다결정인 고분자 유기물에 열을 가하여 기화시켜 진공상태에서 피사체를 코팅하는 것으로 마이크로 두께 단위의 유전체 증착하는 것이다. Parylene 코팅은 주로 Display를 비롯한 태양전지, 반도체 등에서 다양한 산업분야에서 이용되며, 이 때 외부로부터 침투하는 수분을 방지하고, 전기적 절연 및 불순물로부터 피사체를 보호하여 기계적인 안정성을 목적으로 사용된다. Display와 태양전지는 빛을 이용하는 분야로써 Parylene을 투과하여 들어오는 빛의 전달효율에 따른 영향이 크게 고려되어진다. 빛의 전달효율을 높이기 위해서는 Parylene의 높은 투명도가 중요한 요소로 작용한다. 본 연구에서는 Parylene 코팅 박막의 투명도 상승을 위해 증착 시 다양한 진공조건으로 실험을 진행하였다. Parylene 코팅 시, 진공도에 따른 투명도를 평가하기 위해 Substrate로는(100%)투과율을 가지는 재질의 glass를 이용하였다. Parylene 종류로는 반도체분야에 주로 이용되는 C-type의 Parylene Polymer 사용하였다. 증착 조건으로는 $7{\sim}8{\times}10^{-2}$ Torr, $4{\sim}6{\times}10^{-2}$ Torr, $2{\sim}3{\times}10^{-2}$ Torr의 각각 다른 진공 조건에서 120분간 증착시켜 Parylene 코팅막을 형성하였다. 또한 높은 투습방지력을 가짐과 동시에 고투명도 유지에 대해 신뢰성평가를 하기위해 각 조건별로 1회, 3회, 5회 반복 증착하였다. 제작된 각 시편의 투명도 측정을 위해 광도계(DX-100, TAKEMURA)를 이용하여 빛의 투과율을 관찰하였다. 그 결과 진공도 $2{\sim}3{\times}10^{-2}$ Torr, $4{\sim}6{\times}10^{-2}$ Torr, $7{\sim}8{\times}10^{-2}$ Torr순의 시편이 높은 투과율을 나타내었으며, 그 중 $2{\sim}3{\times}10^{-2}$ Torr의 1회 증착 한 시편이(97%)로 가장 높은 투과율을 나타내었다. 반대로 $7{\sim}8{\times}10^{-2}$ Torr의 5회 증착 한 시편이(78%)로 가장 낮은 투과율을 보였다. 따라서 진공도가 높을수록 투명도가 상승하며, 증착횟수가 늘어날수록 투명도가 감소하는 것을 알 수 있었다. 본 연구의 결과로 Parylene 코팅의 진공도에 따른 투명도를 평가함으로써 Parylene 코팅 증착조건 최적화를 위한 기초자료로 이용될 것이라 사료된다. 또한 후속 연구로써 substrate의 온도조절과 시료량의 조절이 이루어진다면 좀 더 효율적으로 최적화된 박막형성이 가능할 것이라 판단된다.

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