• 제목/요약/키워드: Water vapor resistance factor

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다공성 건축자재의 투습 및 통기성 분석에 대한 연구 (Analysis of Water-Vapor Permeance and Ventilation Property of the Porous Construction Materials)

  • 김종원;안영철
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.754-757
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    • 2008
  • To maintain the indoor air quality, many ventilation systems and technologies have been developed in the highly insulated and air tight buildings. In this study, a porous construction material, which is applicable to passive ventilation system, is developed and measured the performances of the permeability and the resistance of water vapor, and the dust collection efficiency. The average coefficient of water vapor permeability shows $3.6\;g/m^2{\cdot}h{\cdot}mmHg$, which is slightly higher than Hanji ($2.4{\sim}3.2\;g/m^2{\cdot}h{\cdot}mmHg$) and the average water vapor resistance factor shows $0.303\;g/m^2{\cdot}h{\cdot}mmHg/g$, which is slightly smaller than Hanji($0.309{\sim}0.315\;g/m^2{\cdot}h{\cdot}mmHg/g$). The pressure drop of the porous construction material is smaller than the HEPA filter and the minimum dust collection efficiency shows 82.8% in the range of $2{\sim}9\;cm/s$.

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풍속 존재 시 쾌적보온성 의복의 온열특성에 관한 연구 (A Study on the Insulation of Thermal Clothing Under Dynamic Air Condition)

  • 송민규;권명숙
    • 복식
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    • 제58권9호
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    • pp.29-37
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    • 2008
  • The purpose of this study was to investigate insulation of thermal clothing under still and dynamic air conditions(with 2.1m/sec air velocity) and decrease of insulation in both conditions, to analyze correlations among them, and to estimate insulation and decrease of insulation using factors, such as fabric insulation, fabric weight, clothing weight, air permeability, and water vapor resistance. A total of 25 kinds of clothing were tested(9 types for suits, 6 types of jacket, 5 types for shirts, and 5 types for trousers). The results of this study were as follows; Thermal resistance of clothing under the dynamic air condition decreased comparing to that of clothing under still air condition in all types of clothing. Decrease in shirts was the biggest(47.5%), followed by suits(39.51%), trousers(37.48%), and jackets(34.49%) in sequence. Thermal resistance of clothing under dynamic air condition showed very high correlation(0.98, p<0.01) with that of clothing under still air condition, followed by thermal resistance of fabric(0.86, p<0.01). Decrease in thermal resistance of clothing showed the highest correlation with air permeability. It didn't show correlation with other factors. Regression analysis showed that fabric thickness would be useful factor for estimating thermal resistance of clothing and air permeability also would be useful factor for estimating decrease in thermal resistance of clothing.

편성물의 섬유의 종류, 실의 굵기 및 니트타입에 따른 투습완충능력 (Effect of Fiber Content, Yarn Size and Construction of Knit Fabrics on the Buffering Capacity against Water Vapor)

  • 유화숙;허윤숙;김은애
    • 한국의류학회지
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    • 제20권1호
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    • pp.228-238
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    • 1996
  • The purpose of this study was to evaluate the effect of chacteristics of knit fabrics on the microclimate of the skin simulating system. To determine the effect of characteristics of knit fabrics, vapor state of sweat pulse was simulated in the closed system. Different contents of fibers such as cotton, wool and polyester with different yarn size and knit types were chosen for specimens. The changes of humidity and temperature of air layer in the simulated systems were measured. Buffering indices, $K_d$ and $\beta_r$, were determined by considering $\alpha_p, \DeltaP_{max}, t_{max}, and tan\beta$. Physical properties of knit fabrics such as thickness, porosity, air resistance and moisture vapor transport were measured. Results showed that vapor pressure of wool was lower than cotton or polyester This was attributed to the hydrophilicity of wool which absorbed moisture rather quickly and retained in the knit fabric. The time to decrease vapor pressure was faster for polyester than cotton or wool. As a result, $K_d$ was in the order of wool> polye, item> cotton. $\beta_r$ of wool was rower than cotton or polyester due to its lowers porosity and slower desorption rate. For the yarn size, $K_d$ was in the order of 80's> 60's> 30's; thinner and lighter yarn showed better water vapor transport property. For knit type, buffering capacity of single jersey was better than interlock knit fabric. Statistical analysis showed that the air permeability was the most influential factor far the water vapor transport properties.

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형광체 변환 고출력 백색 LED 패키지의 가속 열화 스트레스 (Accelerated Degradation Stress of High Power Phosphor Converted LED Package)

  • 천성일;장중순
    • 마이크로전자및패키징학회지
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    • 제17권4호
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    • pp.19-26
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    • 2010
  • 포화 수증기압이 고출력 형광체 변환 백색 LED 패키지의 열화현상에 미치는 주요 스트레스 인자임을 확인하였다. 또한 LED 패키지의 가속 수명시험을 통하여 포화 수증기압이 효과적인 가속 스트레스 인자임을 확인하였다. 실험조건은 350 mA 전류를 인가한 것과 인가하지 않은 2가지 조건에 대해 $121^{\circ}C$, 100% R.H. 환경에서 최대 168 시간동안 진행하였다. 실험결과 두 실험 모두 광 출력 감소, 스펙트럼 세기의 감소, 누설전류 및 열 저항이 증가하였다. 고장분석 결과 광 특성의 열화는 봉지재의 변색과 기포에 의해 발생한 것으로 나타났다. LED 패키지의 변색과 흡습에 의해 유발되는 기계적 (hygro-mechanical) 스트레스에 의한 기포 발생은 패키지 열화의 중요한 인자로써, 포화 수증기압이 고출력 LED의 수명시험 시간을 단축하기 위한 스트레스 인자로 적합함을 알 수 있었다.

식품보장과 수분활성에 관한 연구 1. 조절기류에 의한 건조말쥐치육의 등온흡습곡선의 측정 (Studies on Food Preservation by Controlling Water Activity 1. Measurement of Sorption Isotherm of Dried Filefish Muscle by Equilibration in Dynamic Stream of Conditioned Air)

  • 한봉호;최수일
    • 한국수산과학회지
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    • 제14권4호
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    • pp.189-193
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    • 1981
  • 등온흡습곡선측정시의 건제품이 주어진 대상습도에서 평형에 이르는 시간을 단축시키기 위하여 조절기류를 이용하는 장치를 만들고, 이를 이용하여 $25^{\circ}C$에서 말쥐치 건제품의 등온흡습곡선을 측정하였다. 1. 조절기류를 이용함으로써 주어진 수분활성에서보다 높은 수분활성에 이르는 시간을 평균 45 시간으로 단축시킬 수 있었다. 2. 단분자의 수분함양은 고형물 1kg당 0.092kg이었으며, 건조말쥐치의 제품에 대하여 $8.42\%$였다. Symbols used in the text A : surface, $m^2$ $a_w$: water activity $A_s$ : specific surface, $m^2/kg$ dry matter C : constant related to the heat of adsorption $K_g$ : gas film coefficient of mass transfer, $kg water/hr{\cdot}Pa{\cdot}m^2$ n : number of molecular layers $n_s$ : moisture content, kg water /kg dry matter $n_{sa}$ : mean moisture content, kg water/kg dry matter $n_{se}$ : equilibrium moisture content, kg water/kg dry matter $n_{sm}$ : moisture content for monolayer, kg water/kg dry matter $P_g$ : saturated vapor pressure at wet-bulb temperature, Pa $P_a$ : partial vapor pressure of water in air, Pa $R_d$ : resistance factor against diffusion, $m^2{\cdot}hr/kg$ dry matter $R_s$ : resistance factor against drying, $m^2{\cdot}hr/kg$ dry matter R.H. : relative humidity, $\%$ $\varphi$ : R.H./100

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고밀도 직물의 반복세탁 및 세탁조건에 따른 투습.발수성 변화 (Changes in Moisture Permeability and Waterproofness of High-density Fabric by Repeated Laundering and Condition)

  • 노의경;한정은;김은애
    • 한국의류학회지
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    • 제34권11호
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    • pp.1798-1811
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    • 2010
  • This research evaluates the changes in the comfort-related properties of high-density fabric, such as moisture permeability and waterproofness, in order to assess the relative importance of laundry conditions for clothing properties after repeated laundering and suggest the best laundering conditions for high-density fabric through the identification of the most influential factor. A commercial high-density fabric was washed 25 times in a drum-type washer using nine different laundry conditions based on profiles derived from a fractional factorial design. To evaluate the changes in the comfort-related properties of the fabric, pore size, air permeability, water vapor transport, water repellency, and water resistance were measured. The comfort-related properties of the fabric deteriorated after repeated laundering by the damaged surface finish; in addition, the damaged surface also changed the pore size. As a result, the water repellency and water resistance decreased. The detergent was the most responsible factor to change the properties among the four factors of detergent, hardness, temperature, and RPM. The best laundering conditions for the fabric was a neutral detergent, soft water of 70ppm, a temperature of $15^{\circ}C$, and 30rpm.

Review on the Fire Resistance and Pumpability Performance of Fiber Reinforced High Strength Concrete

  • Kwon, Hae-Won;Kim, Young-Su
    • 한국건축시공학회지
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    • 제13권1호
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    • pp.58-65
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    • 2013
  • Currently, many high-rise buildings are built in Korea for land-efficient utilization and vista. In high-rise buildings this tall, the use of high-strength concrete is essential to reduce the cross-section of structure members and secure axial load. However, this high strength concrete is vulnerable to spalling by fire, due to the water vapor pressure caused by the very high temperature in fire. To prevent this, the main method used is to reinforce the concrete with fiber. However, there has been little research on the pumpability of fiber reinforced high strength concrete. For this reason, this study features a performance review based on the properties and pumpability of fiber reinforced high strength concrete. In addition, the parameter of rheology was measured by extracting mortar from the concrete, and friction factor was measured through a 400 m horizontal pipe pumping test using the fiber reinforced high strength concrete. The basic information on fiber reinforced high strength concrete that we obtain through the experiments and review will contribute to the field.

조선업의 유해 작업환경 대응을 위한 용접 보호복 소재의 성능평가 연구 (Performance Evaluation of Protective Clothing Materials for Welding in a Hazardous Shipbuilding Industry Work Environment)

  • 김민영;배현숙
    • 한국의류산업학회지
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    • 제15권3호
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    • pp.452-460
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    • 2013
  • This study conducted a performance evaluation of protective clothing materials used for welding in a hazardous shipbuilding industry work environment. The welding process was selected as the one that most requires industrial protective clothing according to work environment characteristics. Flame proofing and convection heat protection performance (HTI) in the heat transfer characteristics of protective clothing material were indicated in the order of SW1(Oxidant carbon)>SW2(silica coated Oxidant carbon)>SW4(Oxidant carbon/p-aramid)>SW3(flame proofing cotton). However, radiant heat protection performance (RHTI) and the heat transfer factor (TF) were indicated in the order of SW1>SW4>SW2>SW3 and showed different patterns from the convection heat protection performance. SW1 showed superior air permeability and water vapor permeability. The tensile strength and tear strength of welding protective clothing material were indicated in the order of SW4>SW2>SW3>SW1 and showed that a blend fabric of p-aramid was the most superior for the mechanical properties of SW4. SW1 had excellent heat transfer properties in yet met the minimum performance requirements of tensile strength proved to be inappropriate as being a material for welding protective clothing. The abrasion resistance of woven fabric proved superior compared to nonwoven fabric; however, seam strength and dimensional change both met the minimum performance requirements and indicated that all samples appeared non-hazardous. Finally, oxidant carbon/p-aramid blend fabric appeared appropriate as a protective clothing materials for welding.