• 제목/요약/키워드: Air temperature of Taegu

검색결과 33건 처리시간 0.023초

Three-dimensional Numerical Prediction on the Evolution of Nocturnal Thermal High (Tropical Night) in a Basin

  • Choi, Hyo;Kim, Jeong-Woo
    • International Union of Geodesy and Geophysics Korean Journal of Geophysical Research
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    • 제25권1호
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    • pp.57-81
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    • 1997
  • Numerical prediction of nocturnal thermal high in summer of the 1995 near Taegu city located in a basin has been carried out by a non-hydrostatic numerical model over complex terrain through one-way double nesting technique in the Z following coordinate system. Under the prevailing westerly winds, vertical turbulent fluxes of momentum and heat over mountains for daytime hours are quite strong with a large magnitude of more than $120W/\textrm{m}^2$, but a small one of $5W/\textrm{m}^2$ at the surface of the basin. Convective boundary layer (CBL) is developed with a thickness of about 600m over the ground in the lee side of Mt. Hyungje, and extends to the edge of inland at the interface of land sea in the east. Sensible heat flux near the surface of the top of the mountain is $50W/\textrm{m}^2$, but its flux in the basin is almost zero. Convergence of sensible heat flux occurs from the ground surface toward the atmosphere in the lower layer, causing the layer over the mountain to be warmed up, but no convergance of the flux over the basin results from the significant mixing of air within the CBL. As horizontal transport of sensible heat flux from the top of the mountain toward over the basin results in the continuous accumulation of heat with time, enhancing air temperature at the surface of the basin, especially Taegu city to be higher than $39.3^{\circ}C$. Since latent heat fluxes are $270W/\textrm{m}^2$ near the top of the mountain and $300W/\textrm{m}^2$ along the slope of the mountain and the basin, evaporation of water vapor from the surface of the basin is much higher than one from the mountain and then, horizontal transport of latent heat flux is from the basin toward the mountain, showing relative humidity of 65 to 75% over the mountain to be much greater than 50% to 55% in the basin. At night, sensible heat fluxes have negative values of $-120W/\textrm{m}^2$ along the slope near the top of the mountain and $-50W/\textrm{m}^2$ at the surface of the basin, which indicate gain of heat from the lower atmosphere. Nighttime radiative cooling produces a shallow nocturnal surface inversion layer with a thickness of about 100m, which is much lower than common surface inversion layer, and lifts extremely heated air masses for daytime hours, namely, a warm pool of $34^{\circ}C$ to be isolated over the ground surface in the basin. As heat transfer from the warm pool in the lower atmosphere toward the ground of the basin occurs, the air near the surface of the basin does not much cool down, resulting in the persistence of high temperature at night, called nocturnal thermal high or tropical night. High relative humidity of 75% is found at the surface of the basin under the moderate wind, while slightly low relative humidity of 60% is along the eastern slope of the high mountain, due to adiabatic heating by the srong downslope wind. Air temperature near the surface of the basin with high moisture in the evening does not get lower than that during the day and the high temperature produces nocturnal warming situation.

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The Extraction of Co-PET from Non-Woven Fabrics of Nylon/Co-PET Sea-island Type Composite Microfiber

  • Park, Myung-Soo;Yoon, Jong-Ho;Cho, Dae-Hyun
    • 한국의류산업학회지
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    • 제3권5호
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    • pp.466-472
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    • 2001
  • To find a suitable condition in this process examined, we investigated the main control factors, such as, the NaOH concentrations, such as, the NaOH concentrations, the heat treating times, and the heating temperatures. The resulting mechanical properties of the fabrics also studied. The samples used were Nylon/Co-PET sea-island type composite microfiber (Co-PET content: 35%) non-woven fabric. The conclusions obtained were as follows. 1. For the complete extraction of Co-PET from the sample non-woven fabric in the dry hot air process, $160^{\circ}C$ of air temperature, 15 min. of treatment time, and around 30% of NaOH concentration were required. On the other hand, in the wet hot air process, $140^{\circ}C$ of air temperature, 3.5 min. of treatment time, and around 30% of NaOH concentration were required. 2. The mechanical properties of the continuous processed samples showed that the WT, B, and WC increased with increasing the weight reduction ratio. However, the G, decreased with increasing the weight loss ratio. Note that, particularly in B, it increased drastically when the weight deduction ratios exceeded 30%. 3. As increasing the wet hot air temperature from 130 to $140^{\circ}C$, B appeared to increase, however, WT, G, and WC appeared to decrease. 4. The best condition found in this continuous process to extract Co-PET is the wet hot air temperature of 140, NaOH concentration of 28% or above, and the treatment time 2-4 min.

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대구지역 공중이용시설의 실내 $\cdot$ 외 공기 중 기준성오염물질의 농도 (Concentrations of Criteria Pollutants in Indoor and Ambient Air of Public Facilities in Taegu Area)

  • 송희봉;민경섭;한개희;김종우;백성옥
    • 한국대기환경학회지
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    • 제12권4호
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    • pp.429-439
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    • 1996
  • A comprehensive air quality monitoring was carried out in this study to investigate the concentrations of criteria air pollutants in indoor and outdoor air of public facilities in Taegu area. Four different kinds of public facilities were seleced as sampling sites, which are underground stores, stations & terminals, general hospitals, and department stores. Each group of the public facilities was consisted of three different sampling sites. As a consequence, a total of 12 different sampling sites were surveyed throughout this study. Sampling was conducted simultaneously indoors, three times per day (in the morning, afternoon, and evening) and four times per year (spring, summer, fall, and winter) at each sampling site during the period of October 1994 to July 1995. A range of criteria pollutants were measured in order to obtain a broad profile of indoor and ambient air quality, including total suspended particles (TSP), carbon monoxide (CO), carbon dioxide ($CO_2$), formaldehyde (HCHO), sulfur dioxide ($SO_2$), and nitrogen dioxide ($NO_2$). In addition, temperature, relative humidity, and air current were measured on site together with those air pollutants. Results of this study indicated that the indoor levels of TSP, CO, $SO_2, and NO_2$ appeared to be generally higher in stations/terminals and underground stores than those in department stores and hospitals. However, HCHO and $CO_2$ were found to have higher levels in the department stores and hospitals than other places, indicating that the effects of indoor sources for these pollutants are significantly different from other combustion related pollutants such as TSP, CO, and $SO_2$. It was also found that there are marked seasonal and daily variations both in indoor and outdoor air quality. In general, combustion related pollutants such as CO, $SO_2$ and $NO_2$ showed a typical pattern of higher levels in winter than insummer, and also higher in the morning and/or in the evening than in the afternoon. However, the seasonal and daily patterns of HCHO appeared to be opposite to the combustion related pollutants, i.e., higher both in summer and in the afternoon, implying the effect of temperature on the volatilization from indoor sources of HCHO. Results of correlation analyses between indoor and outdoor air quality also indicated that the effects of outdoor sources on the indoor levels of TSP, $SO_2$, CO, and $NO_2$ and much significant, whilst no significant correlations between indoor and outdoor levels were found for HCHO and $CO_2$.

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Monascus pilosus가 생성하는 색소의 안정성 (Stability of Pigment Produced by Monascus pilosus)

  • 박미자;윤은경;김순동
    • 한국식품과학회지
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    • 제34권4호
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    • pp.541-545
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    • 2002
  • Monascus pilosus KCCM 60084로부터 생성되는 색소의 공기에 대한 안정성 및 색소용액의 온도, pH, 빛 및 염류에 대한 안정성을 조사하였다. Monascus 색소는 공기 중에 30일간 방지할 경우 77.9%, 감압하에서는 48.4%가 감소하였다. Monascus 색소는 $20{\sim}80^{\circ}C$에서는 비교적 안정하였으나 $100{\sim}121^{\circ}C$에서는 $6.0{\sim}11.6%$의 감소율을 나타내었다. Monascus 색소는 pH $4{\sim}8$에서는 안정하였으나 pH 3과 9에서의 감소율은 각각 15.5% 및 13.7%이였다. Monascus 색소는 암소에서는 안정하였으나 형광하에서 30일 동안 둔 경우는 22.9%, 태양광 하에서는 68.8%가 감소하였다. 또한 Monascus 색소는 KCI, NaCI, $CaCl_2$, $MgCl_2$$ZnCl_2$에서는 비교적 안정하였으나 0.1 M $AlCl_3$ 용액에서는 20.3%의 감소로 불안정하였다.

벼 건답직파재배의 파종조한기에 의한 농업기후지대 구분 (Agroclimatic Zoning Based on Critical Early Seeding Date in Dry-Seeded Rice Analyzed by Daily Mean Air Temperature)

  • 최돈향;윤경민
    • 한국작물학회지
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    • 제39권5호
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    • pp.444-452
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    • 1994
  • 벼 건답직파재배의 파종 조한기를 전국의 기후자료 분석에 의해 구명하고자 기상청 56개 기상관측지점의 기온출현특성을 분석하였다. 출아소요일수가 짧으면서 출아일수의 변이도 적고, 출아립묘도 안정하게 확보할 수 있는 파종 조한기 결정의 유효기준온도인 일평균기온 13$^{\circ}C$의 20년간 평균 출아초일과 80% 출현시기를 지역별로 분석한 결과, 가. 일평균기온 13$^{\circ}C$의 출현초일의 일중기온변이는 낮의 18~19$^{\circ}C$, 밤의 6~1$0^{\circ}C$로서 발아 및 출아에 안전한 기온변이였으며, 나. 연차간('73~'92, 20년간) 변이는 일수로서 약 30~40일, 표준편차(SD)로는 약 8~10일의 차이가 있었고, '88년 이후는 평균 출현초일보다 빨라져 영농에 큰 관심이 되고 있으며, 다. 지역별 분포(기상청. 관측의 56개 지점 분석)는 평균 출현초일이 중북부의 대관령지역은 5월 19일이고 남부의 부산지역은 4월 12일 경이며, 80%출현시기는 중북부의 대관령지역이 5월 29일이고 남부의 합천지역이 4월 21일로서 지역간의 차이가 커서 위도 및 표고에 따른 세밀한 분석이 요구되며, 라. 파종 조한기는 일평균기온 13$^{\circ}C$의 평균 출현초일부터 80%출현시기까지이며, 80%출아시기는 평균 출현초일보다 약 10일 늦게 나타났음. 마. 19개의 수도재배 농업기후지대별 평균 출현초일과 80% 출현시기의 유사성을 중심으로 다시 단순화시켜 구분하면 19개의 지대는 5개의 유형으로 구분됨.

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일평균기온의 지역별 출현특성 분석에 의한 벼 건답직파 출아조한의 파종기 결정 (Determination of Critical Early Seeding Date for Seedling Emergence in Dry-Seeded Rice Based on Statistical Analysis of Daily Mean Air Temperature in Korea)

  • 최돈향
    • 한국작물학회지
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    • 제39권5호
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    • pp.437-443
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    • 1994
  • 벼의 생산비 절감을 위한 성력재배의 측면에서 전국적으로 확대 실시 보급되고 있는 건답 직파재배 안전성을 기후적으로 검토하고자 출아 조한의 파종기 결정에 대한 유효기준온도인 일평균기온 1$0^{\circ}C$ 출현초일과 80% 출현시기를 지역별로 분석한 결과, 가. 연차간('73~'92, 20년간) 변이는 일수로서는 약 20~30일, 표준편차(SD)로는 약 5~7일의 차이가 있었고, '88년 이후는 평균 출현초일보다 빨라져 영농면에서 큰 관심이 되고 있음. 나. 지역별 분포(기상청 관측의 56개 지점 분석)는 북부(대관령, 5월 1일)와 남부(부산, 3월 30일)간에는 약 30일 이상의 출현시기에 차이가 있어 우리나라의 기후자원량 분석의 필요성을 느낄 수 있음. 다. 일평균기온 1$0^{\circ}C$ 평균 출현초일은 80% 출현 시기보다 약 10일 정도 빠른 경향이며 라. 19개의 수도재배농업기후지대별 평균 출현초일과 80% 출현시기의 유사성을 중심으로 다시 단순화시켜 구분하면 19개 지대는 7개의 유형으로 구분할 수 있었음.

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실내에서 식물과 수경시설이 온열환경에 미치는 영향 (The Effect of Plants and Waterscape Facilities on the Thermal Indoor Environment)

  • 정연승;박인환
    • 한국조경학회지
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    • 제27권1호
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    • pp.19-28
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    • 1999
  • This survey is to investigate the effect of plants and waterscape facilities on the thermal indoor environment and to provide basic data for proper plant cultivation to enhance indoor landscape. The survey of the measure of comfort on the indoor environment for the residents of Taegu shows that the measure of comfort on the thermal-environment, which consist of temperature and humidity, has more negative responses than the measure on lighting . are . sound environment, which consists of air freshness, lighting condition and sound environment. The experiments on the effect of the amount of leaves and the distance of plants on the indoor thermal-environment are made. The experimental results illustrate that, as the capacity of a plant becomes greater and the distance from the plant shorter, the falling effect of temperature and the rising effect of humidity on the top of the plant are taken higher than on the side of the plant. When the same amount of leaves is set up, the distance range of the rising effect of humidity becomes wider than that of the falling effect of temperature. The investigation of the effect of waterscape facilities on the indoor thermal-environment shows that temperature and humidity of the space with installed waterscape facilities are lower and higher than without facilities, respectively.

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도시지역 실내환경 유형별 공기질 특성 평가 -가정, 사무실 및 식당을 중심으로- (Characterization of Air Quality in Various Types of Indoor Environments in Urban Areas - Focusing on Homes, Offices, and Restaurants -)

  • 백성옥;김윤신
    • 한국대기환경학회지
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    • 제14권4호
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    • pp.343-360
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    • 1998
  • In this study, comprehensive air quality monitoring was undertaken with a variety of objectives to collect data on the levels of various indoor and ambient air quality parameters in the urban areas of Seoul and Taegu. The sampling sites were comprised of six offices, six residences and six restaurants in each city. The ambient air adjacent to the indoor sites was also simultaneously sampled for the same constituents. The sampling was conducted in two phases: summer of 1994 and winter of 1994/95. A range of air quality parameters were measured simultaneously, which include RSP, CO, COB, NOB, a range of VOC, airborne microbials, temperature, and relative humidity. The indoor and ambient levels of the pollutants measured in this study varied widely between the three types of environments studied. Comparison of median values for the three groups revealed that restaurants had higher indoor levels of most pollutants than homes or offices. There was also a clear pattern of the indoor levels of target pollutants being higher than those outdoors, particularly in restaurants. Concentrations of CO and most of the VOC were found to be significantly higher in the commercial districts, indicating the influence of vehicle exhaust emissions. A very wide range of VOC levels was documented in this study. Although median indoorloutdoor ratios indicated a generally increasing level of VOC indoors when compared to those outdoors, no statistically significant differences were found between indoor and outdoor VOC levels in homes and offices, implying the importance of ambient air quality in determining the quality of indoor air for homes and offices in urban areas. In addition, there was a general pattern of increasing concentrations from summer to winter, and similarly from outdoor to indoor air for nearly all target compounds. The seasonal differences in median levels were very clearly seen for fuel combustion related pollutants such as RSP, CO and VOC, this being attributed to the effects of increased fuel consumption during the cold season and to meteorological factors.

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고속방사 PET filament의 열처리에 따른 수축 및 Creep 거동에 관한 연구 (Shrinkage and Creep Behavior of Annealed PET Filament in High Speed Spinning)

  • Park, Young-Kun;Koo, Ja-Gil;Chang, Dong-Ho
    • 한국염색가공학회지
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    • 제9권4호
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    • pp.7-19
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    • 1997
  • The purpose of the study was to investigate the shrinkage and creep behavior of PET filaments which were prepared at various spinning speeds(3,300, 4,000, 5,000, 6,000, and 7,000m/min) and anneal($120^{\circ}$, 30min & $150^{\circ}$, 40min). In order to determine the shrinkage and creep behavior with the crystallinity change, PET filaments were treated with low(12$0^{\circ}C$, 30min) and high($150^{\circ}$, 40min) temperature conditions with hot air dryer under the constant tension. The results of the study were as follows: as the spinning speed increased, the degree of shrinkage and elongation of the sample treated by wet condition decreased. The sample with 0.01g/d of load under various spinning speeds showed shrinkage behavior and highest shrinkage ratio at $76^{\circ}$ which was Tg of PET. The degree of shrinkage and elongation of the treated sample was less than those of the untreated sample by wet treatment. Especially, there was less degree of shrinkage and elongation of the sample treated by higher temperature condition. In 3,300m/min of spinning speed the draw ratio of undrawn yarn of a mixture of a-axis orientation and c-axis orientation was 2.0, which is similar to the value of the traditional drawn yarn. Finally, there was a big range of shrinkage and elongation by wet treatment in 3,300 m/min of spinning speed.

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온돌 수면환경이 인체의 온열생리반응에 미치는 영향 (Effects of Ondol Sleep Environment on the Thermo-physiological Response of the Human Body)

  • 김정숙;성수광
    • 한국의류산업학회지
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    • 제1권2호
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    • pp.173-181
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    • 1999
  • 한국의 청실양식은 84.9%가 요와 이불을 사용하여 온돌의 방바닥에 누워 자는 형식이다. 이에 본 연구는 온돌 난방 주택에서의 수연환경의 실태를 파악하기 위하여 온돌침실의 온열환경, 침상기후, 수면시 생리반응을 각 가정의 일상생활 중에서 직접 측정하여 계절별, 주택형태별에 따른 수면환경의 차이를 분석하였다. 그 결과, 계절 및 주택형태별에 따른 수면환경의 큰 온도차이에도 불구하고 수면 중 인체와 접촉하는 이불 밑과 요 시트의 침상온도는 계절과 주택형태에 관계없이 연평균 $30.5{\sim}34.1^{\circ}C$로 쾌적한 침상 내 온도를 나타내었을 뿐만 아니라 수면 중 직장온도도 연평균 $36.8^{\circ}C$로 계절 및 주택형태에 따른 유의한 차이는 인정되지 않았다. 그러나 침실환경에 대한 주관적 온열감각은 주택형태에 따라 유의한 차이를 나타내어 침실의 온열 중성점이 아파트 $25.9^{\circ}C$, 단독주택 $20.3^{\circ}C$로 아파트가 단독주택보다 $5.6^{\circ}C$ 높게 나타났다. 이는 건물의 구조가 주택은 조적조의 구조인 반면 아파트는 철근콘크리트의 구조로 우수한 단열력을 가지므로 외기온의 영향을 받기 어려워 높은 실내온도를 유지하였기 때문이다. 뿐만 아니라 거주자들이 주택 내 환경에 적응되어진 결과라고도 할 수 있겠으나 아파트 거주자의 측면에서는 온열환경에 대한 에너지 절약, 건강 유지 등의 관점에서 보다 효율적인 난방을 위한 쾌적한 생활온도 설정을 재고할 필요가 있다고 하겠다.

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