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        검색결과 52

        22.
        2010.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Bismuth-telluride based thermoelectric powders were fabricated by two-step planetary milling process which produces bimodal size distribution ranging . The powders were reduced in hydrogen atmosphere to minimize oxygen contents which cause degradation of thermoelectric performance by decreasing electrical conductivity. Oxygen contents were decreased from 0.48% to 0.25% by the reduction process. In this study, both the as-synthesized and the reduced powders were consolidated by the spark plasma sintering process at for 10 min at the heating rate of and then their thermoelectric properties were investigated. The sintered samples using the reduced p-type thermoelectric powders show 15% lower specific electrical resistivity () than those of the as-synthesized powders while Seebeck coefficient and thermal conductivity do not change a lot. The results confirmed that ZT value of thermoelectric performance at room temperature was improved by 15% due to high electric conductivity caused by the controlled oxygen contents present at bismuth telluride materials.
        4,000원
        24.
        2009.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Niobium powder was made from potassium heptafluoroniobite () as the raw material using sodium (Na) as a reducing agent based on the hunter process. The apparatus for the experiment was designed and built specifically for the present study. The niobium particle size greatly increased as the reduction temperature increased from to . The particle size was fairly uniform, varying from to depending on the reduction temperatures. The niobium powder morphology and particle size are very sensitive to a reaction temperature in the metallothermic reduction process. The yield of niobium powder increased from 55% to 80% with a increasing a reaction temperature.
        4,000원
        32.
        1995.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The raw drinking water quality is getting worse because of the winter drought and the conventional treatment system is'nt suitable to obtain the satisfied quality of water. So, the advanced water system, BAC(Biological Activated Carbon) process is said to be effective to remove dissolved organics and ammonia nitrogen. In our study, the BAC pilot plant using Nak-dong river water is tested in low temperature. Following results are found from the study. The ammonia nitrogen removal rate of BAC system using wood-based carbon (PICABIOL) was 99% in $6^{\circ}C$ temperature. Chlorine dosage in wood-based BAC effluent was reduced to 67% of that in sand filtered wate. It resulted from the removal of ammonia nitrogen. Also, THM formed by chlorine addition in wood-based BAC effluent was decreased to 65% of that in sand filtered water. In the case of dual-filter, the removal efficiency of ammonia nitrogen was increased 30% more than in conventional sand filter. According to this result, the ammonia nitrogen load to BAC system could be lessened by the use of dual-filter.
        4,000원
        33.
        2021.04 KCI 등재 서비스 종료(열람 제한)
        This study analyzed the weather environment of the smart city to identify the temperature reduction effects of the heat reducing facilities. The methodology is divided into indoor and outdoor analyses. Indoor analyses were conducted for the evidence-based design of the facility. The size of nozzle is adjusted to derive the most efficient size for outdoor use. Three types of nozzles were used, 0.15 mm, 0.2 mm and 0.3 mm. The most efficient nozzle was selected as 0.15 mm. The outdoor test was measured for two days from August 3 to August 4, 2020, and the weather data were collected for the control and target sites on the first day. On the second day, the measurements were taken assuming that the temperature and humidity of two sites would be similar. Compared to the control group, the outdoor test site had a temperature reduction effect up to 7.4℃. When operating the heat-reducing facility, the rate of change in sensible temperature is lower than control site. This study concluded that mist facilities have a pre-cooling effect, which means reducing the temperature to a certain level. The results from this study data could be provided when establishing an adaptation policy for a heatwave.
        34.
        2020.06 KCI 등재 서비스 종료(열람 제한)
        According to a NASA Goddard Institute for Space Studies report, temperatures have risen by approximately 1 °C so far, based on temperatures recorded in 1880. The 2003 heatwave in Europe affected approximately 35,000 people across Europe. In this study, a cooling fog, which is used in smart cities, was designed to efficiently reduce the temperature during a heatwave and its pilot test results were interpreted. A model experiment of the cooling fog was conducted using a chamber, in which nano mist spray instruments and spray nozzles were installed. The designed cooling fog chamber model showed a temperature reduction of up to 13.8 °C for artificial pavement and up to 8.0 °C for green surfaces. However, this model was limited by constant wind speed in the experiment. Moreover, if the cooling fog is used when the wind speed is more than 3m/s in the active green zone, the temperature reduction felt by humans is expected to be even greater. As a second study, the effect of cooling fog on temperature reduction was analyzed by installing a pilot test inside the Land Housing Institute (LHI). The data gathered in this research can be useful for the study of heat reduction techniques in urban areas.
        35.
        2018.10 서비스 종료(열람 제한)
        Background : Cnidium officinale M. is a medicinal plant used a lot of herbal and functional food ingredients. Recently, the area of cultivation has been increased due to the increase in domestic demand. By the way, this plant is very vulnerable to high temperature, and recently it is difficult to cultivate due to abnormal high temperature and so on. Therefore, in this study, in order to effectively reduce the high temperature of the field, we investigated the degree of temperature reduction and the growth condition of the plant after installed mulching, irrigation and the fog facilities. Methods and Results : In order to reduce the temperature of C. officinale M. cultivation field, the black and white double vinyl mulching, drip irrigation and fog spray treatment were applied and the results were as follows. The survey was conducted at about 2:00 pm on a clear day in August, and the temperature was about 33℃ at the time of measurement. In the case of only black vinyl mulching without watering, the soil temperature was 43.5℃, the surface temperature was 61.4℃, and the mortality rate of the C. officinale M. was 98.0%. The temperature of soil and surface were lowered to 33.1℃ and 38.6℃, respectively, when treated with black vinyl mulching and drip irrigation and fog spraying. In the case of black and white double vinyl mulching, the effect of temperature reduction was better. The soil surface temperature of the non-irrigation treatment was 37.9℃, the surface temperature was 48.5℃ and the mortality rate was decreased to 6.7%. In case of combined drip irrigation and fog spraying, soil temperature was reduced to 31.5℃, surface temperature was 35.8℃, and mortality rate was 0%. Conclusion : As a result of this study, the temperature of soil and surface dropped by up to 12. 0℃ and 25.6℃, respectively, when combined with black and white double vinyl mulching and drip irrigation and fog spray treatment. The mortality rate declined from 89.0% to 0%. Therefore, Therefore, if the results of this study are applied to the cultivation of C. officinale M., it is expected that the production stability will be improved.
        36.
        2018.05 서비스 종료(열람 제한)
        To achieve energy efficiency improvement is used to lower temperature for emission gas at catalyst inlet, or to reduce/stop using steam to reheat emission gas. Saved energy from this process can be used as power source in order to increase generation efficiency. Dry emission gas treatment, on the other hand, is the technology to increase generation efficiency by using highly efficient desalination materials including highly-responsive slaked lime and sodium type chemicals in order to comply with air pollution standards and reduce used steam volume for reheating emission gas. If dry emission gas is available, reheating is possible only with the temperature of 45℃ in order to expect generation efficiency by reducing steam volume for reheating. Retention energy of emission gas from combustion is calculated by emission gas multiplied by specific heat and temperature. In order to obtain more heat recovery from combustion emission gas, it is necessary to reduce not only exothermic loss from boiler facilities but emission calorie of emission gas coming out of boiler facilities. In order to reduce emission calorie of emission gas, it is efficient to realize temperature lowering for the emission gas temperature from the exit of heat recovery facility and reduce emission gas volume. When applying low temperature catalysts, the energy saving features from 0.03% to 2.52% (average 1.28%). When increasing the excess air ratio to 2.0, generation efficiency decreases by 0.41%. When the inlet temperature of the catalyst bed was changed from 210℃ to 180℃, greenhouse gas reduction results were 47.4, 94.8, 118.5, 142.2 thousand tons-CO2/y, CH4 was calculated to be 550.0, 1100.1, 1375.1, 1650.1 kg-CH4/y, and N2O was 275.0, 550.0, 687.6, 825.1 kg-N2O/y. In the case of high efficiency dry flue gas treatment, reduction of greenhouse gases by the change of temperature 120~160℃ and exhaust gas 5,000 ~ 6,500 ㎥/ton is possible with a minimum of 355,461 ton/y of CO2 and minimum 4,125 tons of CH4/y to a maximum of 6,325 ton/y and N2O to a minimum of 2,045 kg/y to a maximum of 3,135 kg/y.
        37.
        2017.12 KCI 등재 서비스 종료(열람 제한)
        Global climate change caused by industrialization has caused abnormal weather conditions such as urban temperatures and tropical nights, urban heat waves, heat waves, and heavy rains. Therefore, the study tried to analyze climate conditions and weather conditions in the streets and analyze climate factors and meteorological factors that lead to inconvenience to citizens. In the case of trees, the overall temperature, surface temperature, solar irradiance, and net radiation were measured low, and the temperature was lower in the Pedestrian road than in roads. The dry bulb temperature, the black bulb temperature, and the wet bulb temperature for the thermal evaluation showed the same tendency. In the case of thermal evaluation, there was a similar tendency to temperature in WBGT, MRT, and UTCI, and varied differences between types. Although the correlation between the meteorological environment and the thermal environment showed a statistically significant significance, the difference between the measured items was not significant. The study found that the trees were generally pleasant to weather and thermal climate in the form of trees, and the differences were mostly documented.
        38.
        2017.06 서비스 종료(열람 제한)
        본 연구는 옥상녹화 토심에 따른 온도 및 열류량 차이를 알아보고자 수행하였다. 470×270mm 크기에 높이가 10cm, 20cm, 30cm인 플라스 틱 용기를 각각 12개씩 준비한 후 플라이애쉬(fly-ash)를 채워 잔디를 식재하여 실험구를 조성하였다. 이때 아무것도 식재하지 않은 옥상바 닥을 대조구로 하였다. 실험결과 온도저감은 토심이 깊을수록 크게 나타났으며, 최고온도와 최저온도 차이는 대조구가 29.5℃로 가장 크 게 나타났으며, 그 다음으로 토심 30cm 27.2℃, 20cm 23.5℃, 10cm 23.0℃ 순으로 나타났다. 각 실험구 표면과 토양 하부의 최대온도의 차 이를 살펴보면 토심 30cm가 18.4℃로 가장 높았으며, 그 다음으로 토심 20cm가 16.1℃, 10cm가 14.4℃로 나타났다. 최대온도 도달시간을 살펴보면 토심 30cm는 7시간 50분이 소요되었으며, 토심 20cm는 7시간, 10cm는 4시간 50분으로 나타났다. 열류량의 변화는 측정기간 중 일사량이 가장 높았던 날(873.3W․m-2)을 기준으로 대조구에서는 408.9W․m-2를 나타낸 반면에 토심 20cm -3.8W․m-2, 30cm 2.7W․m-2, 10cm 4.5W․m-2로 나타나 토심이 깊어질수록 열전달이 감소되는 것으로 나타났다. 이상의 결과를 종합하면, 옥상녹화를 조성함으로써 표 면온도의 감소는 물론 외기온도가 전달되는데 지연효과로 인한 차열이나 단열효과로 발생하는 냉난방 에너지 절약으로 이어질 수 있을 것 으로 판단된다.
        39.
        2017.05 서비스 종료(열람 제한)
        Background : The use of the rain shelter facility gets more prevalent in the Ginseng cultivation area these days. This study is designed to establish a technique for the stable cultivation of Ginseng in the rain shelter facilities in high temperature (above 30 ℃) without the damage from high temperature Methods and Results : This study was carried out on 3-year Ginseng roots in 2016 in order to find out how to stably cultivate Ginseng in high temperature without suffering the high temperature damage during the cultivation of Ginseng under rain shelter facilities. The rain shading materials were coated with scattering film (scattering film + black shading net 90%), bluish white double-sided film (shading 85%) and PE film (PE film + black shading net 90%). The damage reduction by high temperature was made to the scattering film and bluish-white double-ended film only. An aluminum screen (shading rate: 40%) was installed when the high temperature (above 30℃) was reached while the isoprene (solution of 2000 times) was sprayed 4 times every 7 days from the full development stage. The light transmittance was 12.6 - 13.4% for the scattering film, 10.5 - 10.8% for the bluish-white double sided film and 7.1% for the PE film in the first coating while it was 7.3% for the scattering film and 7.1% for the bluish-white double-sided film when the aluminum screen was installed in high temperature. The high, average and low values in the relative humidity were higher inside the facility than in the outside during the survey period. The area of leaf was the largest under the scattering film. The area of leaf was the largest for the scattered film under the aluminum shade of 40% shading followed by that of spraying of isoprene 4 times, and that of the no-treatment. As for the growth under ground, the growth of underground shoots increased by 40% in aluminum screen, 53.7% in shading and 26.1% in the spraying of isoprene 4 times than non-shading while there was no difference among other rain shelter materials. Conclusion : The result of the research showed that when the scattering film is selected as the rain shelter material film for the cultivation of Ginseng, it is necessary to shade the sunlight as much as 40% by using the aluminum screen or the shading net to reduce the high temperature damage.
        40.
        2016.02 KCI 등재 서비스 종료(열람 제한)
        This study reduced and built Street Canyons created by skyscrapers in order to verify effect of Street Canyons by green wall within the city centre and analysed influence factors on temperature reduction according to applicative types of green wall in the lab. Applicative types were divided into three types such as non- greening type(Case A), one-side greening type(Case B), both side greening type(Case C). The result of analysis of each types showed that average temperature of Case B and Case C is respectively 1.0℃ and 1.7℃ lower than Case A. The result of analysis of WBGT was that the highest temperature was given by Case A(40.2℃) and second one was from Case B(39.8℃) and third one was from (39.1℃) and in UTCI Case A records the highest temperature of 34.7℃ and Case B provided the second highest temperature of 33.9℃ and Case B gave the lowest temperature of 32.7℃. In PMV the highest temperature of 2.65 was from Case B and second one of 2.61 was from Case A and third one of 2.54 was from Case C. Duncan analysis of each types based on solar radiation and thermal comfort generated that there was analytical significance between Case A and Case B and Case B in terms of each types of average temperature reduction. The significance of thermal comfort in WBGT, MRT, PMV showed non-significance but, In UTCI it was analysed that there was significance between Case C and Case A.
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