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        검색결과 299

        241.
        1998.11 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        Zircaloy-4와 Zr-2.5Nb 합금의 부식에 미치는 냉각속도와 소둔온도의영향을 조사하기 위해서 여러 가지 방법으로 열처리된 시편에 대해서 autoclave 부식시험을 실시하였다. 냉각속도의 영향을 조사하기 위해서 시편을 1050˚C에서 30분 가열 후 염빙수냉, 수냉, 유냉, 공냉, 노냉의 방법에 의해 열처리하였으며, 소둔온도의 영향을 조사하기 위해서 α온도, α+β온도, β온도구역에서 열처리하였다. 500˚C부식시험 결과, Zircaloy-4합금에서는 nodule형 부식이 발생되는 반면에 Zr-2.5Nb 합금에서는 nodule형 부식이 발생되지 않았다. Zirfcaloy-4 합금에서는 nodule형 부식이 발생되는 반면에 Zr-2.5Nb 합금에서는 nodule형 부식이 발생되지 않았다. Zircaloy-4합금은 냉각속도가 빠를수록 내식성이 증가하는 반면에 Zr-2.5Nb합금은 냉각속도가 빠를수록 내식성이 감소하는 경향을 보였다. 또한 소둔온도가 증가할수록 Zr-2.5Nb 합금의 내식성은 감소하는 결과를 보였다. Zircaloy-4의 내식성은 Fe, Cr 원소의 기지내 분포와 석출물의 분포에 의해 지배를 받으며 Zr-2.5Nb 합금의 내식성은 기지조직내의 Nb 농도와 β-Nb상에 의해 지배를 받는 것으로 사료된다.
        4,000원
        242.
        1998.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        극심한 고온으로 인해 정상적인 작물의 재배가 어려운 여름철의 온실 내 기온을 억제시키기 위한 방법 중 가장 효율을 인정받고 있는 증발냉각법은 실내 습도의 증가로 인해 그 사용에 제한을 받게 된다. 본 연구에서는 온실에서 증발냉각법의 냉방효율을 높이기 위한 방법으로 냉수파이프를 설치하여, 그 열적 특성을 분석하고, 제습효과를 조사하였으며, 그 결과를 요약하면 다음과 같다. 동파이프와 아연도금스틸파이프의 총열전달량을 비교한 결과, 동파이프가 다소 크게 나타났으나, 유의성이 없었으며, 두 가지 파이프 모두 이론값 보다 실측값이 더 작게 나타났다. 냉수파이프 표면에 응축되어 제거된 수증기의 양은 동파이프와 아연도금스틸파이프 사이에서 큰 차이를 보이지 않았으나, 두 가지 파이프 모두에서 제습효과는 충분히 큰 것으로 나타났다. 냉수파이프를 설치함으로써 증발냉각시스템의 냉방효율을 평균 48%만큼 높일수 있으며, 평균 1.3℃만큼의 실내기온을 추가로 냉각시킬 수 있는 것으로 예측되었다. 또한, 냉수파이프를 이용해 증발냉각시스템의 가동으로 인한 실내의 과습문제를 해결하기 위해서는 파이프표면의 응축된 수분을 효과적으로 제거할 수 있는 장치나 방법에 대한 추가적인 연구가 필요할 것으로 판단된다.
        4,000원
        243.
        1998.08 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The purpose of this study is analyzing the performance of sea water cooling system under various refrigerant pipe length. In sea water cooling system, the increase of refrigerant pipe length cause increases of pressure drops. These pressure drops cause fresh gas in liquid pipe and increase specific volume in gas pipe outlet, so sea water cooling system capacity is decreased by decrease of refrigerant mass flow rate. Sea water cooling system capacity in refrigerant pipe length 70m is decreased more than 30% when compared with pipe length 10m and the decrease of the coefficient of performance is nearly 20%.
        4,000원
        246.
        1997.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        하절기 고온으로 인한 작물의 열악한 생육 환경개선을 위하여 미포그노즐을 이용하여 패트온실에서 증발 냉각 시험을 수행하였다. 본 연구에 사용된 미포그노즐의 분무특성을 말븐입자분석기로 분석한 결과 분무압 70kg/ cm2에서 분무입자의 크기는 평균 27μm로 나타났고, 이때의 분무량은 분당 100ml였다. 또한 평균 분무 입자의 크기가 27μm인 경우에 분무낙하량을 조사한 결과 낙하거리 150cm에서 총분무량의 88%가 공중에 부유하는 것으로 나타났다. 냉방시스템의 주요 구성 부분은 고압노즐, 양수펌프, 필터 및 미포그노즐 32개로 이루어졌고, 1분 분무-1분 환기로 이루어진 연속 분무 시험 결과 외기온 30℃의 조건에서 온실내 기온을 40℃에서 32℃로 강하시킬 수 있었다 또한 분무시험시 측정한 온실내의 온습도 값을 psychrometric equation에 대입하여 온실내의 수분변화량을 분석할 수 있었으며, 이와 같은 분석을 통하여 온도강하정도와 온실내 공기의 절대습도비 변화량을 예측할 수 있는 실험식을 정립할 수 있었다. 이 실험식을 이용하여 우리 나라 표준형 온실 1-2W, 3-2G-3S에서 실내온도를 40℃에서 30℃로 강제 냉각시킬 때 필요한 분무수량을 분석한 결과 분무입자 27μm에서의 분무수량은 각각 80.7, 99.9l였으며, 포그시스템에 필요한 노즐의 수는 분당분무량 100ml의 경우 3분 분무기준으로 각각 270, 333개가 소요될 것으로 계산되었다. 앞으로 포그시스템을 활성화하기 위해서는 온실의 기상조건에 따른 증발율과 분무입자에 대한 심층적 연구가 요망된다.
        4,000원
        247.
        1996.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Flying and solidification behaviors of the particles manufactured by centrifugal atomization were investigated. Both models were solved by the explicit FDM. Flying calculation supported the experimental results that the finer particles flied shorter than coarser particles and that particles flied shorter for lower rotation velocity than for higher velocity. Cooling curve and dendrite arm spacing were predicted by use of heat transfer analysis.
        4,000원
        248.
        1994.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 시험의 목적은 온실의 주년계획이용을 위해서 하기주간 냉방의 방법으로 heat pump를 이용한 냉수냉방과세무냉방의 효율성을 검사했고 하기 토마토 배꼽썩음병 발생을 억제하기 위하여 냉방과 함께 과실에 송풍처리와 식물체 전체의 공기유동을 촉진시켜주는 처리를 했다. 시험결과는 다음과 같다. 1) 냉수냉방구간 기온은 13시경 온실내 기온보다 약 10℃이상 낮았고, 세무냉방구간 하부의 기온은 13시경 온실내 기온보다 약 5℃ 낮았다. 2) 과실에 송풍처리는 냉방방법에 상관없이 배꼽썩음병이 방지됐고, 냉수냉방 무송풍구의 배꼽썩음병 발생율은 34.5%, 세무냉방 무송풍구는 54.5%, 세무순환냉방구는 78%였다. 냉방효율면에서는 냉수냉방 방법이 충분히 생육한계온도 이하로 냉각되었고, 배꼽썩음병 발생율에서도 세무냉방보다 낮았다. 세무냉방은 재배구간의 공기를 유동시킴으로서 약 24%증가했다. 그러므로 토마토 배꼽썩음병 발생에 관한 환경요인은 온도보다는 습도가 밀접한 관계가 있는 것으로 생각되어진다.
        4,000원
        249.
        1993.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Cooling of nutrient solution is essential to improve the growth environment of crops in hydroponic culture during summer season in Korea. This study was carried out to provide fundamental data for development of the cooling system satisfying the required cooling load of nutrient solution in hydroponic greenhouse. A numerical model for prediction of the cooling load of nutrient solution in hydroponic greenhouse was developed, and the results by the model showed good agreements with those by experiments. Main factors effecting on cooling load were solar radiation and air temperature in weather data, and conductivity of planting board and area ratio of bed to floor in greenhouse parameters. Using the model developed, the design cooling load of nutrient solution in hydroponic greenhouse of 1,000m2(300pyong) was predicted to be 95,000 kJ/hr in Suwon and the vicinity.
        4,200원
        250.
        1993.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Experimental and theoretical analyses were carried out to investigate the heat exchange characteristics of the nutrient solution cooling system utilizing ground water. The material of heat exchanger used in the experiment was polyethylene and the cross-flow type was adapted in which nutrient solution was mixed and ground water unmixed. For the exchanger surface area of 0.33m2 and flow rates of ground water of 1-6l/min, NTU(number of transfer units) and effectiveness of experimental heat exchanger were 0.1-0.45 and 10-35%, respectively. Therefore these results showed that the hydroponic greenhouse of 1,000m2(300 pyong) with the ground water of 10m2/day could cover about 55-70% of maximum cooling load in summer.
        4,000원
        252.
        1991.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Experiments of quenching were made with cylindrical specimens of carbon steel S45C of diameters from 12 to 30mm were performed. The specimens were heated by electric furnace and quenched by immersion method. In order to analyze the temperature profile(cooling curves) of carbon steel including the latent heat of phase transformation, nonlinear heat conduction problem was calculated by the numerical method of inverse heat conduction problem using the apparent heat capacity method. The difference between the calculated and the experimented cooling curves was caused by the latent heat of phase transformation, and the effects of the latent heat were especially manifest at the cooling curves of center of specimens. The temperature and the quantity of the latent heat of phase transformation depend on the cooling speed at A sub(1) transformation point, and the region for cooling speed to become zero was caused by the latent heat of phase transformation.
        4,000원
        253.
        1990.08 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The interaction of an isotropic stellar wind with a stratified environment leads to collimate the stellar wind outflow, forming a narrow jet especially in non-adiabatic cases. A jet opening angle, i.e, a jet collimation increases with a jet cooling, in which a free-free radio continuum is dominantly contributed. After a qualitative comparison of the theoretically derived jet boundaries with the optically observed ones have been carried out in order to know the physical parameters of the observed ones as well as to study the jet dynamical interaction with the surrounding medium. Instead of the morphological jet boundary fitting, the free-free radio continuum shapes have been suggested and recalculated.
        4,200원
        255.
        2021.10 KCI 등재 서비스 종료(열람 제한)
        The relationship between night cooling rate and meteorological elements was investigated over the past five years (2016-2020), using weather data from the new (Daegu(143)) and old (Shinam(860)) Daegu Regional Meteorological Agency located in the suburban and urban regions, respectively. There was a correlation between the total daily amount of solar radiation (Stot) and the night cooling rate in the both regions. However, a higher correlation was observed at the new Daegu Regional Meteorological Agency station (Daegu(143)). In particular, data from the new Daegu Regional Meteorological Administration's observatory, which experiences a low thermal storage effect caused by artificial structures, showed a higher correlation between nighttime cooling and weather factors. The reason for this is that the lesser the heat storage effect caused by the artificial structures, the better the effect of surface radiation cooling on temperature reduction. These findings confirm that the correlation between night cooling and weather factors can be used to assess the impact of artificial structures in cities.
        256.
        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.
        257.
        2019.04 KCI 등재 서비스 종료(열람 제한)
        본 연구의 목적은 레이노 현상 의심 환자의 정량적 판독 보조 지표의 가능성을 확인하고자 하는 것이다. 레이노 현상 의심 환자 99명에서 가능성 낮음 48명, 중간 16명, 높음 35명을 대상으로 하였다. 검사는 15.2± 0.8°C 얼음물에 10분 간 양 손을 한랭 부하 후 99mTc 370 MBq(10 mCi)를 정맥 주사하였다. 이 후 5분, 10분, 20분 양측 열 손가락의 온도 변화를 측정하였고, 핵의학 판독의의 판독 결과와 온도 변화를 비교하였다. 판독 결과 레이노 현상의 가능성이 낮은 군은 손가락 온도가 32.6±4.9°C로 높게 측정되었고, 가능성이 높은 군은 22.7±6.0°C로 낮게 측정되었다(p<0.05). 결론적으로 레이노 현상 의심 증상에 따라 손가락 온도의 차이가 났음을 확인하였고 이를 통해 손가락 온도의 측정이 레이노 진단의 정량적 보조 지표로서의 가능성이 있음을 확인하였다.
        258.
        2018.12 KCI 등재 서비스 종료(열람 제한)
        The purpose of this study was to investigate changes in the external thermal environment, following the application of evaporative cooling systems in buildings, in response to climate change. In order to verify changes in the external thermal environment, a T-test was performed on the microclimate, Thermal Comfort Index (TCI), and building surface temperature. Differences in microclimate, following the application of the evaporative cooling system in the building, were significant in terms of temperature and relative humidity. In particular, temperature decreased by more than 7% when the evaporative cooling system was applied. According to the results of the Thermal Comfort Index analysis, the Wet-Bulb Globe Temperature (WBGT) was below the limit of outdoor activities, indicating that outdoor activities were possible. The Universal Thermal Climate Index (UTCI) values were within the very strong heat stress range when the evaporative cooling system was not applied, When the system was applied, the UTCI values were within the strong heat stress range, indicating that they were lowered by one level. The building surface temperature decreased by ~10% or more when the evaporative cooling system was applied, compared to when it was not applied. Finally, the outside surface temperature of the building decreased by ~12% or more when the system was applied, compared to when it was not applied. We conclude that the energy saving effect of the building was significant.
        259.
        2018.08 KCI 등재 서비스 종료(열람 제한)
        A Cultivation method to minimize the damage caused by high temperatures was studied by investigating the effects of groundwater cooling treatment on the growth, yield, and quality of strawberries. In the groundwater cooling treatment, the daily average temperature of the rhizosphere was reduced from 26.9°C to 24.9°C . The root length increased by 0.3–9.2 cm, depending on the cultivar and growth period. The leaf number, leaf area, leaf length, leaf diameter, and plant height also increased, especially in the cultivars ‘Seolhyang’ and ‘Maehyang’, resulting in higher fresh and dry weights. The number of fruit per plant increased from 7.7 to 12.5 in ‘Seolhyang’, and the fruit weight increased by 0.3 g in ‘Seolhyang’ and 1.3 g in ‘Maehyang’. The fruit hardness increased, but no significant difference in fruit coloration was observed. The sugar content of the fruit was improved by 0.2–0.3 °Brix. Therefore, groundwater cooling of the rhizosphere was effective in improving the growth and productivity of strawberries under abnormally high temperature conditions and can be considered a cost-efficient cooling system.
        260.
        2017.09 서비스 종료(열람 제한)
        As the Photovoltaic system market increases, various technologies are emerging to improve system operation efficiency. Such additional systems of the power generation system are generally referred to as ‘Balance of System’, for example a panel cooling, a panel cleaning and a panel angle adjusting apparatus. In this paper, we discuss an algorithm to calculate the target temperature of cooling in response to changes in the installation environment conditions of the power generation system so that the efficiency improvement rate target set by the user can be achieved with respect to the control method of the cooling water injection system among various panel cooling apparatuses. In order to calculate the target temperature of cooling, the output enhancement coefficient is calculated experimentally based on the temperature change according to the solar radiation condition of the PV panel, and the required reduction temperature of each irradiation condition is calculated considering the efficiency improvement rate. In addition, the efficiency improvement ratio is calculated considering the installation condition of the general power generation system without a separate control group. The thermal performance coefficient of the PV panel test body for calculating the expected temperature of the PV panel is calculated experimentally. The target temperature of cooling is calculated as the sum of the expected temperature of the PV panel and the required reduction temperature, and the injection system that tracks the target temperature by cooling water injection is constructed and compared with the power generation improvement rate and the user setting efficiency improvement rate.