• Title/Summary/Keyword: 온도분포특성

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Effect of Elevated Carbon Dioxide Concentration and Temperature on Yield and Fruit Characteristics of Tomato (Lycopersicon esculentum Mill.) (이산화탄소 및 온도 상승이 토마토 수량 및 과실특성에 미치는 영향)

  • Lee, In-Bog;Kang, Seok-Beom;Park, Jin-Myeon
    • Korean Journal of Environmental Agriculture
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    • v.27 no.4
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    • pp.428-434
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    • 2008
  • The objective of this study is to investigate the effect of the level of $CO_2$ (370 and $650{\mu}mol\;mol^{-1}$) and temperature (ambient and ambient+$5^{\circ}C$) on tomato growth and fruit characteristics as affected by the application rate of N-fertilizer (68 and $204\;N\;kg\;ha^{-1}$), for the purpose of evaluating the influence of elevated $CO_2$ and temperature on tomato crop. The elevated atmospheric $CO_2$ and temperature increased the plant height and stem diameter for tomato crop, while the differences among the nitrogen(N) application rates were not significantly different. Under the elevated $CO_2$, temperature, and a higher N application rate, the biomass of aerial part increased. The fruit yield showed the same result as the biomass except for the elevated temperature. The elevated temperature made the size of fruit move toward the small, but the elevated $CO_2$ and the application of N-fertilizer were vice versa. The sugar content and pH of fruit juice were affected by nitrogen application rate, but not by the elevated $CO_2$ and temperature. These results showed that both the elevated $CO_2$ and temperature stimulated the vegetative growth of aerial parts for tomato, but each effects on the yield of fruit showed an opposite result between the elevated temperature and $CO_2$. In conclusion, the elevated $CO_2$ increased tomato yield and the ratio of large size of fruit, but the elevated temperature did not. Therefore, to secure the productivity of tomato as nowadays in future environment, it will need to develop new breeder as high temperature-tolerable tomato species or new type of cropping systems.

Monitoring System of Rock Mass Displacement and Temperature Variation for KURT using Optical Sensor Cable (광섬유센서케이블을 이용한 지하연구시설의 지반변위 및 온도변화 감시시스템 구축)

  • Kim, Kyung-Su;Bae, Dae-Seok;Koh, Yong-Kwon;Kim, Jung-Yul
    • The Journal of Engineering Geology
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    • v.19 no.1
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    • pp.63-70
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    • 2009
  • The optical fiber cable acting as a sensor was embedded in the underground research tunnel and portal area in order to monitor their stability and the spatial temperature variation. This system includes two types of sensing function to monitor the distributed strain and temperature along the line, where sensor cable is installed, not a point sensing. According to the results of one year monitoring around the KURT, there is no significant displacement or movement at the tunnel wall and portal slope. However, it would be able to aware of some phenomena as an advance notice at the tunnel wall which indicates the fracturing in rockmass and shotcrete fragmentation before rock falls accidently as well as movement of earth slope. The measurement resolution for rock mass displacement is 1 mm per 1 m and it covers 30 km length with every 1m interval in minimum. In temperature, the cable measures the range of $-160{\sim}600^{\circ}C$ with $0.01^{\circ}C$ resolution according to the cable types. This means that it would be applicable to monitoring system for the safe operation of various kinds of facilities having static and/or dynamic characteristics, such as chemical plant, pipeline, rail, huge building, long and slim structures, bridge, subway and marine vessel. etc.

Long-term Variation of Radon in Granitic Residual Soil at Mt. Guemjeong in Busan, Korea (화강암 잔류 토양의 토양 가스 중 라돈의 장기적 변화 특성)

  • Moon, Ki-Hoon;Kim, Jin-Seop;Ahn, Jung-Keun;Kim, Hyun-Chul;Lee, Hyo-Min
    • The Journal of the Petrological Society of Korea
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    • v.18 no.4
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    • pp.279-291
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    • 2009
  • Radon is a natural radionuclide originated from radioactive decay of radium in rocks and soil. It is colorless, odorless and tasteless elements that mainly distributed as gaseous phase in soil pore space. The present study analyzed the characteristics of long-term radon variation in granitic residual soil at Mt. Guemjeong in Guemjeong-gu, Busan and determined the effects of atmospheric temperature, rainfall and soil temperature and moisture. Periodic measurements of radon concentrations in soil gas were conducted by applying two types of in-situ monitoring methods (chamber system and tubing system). Radon concentration in soil gas was highest in summer and lowest in winter. The variations in soil temperature and atmospheric temperature were most effective factors in the long-term radon variations and showed positive co-relations. The air circulation between soil air and atmosphere by the temperature difference between soil and atmosphere was analyzed a major cause of the variation. However, other factors such as atmospheric pressure, rainfall and soil moisture were analyzed relatively less effective.

Estimation of FDS Prediction Performance on the Operation of Water-Mist (미세물분무 작동에 대한 FDS 예측 성능 평가)

  • Ko, Gwon Hyun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.8
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    • pp.4809-4814
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    • 2014
  • The aim of the present study was to estimate the prediction performance of a FDS (Fire Dynamic Simulator) to simulate the fire behaviors and suppression characteristics by operating a water-mist. Rosin-Rammler/log-normal distribution function was used to determine the initial droplet distribution of water-mist and the effects of its model constant were considered. In addition, the simulation models were validated by a comparison of the predicted fire suppression characteristics with water-mist injection pressures to the previous experiments, and the thermal flow behaviors and gaseous concentration variations were analyzed. The results showed that water-mists with the same mean diameter were affected by the characteristics of the droplet size distribution, which have different size and velocity distributions at the downstream location. The fire simulations conducted in this study determine the initial droplet size distribution tuned to the base of the spray characteristics measured by previous experiments. The simulation results showed good agreement with the previous measurements for temperature variations and fire suppression characteristics. In addition, it was confirmed that the FDS simulation with a water-mist operation supplies useful details on estimations of the thermal flow fields and gaseous concentration under water mist operation conditions.

An Analysis of Unsteady 2-D Heat Transfer of the Thermal Stratification Flow inside Horizontal Pipe with Electrical Heat Tracing (Heat Tracing이 있는 수평배관 내부 열성층 유동의 비정상 2차원 열전달 해석)

  • 정일석;송우영
    • Journal of Energy Engineering
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    • v.6 no.2
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    • pp.119-128
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    • 1997
  • A method to mitigate the thermal stratification flow of a horizontal pipe line is proposed by heating external bottom of the pipe with electrical heat tracing. Unsteady two dimensional model has been used to numerically investigate an effect of the external heating on the thermal stratification flow. The dimensionless governing equations are solved by using the control volume formulation and SIMPLE algorithm. Temperature distribution, streamline profile and Nusselt number distributions are analyzed under heating conditions. The numerical results of this study show that the maximum dimensionless temperature difference between hot and cold sections of the inner wall of pipe is 0.424 at dimensionless time of 1,500 and the thermal stratification phenomenon disappears at about dimensionless time of 9,000.

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Temperature Distribution Characteristics for Changes in Hot Water Flow in A Small Ocher Jjimjilbang (소형 황토 찜질방의 온수유량 변화에 대한 온도분포 특성)

  • Cho, Dong-Hyun
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.19 no.7
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    • pp.74-80
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    • 2020
  • The ocher jjimjilbang for a single-person household that will be studied in this study is 2.1 ㎡ in size, and this study was conducted to implement well-being room heating that is beneficial to health by supplying radiant heat provided by hot water during room heating by embedding hot water panels in the walls of the ocher jjimjilbang to configure a hot water circulating system. In addition, the ocher bed and the ocher walls, which have been verified through many study findings and reference materials, were constructed so that the living life with a bed and the ocher jjimjilbang would be implemented simultaneously. As the mass flow rate of the hot water increased, the magnitude of the wall temperature rise thanks to the hot water increased, and as the flow rate of the hot water increased, the transfer rate of the heat transferred from the wall of the ocher jjimjilbang to the air inside the wall of the ocher jjimjilbang increased.

Pyrolysis of PE plastics in the batch type microreactor (회분식 미분반응기를 이용한 PE계 플라스틱의 열분해특성 연구)

  • Kim, Sang-Hoon;Jang, Hyun-Tae;Cha, Wang-Seog
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.3
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    • pp.632-638
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    • 2007
  • Pyrolysis experiments of HDPE and LDPE were carried out in the stainless steel reactor of internal volume of 40 $cm^3$. Pyrolysis reactions were performed at temperature $410{\sim}460^{\circ}C$ and the pyrolysis products were collected separately as liquid and gas products. The molecular weight distributions(MWDs) and composition of each product were determined by HPLC-GPC and GC analysis. It was represented that the yield and the molecular weight of liquid product were decreased with the increase of reaction temperature and time. The chain-end scission rate parameters, respectively, were determined to be 63.0kcal/mole of HDPE, 45.7kcal/mole of LDPE by the Arrhenius plot.

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Analysis with Directional Solidification in Silicon Melting Process (실리콘 용융 공정에서 방향성 응고에 관한 특성 분석)

  • Cho, Hyun-Seob
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.3
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    • pp.1707-1710
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    • 2014
  • This paper is the study for the directional solidification of the ingot through the thermal analysis simulation and structural change of casting furnace. The activation analysis of metal impurities were also detected the total number of 10 different metals, but the concentration distribution showed no significant positional deviations in the same position from the top to the bottom. With the results of thermal analysis simulation, the silicon as a whole has reached the melting temperature as the retention time 80 min. The best cooling conditions showed at the upper cooling temperature $1,400^{\circ}C$ and cooling time 60min. The fabricated wafers showed the superior etching result at the grain boundary than that of existing commercial wafers.

유도결합플라즈마에서 플라즈마 변수와 전자 에너지 분포에 대한 RF bias의 영향

  • Lee, Hyo-Chang;Jeong, Jin-Uk
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.177-177
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    • 2012
  • 진공을 기초로 한 다양한 반도체 식각 공정에서 RF bias가 결합된 유도 결합 플라즈마 소스는 널리 사용되고 있다. 하지만, 대부분의 연구는 RF bias에 의한 자기 바이어스 효과에만 한정되어 있으며, 공정 결과와 소자 품질에 결정적인 역할을 하는 플라즈마 변수들(전자 온도, 플라즈마 밀도)과 RF bias의 상관관계에 대한 연구는 거의 없는 실정이다. 본 연구에서는 RF bias가 플라즈마 변수에 미치는 영향과 비충돌 전자 가열 메커니즘의 실험적 증거에 관한 연구를 진행하였다. 플라즈마 밀도는 RF bias에 의하여 감소 또는 증가하였으며, 이러한 결과는 Fluid global model에 의한 계산과 잘 일치하는 결과를 보였다. 전자 온도는 RF bias에 의하여 증가하였으며, 적은 RF bias 전력에서는 플라즈마 전위에 갇혀있는 낮은 에너지 그룹의 전자들의 가열이 주가 되었으나, 큰 RF bias 전력에서는 높은 에너지 그룹의 전자들의 가열이 주가 됨을 관찰하였다. 이는 높은 에너지 그룹의 전자 가열 메커니즘이 anomalous skin effect에서 collisionless sheath heating으로 전이되는 것을 나타내며, bounce resonance heating이 RF bias의 전자가열에 중요한 역할을 함을 보여주는 실험적 근거이다. 플라즈마 밀도의 공간 분포는 RF bias의 인가에 의하여 더욱 균일함을 보였으며, 이는 (electro-static and electro-magnetic) edge effect에 의한 영향으로 해석될 수 있다. 이러한 RF bias와 플라즈마 변수들의 상관관계 및 전자 가열 메커니즘에 대한 연구는 방전 특성의 물리적 이해뿐만 아니라, 반도체 식각 공정에서 소자 품질 및 공정 개선을 위한 최적의 방전 조건 도출과 외부 변수 제어에 큰 도움을 주리라 예상된다.

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Three-Dimensional Numerical Analysis of Arc Plasmas with an Axial Magnetic Field Vacuum Interrupter (축자계 진공차단부에서 발생하는 아크 플라즈마 3차원 수치해석)

  • Seo, Hyeon-Seok;Kim, Yun-Je;Lee, Jong-Cheol
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.249-249
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    • 2011
  • 전력용 개폐장치인 진공차단기의 차단부가 송배전 시스템에 30 [kA] 정도의 커다란 사고전류가 흐르는 것을 방지하기 위하여 동작될 때 차단부 내부 전극 사이에 25,000 [K] 이상의 아크 플라즈마가 발생하게 된다. 두 전극 사이에 발생된 아크 플라즈마는 약 10 ms~20 ms 동안 지속되다가 교류전원의 전류영점 부근에서 회복된 절연성능으로 인하여 자연스럽게 소멸되지만, 대전류 구간동안 아크 플라즈마의 집중 현상 등에 의하여 전극의 심각한 손상 등이 발생되면 절연성능이 요구된 만큼 회복되지 못하여 사고전류를 차단하지 못하며 시스템에 연결된 기기들에게 심각한 손상을 입히고 정전사고를 일으킨다. 본 연구에서는 전자계-열유동 연성해석기법을 이용한 축자계 진공차단부에서 발생하는 아크 플라즈마의 3차원 수치해석을 통하여 전극의 심각한 손상을 입히는 아크플라즈마의 집중 현상에 관한 축자계의 영향을 고찰하고자 한다. 수치해석을 위한 아크 영역은 양극과 음극의 직경과 같은 직경의 원기둥으로 가정하였고, 전자계 해석으로부터 얻어진 로렌츠 힘과 줄열을 열유동 해석을 위한 Navier-Stokes 방정식의 파라미터로 입력하여 해석을 수행함으로써 전자계와 유체역학적인 영역을 동시에 연계한 순차적 일방향 연성해석 기법을 적용하였다. 컵형 축자계 진공차단부 내 아크영역에서의 로렌츠 힘의 특성과 온도분포에 대하여 수치해석을 수행하였고, 크기가 다른 두 로렌츠 힘에 의하여 양극표면으로 집중되는 온도분포의 크기를 비교함으로써 진공아크 플라즈마의 집중현상에 영향을 미치는 주요 요소를 규명할 수 있었다.

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