• Title/Summary/Keyword: 태양열 복사

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A Study on the Heat Load Transferred to a Passenger Vehicle (자동차 열부하의 계산)

  • 오상한;이창원;원성필
    • Transactions of the Korean Society of Automotive Engineers
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    • v.4 no.2
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    • pp.50-59
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    • 1996
  • The computer simulation program that calculates the transient heat load transferred to a passenger vehicle has been developed. Method for modeling mathematically various kinds of the heat load was presented and the derived equations were solved numerically. To find out the accuracy of the simulation program, the correlation of experimental and analytical results was demonstrated. By using this program, the typical characteristics about temperature distribution and instantaneous or of vehicle body color, material of glass, air-conditioning capacity, driving direction, and speed. Under a steady-state condition, the ratios of the heat load, resulting form vehicle body, glass, and interior part, were 35%, 29%, and 36%, respectively.

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대형 통신위성의 궤도환경 지상모사 방안

  • 서희준;전동익;문귀원;조혁진;이상훈;최석원
    • Bulletin of the Korean Space Science Society
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    • 2003.10a
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    • pp.95-95
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    • 2003
  • 점차 정밀화 및 대형화되고 있는 통신위성의 운영 우주환경은 고진공 환경이며 태양 복사열에 의한 고온 환경 및 극저온이 반복되는 가혹한 환경으로 특징지어진다. 위성체는 지상에서 발사되어 우주궤도에 진입한 순간부터는 계속해서 우주환경에 노출되며 이러한 가혹한 우주환경에 의해서 위성체의 주요부품에 기능장애가 초래되기도 하고 이는 결국 임무의 실패로 이어지도 한다. 즉 우주환경은 지상 환경과는 판이하게 다르기 때문에 지상에서는 제대로 작동하는 것으로 관찰되는 위성체가 우주환경에서는 예상하지 못한 기능장애를 보이기도 하고 이는 때때로 임무성공에 치명적인 영향을 미치기도 한다. 위와 같은 이유들로 인하여 위성체는 지상에서 우주환경시험을 거쳐 기능 및 작동상태를 점검해야 하며, 이를 위해서는 우주환경을 모사 할 수 있는 우주환경 모사장비가 필요하다. 본 논문에서는 정지궤도 위성과 같은 대형 위성체의 우주환경 모사에 필요한 대형 열진공 챔버의 설계에 필요한 요소들을 살펴보고자 한다.

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Analysis of On-orbit Thermal Environment of Earth Orbit Satellite during Mission Lifetime (지구궤도 인공위성의 임무기간 중 궤도 열 환경 분석)

  • Kang, Soojin;Yun, Jihyeon;Jung, Changhoon;Park, Sungwoo
    • Journal of Aerospace System Engineering
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    • v.14 no.1
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    • pp.36-43
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    • 2020
  • The start of satellite thermal design was to predict the worst operating environment through analysis of the thermal environment of the operation orbit. Because the satellites have different types of operating trajectories for their mission, the exposed thermal environment also varies. Thus, it is necessary to analyze in consideration of the orbital conditions, and a design was performed to guarantee thermal stability for the worst case defined through the analysis. The orbital thermal environmental analysis required an understanding of the basic orbit mechanics and the heat exchange relationship between the space environment and satellite. The purpose of this paper was to provide an understanding of the orbital thermal environment analysis by providing basic data on the space thermal environment in the earth-orbit and describing thermal relations that calculate the amount of space heat inflow into satellites. Additionally, an example of a virtual satellite shows the overall process of analyzing the orbital thermal environment during a mission lifetime.

A Study on the Surface-Radiation Heat Transfer Characteristics in an Open Cavity with a Heat Source (발열체가 존재하는 개방된 정사각형공간에서 표면복사 열전달 특성에 관한 연구)

  • Nam, Pyoung-Woo;Park, Myoung-Sig;Park, Chan-Woo
    • Solar Energy
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    • v.12 no.3
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    • pp.70-83
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    • 1992
  • The interaction between the surface radiation and the mixed convection transport from an isolated thermal source, with a uniform surface heat flux input and located in a rectangular enclosure, is stuied numerically. The enclosure simulates a practical system such an air cooled electric device, where an air-stream flows through the openings on the two vertical walls. The heat source represents an electric component located in such an enclosure. The size of this cavity is $0.1[m]{\times}0.1[m]$. The inlet velocity is assumed as 0.07[m/s] and the inlet temperature is maintained as $27^{\circ}C$. The inflow is kept at a fixed position. Laminar, two dimensional flow is assumed, and the problem lies in the mixed convection regime, governed by buoyancy force and surface readiation. The significant variables include the location of the out-flow opening, of the heat source and the wall emissivity. The basic nature of the resulting interaction betwwn the externally induced air stream and the buoyancy-driven flow generated by the source is investigated. As a result, the best location of the heat source to make the active heat transfer is 0.075[m] from the left wall on the floor. The trends observed are also discussed in terms of heat removal from practical systems such as electric circuitry.

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Analysis of Thermal Environment Modification Effects of Street Trees Depending on Planting Types and Street Directions in Summertime Using ENVI-Met Simulation (ENVI-Met 시뮬레이션을 통한 도로 방향별 가로수 식재 형태에 따른 여름철 열환경 개선 효과 분석)

  • Lim, Hyeonwoo;Jo, Sangman;Park, Sookuk
    • Journal of the Korean Institute of Landscape Architecture
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    • v.50 no.2
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    • pp.1-22
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    • 2022
  • The modification effects of street trees on outdoor thermal comfort in summertime according to tree planting types and road direction were analyzed using a computer simulation program, ENVI-met. With trees, the air temperature and wind speed decreased, and the relative humidity increased. In the case of mean radiant temperature (Tmrt) and human thermal sensation, physiological equivalent temperature (PET) and universal thermal climate index (UTCI), there was a decrease during the daytime. The greatest change among the meteorological factors by trees happened in Tmrt, and PET and UTCI showed similar patterns with Tmrt·The most effective tree planting type on thermal comfort modification was low tree height, wide tree crown, high leaf area index, and narrow planting interval (LWDN). Tmrt, PET and UTCI showed a large difference depending on shadow patterns of buildings and trees according to solar altitude and azimuth angles, and building locations. When the building shade areas increased, the thermal modification effect by trees decreased. In particular, results on the east and west sidewalks showed a large deviation over time. When applying the LWDN, the northwest, west and southwest sidewalks showed a significant reduction of 8.6-12.3℃ PET and 4.2-4.5℃ UTCI at 10:00, and the northeast, east and southeast sidewalks showed 8.1-11.8℃ PET and 4.4-5.0℃ UTCI at 16:00. On the other hand, when the least effective type (high tree height, narrow tree crown, low leaf area index, and wide planting interval) was applied, the maximum reduction was up to 1.8℃ PET and 0.9℃ UTCI on the eastern sidewalks, and up to 3.0℃ PET and 0.9℃ UTCI on the western ones. In addition, the difference in modification effects on Tmrt, PET and UTCI between the tree planting types was not significant when the tree effects were reduced by the effects of buildings. These results can be used as basic data to make the most appropriate street tree planting model for thermal comfort improvement in urban areas in summer.

Evaluation of the Outdoor Radiant Thermal Environment by Building Scale and Block Type of Office Building in Summer (사무소건물의 규모 및 배치유형에 따른 하기 옥외 복사열환경 평가)

  • Park, Su-Jin;Jung, Sun-Young;Yoon, Seong-Hwan
    • Journal of the Korean Solar Energy Society
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    • v.29 no.6
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    • pp.81-87
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    • 2009
  • The purpose of this study is to evaluate of the outdoor thermal environment by building scale and block type as variable factors. In this study, 18 cases of office in central business district that have different condition are compared about their surface temperature, HIP(Heat Island Potential), and MRT(Mean Radiant Temperature). They are simulated with 3-dimension numerical simulation software named Hoyano-model. The output results contain visualized distribution chart and numerical data. The results of evaluation are as follows. (1)The surface temperature of the building becomes higher as building coverage ratio is higher but floor area ratio is lower. In same conditions, unified block type is maximum $3.2^{\circ}C$ higher than divided block type. (2)HIP shows different daily pattern as block type. During daytime, divided block type is much higher than unified block type but after sunset, it is changed. (3)MRT shows different distribution pattern as sunlight moves expecially at noon. (4)As the results of this study, cases that have high floor area ratio condition show lower surface temperature by tendency to stay low indoor temperature in office building and big rate of windows on building surface.

Turbidity Monitoring in Saemangum Area using Remote Sensing (RS를 이용한 새만금 지역의 탁수환경 모니터링)

  • Na, Sang-Il;Park, Jong-Hwa;Shin, Hyoung-Sub;Beak, Shin-Chul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.472-472
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    • 2011
  • 탁도는 물의 상대적인 흐림 정도를 나타내는 척도로서 이는 빛이 물을 통과할 때 산란시키는 부유고형물질 때문에 발생한다. 토양침식에 의하여 지표수로 유입된 토사와 광물질은 하천의 수송 및 퇴적 과정을 거치며 이동한다. 이때 하상 퇴적물은 바닥으로부터 먹이를 찾는 유기체에 의해 뒤섞이며 입자들은 일정기간동안 물의 흐름에 의해 부유상태로 남아 있게 되고, 유입되는 영양소와 빛에 의하여 성장하는 조류 또한 탁도를 증가시키는 원인이 된다. 이러한 부유물질의 증가는 수중에 태양복사에너지 전달을 방해하여 수중생태계의 먹이사슬과 저서생물의 서식환경에 많은 영향을 미치고, 수표면 온도 또한 태양으로부터 열을 흡수하는 표면 근처의 부유물질에 의해 증가하여 용존산소의 양에도 영향을 미친다. 따라서 수체내 분포하고 있는 부유물질의 종류와 양 및 공간적 분포 파악은 수질문제와 재난 예방 및 생물의 서식환경 문제를 파악하고 해결하는 데 매우 중요하다. 그러나 부유물질에 부착되어 있는 영양소, 금속, 살충제 등은 물 순환 시스템을 통하여 끊임없이 운반되고 상류유역의 흐름 조건에 따라 시공간적으로 변화하기 때문에 이를 규명하는 것이 매우 어려운 실정이다. 이러한 문제를 해결하기 위하여 광역적인 탁수환경의 분석방법으로 원격탐사(Remote Sensing, 이후 RS) 기법을 이용한 방법이 제안되고 있다. 이미 선진국에서는 광역수계의 수질관리를 위해 RS 기법을 이용하여 신속하고 정확한 수질상태 파악을 시도하고 있으며, 우리나라에서도 KOMPSAT 발사를 계기로 RS 관련 기술이 비약적으로 진화하고 있다. 그러나 RS 데이터를 활용하는데 필수적인 분광학적 특성 규명에 대한 연구는 대부분 식생과 토양에 한정되어 있으며 수체에 대한 연구는 현장조사의 어려움으로 인하여 상당히 제한적인 수준이다. 따라서 본 연구에서는 탁도의 변화에 따른 분광반사 특성을 휴대용 분광복사계를 이용하여 규명하고, 이를 Landsat 위성영상에 적용하여 새만금 유역을 대상으로 완공 직후인 2006년부터 2010년까지의 탁수환경을 모니터링 하였다. 그 결과 새만금 유역 탁수환경을 정성적으로 확인할 수 있었으며, 이를 이용하여 탁수환경 연구에 RS 기법이 효과적임을 제시하고자 한다.

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위성광학탑재체 궤도시험을 위한 진동차단장치

  • Lee, Sang-Hun;Jo, Hyeok-Jin;Seo, Hui-Jun;Mun, Gwi-Won;Choe, Seok-Won
    • Bulletin of the Korean Space Science Society
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    • 2009.10a
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    • pp.46.4-47
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    • 2009
  • 인공위성은 지상에서 설계 제작된 후에 발사체에 탑재되어 궤도에 진입되어 위성에 부여된 고유임무를 수행하게 된다. 위성체가 임무를 수행하는 우주공간은 고진공 환경과 태양 복사열에 의한 고온 환경 및 극저온이 반복되는 가혹한 환경으로 특징지어진다. 때때로 위성체는 이러한 가혹한 우주환경의 영향으로 인해 주요 부품의 기능장애가 초래되기도 하며 이는 결국 임무의 실패로 이어지도 한다. 따라서 고진공과 극저온 환경으로 일컬어지는 우주환경을 지상에서 모사하여 위성체의 안정성 및 신뢰성을 시험하기 위해서 열진공 시험장비를 이용한 열진공시험을 수행한다. 한국항공우주연구원에서는 인공위성의 탑재체인 광학카메라의 국산화 개발을 위하여 우주공간의 고진공과 극저온 상태를 모사할 수 있는 $\varphi4m\timesL10m$ 규모의 광학탑재체 전용 열진공챔버를 국산화 제작하였다. 관측 위성용 광학카메라는 초고정밀 장비로서, 이를 테스트하기 위한 광학탑재체용 진공챔버는 특히 진동환경에 매우 민감한 하여 10-7 grms 이하의 진동레벨을 허용하고 있다. 그러나 진공용기는 지진 및 외부 환경으로부터의 시스템외부진동과 진공펌프 및 기타 장비들로부터의 내부 진동환경에 항상 노출되어 있으며, 가진 주파수가 구조물 자체의 고유진동수와 일치될 경우 공진이 발생하여 시스템에 큰 영향을 미칠 수 있으므로, 외부 진동 및 챔버 자체 진동이 광학계에 전달되지 않도록 진동차단장치가 필요하다. 이 논문에서는 광학탑재체 궤도환경시험용 챔버에 대한 진동차단장치의 개발 및 활용 예를 논의하고자 한다.

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Heat transfer performance with different fills as volumetric air receivers for concentrated solar radiative energy (태양 복사에너지 충진재 변화에 따른 고온 태양열 공기식 흡수기의 열전달 성능 해석)

  • Lee, Ju-Han;Kim, Yong;Jeon, Yong-Han;Seo, Tae-Beom;Kang, Yong-Heack
    • Journal of the Korean Solar Energy Society
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    • v.27 no.2
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    • pp.71-78
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    • 2007
  • The heat transfer characteristics of solar tower receivers are experimentally investigated with receiver shapes. Generally, these become different according to the shapes and materials of the volumetric air receiver. In order to study these effects, the apparatus adopting laminated mesh and honeycombs as the volumetric air receiver is proposed. The receiver consists of laminated mesh (diameter; 100 mm, thickness; 1 mm), honeycombs (diameter; 100 mm, thickness; 30 mm) inserted into ceramic tube (inside diameter; 100 mm, outside diameter; 120 mm, length: 1000 mm). To apply heat to the receiver, an electric heater is used. To find out the heat transfer characteristics of the laminated mesh, the air temperatures are obtained by installing 3 thermocouples on each layer, dividing ceramic tube into 4 layers. Also, a radiative shield is installed to measure the only air temperature. The data for laminated mesh and honeycomb thickness of 30, 60, 90 mm are obtained. The results show that the temperature of layer 3 is higher than those of layer 2 and layer 1.

Analysis of the effect of improving human thermal environment by road directions and street tree planting patterns in summer (여름철 도로 방향과 가로수 식재 방식에 의한 인간 열환경 개선효과 분석)

  • Jeonghyeon Moon;Yuri Choi;Eunja Choi;Jueun Yang;Sookuk Park
    • Journal of the Korean Association of Geographic Information Studies
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    • v.27 no.2
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    • pp.1-18
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    • 2024
  • This study aimed to identify the optimal street tree planting method to improve the summer thermal environment in Seoul, Republic of Korea. The effects of road direction and street tree planting patterns on urban thermal environments using ENVI-met simulations were analyzed. The 68 scenarios were analyzed based on four road directions and 17 planting patterns. The results showed that tree planting had a reducing air temperature, mean radiant temperature, human thermal sensation (PET and UTCI). The most effective planting pattern among all scenarios was low tree height (6m), wide crown width (9m), high leaf area index (3.0), and narrow planting interval (8m). The largest improvement in the thermal environment was the northern sidewalk of the east-west road. Since this study used computer simulations, the difference from real urban spaces should be considered, and further research is needed through field measurement and consideration of more variables.