• 제목/요약/키워드: Globe temperature

검색결과 119건 처리시간 0.026초

도시녹지의 포장유형이 감성이미지에 미치는 영향 (The Influence of Land Cover Types on Sensibility Image in Urban Greenspace)

  • 주창훈;박봉주;김원태;윤용한
    • 한국환경복원기술학회지
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    • 제12권3호
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    • pp.1-8
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    • 2009
  • The present study was conducted with the object of measuring sensibility image through an experiment with human bodies and indexing human feelings according to land cover types. The temperature by land cover types formed the lowest temperature in planted areas and the highest temperature in paved areas. The wind velocity is stronger in bare grounds, the surface of water and building areas than planted areas, grassland and paved areas. In the case of using a globe thermometer, a solar controled device confirmed the planted areas. In summer, an increase of thermal sensation are indicated a decrease of amenity, and the sensation which has high correlationship is in order by amenity, thermal sensation, airflow sensation and humidity sensation.

하절기 복사환경 관측을 통한 수목과 일사차폐 막 구조물의 자연냉각효과 (Analysis of Passive Cooling Effect of Membrane Shading Structure and the Tree by Field Observations in the Summer)

  • 최동호;이부용
    • 한국태양에너지학회 논문집
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    • 제27권4호
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    • pp.137-146
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    • 2007
  • This study is about the passive cooling effects of three outdoor solar shading facilities as trees, pergola with wistaria vine and membrane shading structure, which are expected to provide cool spots in the summer. Field observations of measuring thermal environment of selected facilities is executed. Thermal environment measuring was categorized as short wave radiation, long wave radiation, net radiation, globe temperature, surface temperature measured by infrared camera. Heat transfer mechanism is analyzed with overall data from field measurement. Results from this study are as below; 1) Radiation balance measured on shaded surface under membrane shading structure was 17%($86W/m^2$) of the unshaded surface radiation balance($511W/m^2$). 2) Surface temperature comparison between vegetation and membrane of the shading structure is performed at 3 o'clock in the afternoon. Surface temperature of vegetation was same as air temperature and that of membrane was $5^{\circ}C$ higher than air temperature. Vegetation transpiration is considered as the causing factor which make those differences. 3) Results from this study could be used as fundamental data for reducing heat island phenomena and continuos research on this subject would be needed.

기후변화 대응 건축물 기화냉각시스템 적용에 따른 외부 열환경 변화 연구 (Changes in the External Heat Environment of Building Evaporative Cooling Systems in Response to Climate Change)

  • 윤용한;권기욱
    • 한국환경과학회지
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    • 제27권12호
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    • pp.1261-1269
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    • 2018
  • 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.

Evaluation of the Wet Bulb Globe Temperature (WBGT) Index for Digital Fashion Application in Outdoor Environments

  • Kwon, JuYoun;Parsons, Ken
    • 대한인간공학회지
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    • 제36권1호
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    • pp.23-36
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    • 2017
  • Objective: This paper presents a study to evaluate the WBGT index for assessing the effects of a wide range of outdoor weather conditions on human responses. Background: The Wet Bulb Globe Temperature (WBGT) index was firstly developed for the assessment of hot outdoor conditions. It is a recognised index that is used world-wide. It may be useful over a range of outdoor conditions and not just for hot climates. Method: Four group experiments, involving people performing a light stepping activity, were conducted to determine human responses to outside conditions in the U.K. They were conducted in September 2007 (autumn), December 2007 (winter), March 2008 (spring) and June 2008 (summer). Environmental measurements included WBGT, air temperature, radiant temperature (including solar load), humidity and wind speed all measured at 1.2m above the ground, as well as weather data measured by a standard weather station at 3m to 4m above the ground. Participants' physiological and subjective responses were measured. When the overall results of the four seasons are considered, WBGT provided a strong prediction of physiological responses as well as subjective responses if aural temperature, heart rate and sweat production were measured. Results: WBGT is appropriate to predict thermal strain on a large group of ordinary people in moderate conditions. Consideration should be given to include the WBGT index in warning systems for a wide range of weather conditions. However, the WBGT overestimated physiological responses of subjects. In addition, tenfold Borg's RPE was significantly different with heart rate measured for the four conditions except autumn (p<0.05). Physiological and subjective responses over 60 minutes consistently showed a similar tendency in the relationships with the $WBGT_{head}$ and $WBGT_{abdomen}$. Conclusion: It was found that either $WBGT_{head}$ or $WBGT_{abdomen}$ could be measured if a measurement should be conducted at only one height. The relationship between the WBGT values and weather station data was also investigated. There was a significant relationship between WBGT values at the position of a person and weather station data. For UK daytime weather conditions ranging from an average air temperature of $6^{\circ}C$ to $21^{\circ}C$ with mean radiant temperatures of up to $57^{\circ}C$, the WBGT index could be used as a simple thermal index to indicate the effects of weather on people. Application: The result of evaluation of WBGT might help to develop the smart clothing for workers in industrial sites and improve the work environment in terms of considering workers' wellness.

조경포장이 옥외공간의 온열쾌적성지수(WBGT)에 미치는 영향 - 통풍과 차광이 배제된 하절기 주간의 조건에서 - (The Influence of Landscape Pavements on the WBGT of Outdoor Spaces without Ventilation or Shade at Summer Midday)

  • 이춘석;류남형
    • 한국조경학회지
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    • 제38권2호
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    • pp.1-8
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    • 2010
  • 도시 옥외공간에서 조경 포장면의 종류에 따른 하절기 옥외공간의 온열쾌적성 차이 발생 여부를 차광과 통풍이 배제된 조건에서 실제 온도와 상대습도의 측정을 통하여 검증하였다. 잔디, 석재잔디블럭, 중공잔디블럭, 석재블럭, 사고석, 소형고압블럭, 점토벽돌, 나지, 쇄석, 수밀콘크리트 등 총 10가지 의 인공적으로 조성된 포장면을 대상으로 저항측정식 센서들을 이용하여 2009년 6월부터 9월까지 매 분 단위로 측정하고, 기상청 관측자료를 기준으로 일 최고 기온이 $30^{\circ}C$ 이상인 26일 동안의 정오부터 오후 3시까지의 자료를 분석하였으며, 주요 내용은 다음과 같다. 지면 온도는 포장재의 종류에 따라서 차이가 발생하였는데, 잔디면의 온도가 가장 높았고, 콘크리트의 온도가 상대적으로 낮은 것으로 나타났다. 전체 시험구의 평균 지면온도는 $40.1^{\circ}C$로 분석되었는데, 이는 기상대 관측 최고 기온보다 $9^{\circ}C$ 이상 높은 것이었으며, 최고 온도는 약 $50^{\circ}C$ 이상까지 상승하는 것으로 나타났다. 지면으로부터 1.2m 높이의 온열쾌적성지수인 습구흑구온도(Wet-Bulb Grlobe Temperature: WBGT)는 포장재에 따라서 통계적으로 유의한 차이가 있는 것으로 분석되었으며, 잔디포장면이 가장 높게 나타났고, 석재 또는 콘크리트블럭과 잔디를 혼합한 포장면이 가장 낮게 나타났다. 그러나 이들 측정값은 인간이 느끼는 쾌적한 온도 범위를 심각한 수준으로 넘어선 상태의 값으로 실제 환경에서의 체감 온열쾌적성과 직접 연관시키기는 곤란하다. 이러한 결과는 이상고온에 견디지 못하는 잔디의 생육 특성과 통풍과 차광이 배제된 시험구의 특성, 그리고 남중고도 가 높은 한낮의 데이터만을 분석 대상으로 삼은 점 등이 복합적으로 영향을 미친 결과로 해석되었다. 결론적으로 본 연구를 통해서 통풍과 차광이 배제된 하절기 한낮의 옥외공간에서는 인간이 체감하는 온열쾌적성에 포장재 변화가 미치는 영향은 미미하며, 오히려 통풍과 차광이 미치는 영향이 매우 중요하다는 것을 파악할 수 있었다.

하절기 실험을 통한 건물녹화용 피복재료의 복사수지 해석 (An Experimental Study of Surface Materials for Planting of Building Surface by the Radiant Heat Balance Analysis in the Summer)

  • 최동호;이부용
    • 한국태양에너지학회 논문집
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    • 제30권3호
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    • pp.71-80
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    • 2010
  • This study carried out to understand the thermal characteristics of various surface material which compose the city through the observation in the summer. To examine passive cooling effect of planting of building, it is arranged four different materials that is natural grass, grass block, concrete slab and artificial grass. The results of this study are as follows; (1) Natural grass and grass block show the lower surface temperature because of the structures of leaf can do more thermal dissipation effectively. (2) There is little surface temperature between artificial grass and concrete. But there is little high surface temperature difference between natural grass and concrete because of latent heat effect. (3) The concrete can play a role of the tropical nights phenomenon as high heat capacity of concrete compare with other materials. (4) It is nearly same color in artificial grass and natural grass but there is large difference between natural grass and artificial grass at albedo. There is different albedo in near infrared ray range. (5) A short wave radiation gives more effect at the globe temperature than long wave radiation. (6) The artificial turf protected the slab surface temperature increase in spite of thin and low albedo materials.

Overview on Ceramic and Nanostructured Materials for Solid Oxide Fuel Cells (SOFCs) Working at Different Temperatures

  • Priya, S. Dharani;Selvakumar, A. Immanuel;Nesaraj, A. Samson
    • Journal of Electrochemical Science and Technology
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    • 제11권2호
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    • pp.99-116
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    • 2020
  • The article provides information on ceramic / nanostructured materials which are suitable for solid oxide fuel cells (SOFCs) working between 500 to 1000℃. However, low temperature solid oxide fuel cells LTSOFCs working at less than 600℃ are being developed now-a-days with suitable new materials and are globally explored as the "future energy conversion devices". The LTSOFCs device has emerged as a novel technology especially for stationary power generation, portable and transportation applications. Operating SOFC at low temperature (i.e. < 600℃) with higher efficiency is a bigger challenge for the scientific community since in low temperature regions, the efficiency might be less and the components might have exhibited lower catalytic activity which may result in poor cell performance. Employing new and novel nanoscale ceramic materials and composites may improve the SOFC performance at low temperature ranges is most focused now-a-days. This review article focuses on the overview of various ceramic and nanostructured materials and components applicable for SOFC devices reported by different researchers across the globe. More importance is given for the nanostructured materials and components developed for LTSOFC technology so far.

NETWORK DESIGN AND PREPROCESSING FOR MULTI-SCALE SPHERICAL BASIS FUNCTION REPRESENTATION

  • Oh, Hee-Seok;Kim, Dong-Hoh
    • Journal of the Korean Statistical Society
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    • 제36권2호
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    • pp.209-228
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    • 2007
  • Given scattered surface air temperatures observed by a network of weather stations, it is an important problem to estimate the entire temperature field for every location on the globe. Recently, a multi-scale spherical basis function (SBF) representation was proposed by Li (1999) for representing scattered data on the sphere. However, for a successful application of Li (1999)'s method, some practical issues such as network design, bandwidth selection of SBFs and initial coefficients are to be resolved. This paper proposes automatic procedures to design network and to select bandwidths. This paper also considers a preprocessing problem to obtain a stable initial coefficients from scattered data. Experiments with real temperature data demonstrate the promising empirical properties of the proposed approaches.

공동주택의 실내 열환경에 대한 평가방법개발 (Development of Methods for Evaluation of Indoor Thermal Environment of Apartment Housing)

  • 윤정숙
    • 대한가정학회지
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    • 제35권6호
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    • pp.101-110
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    • 1997
  • The intent of this study is to propose a method for appraisal of the indoor thermal environment of apartment housing by measuring physical factors and residents' response to questionnaire survey. The experiments were performed on eight houses each in summer (August 18 through 31,1995) and winer (february 16 through 20,1996). It included measurements of indoor air temperature, globe temperature, relative humidity, and CO2 concentration. The questionnaire surveys were performed each in summer (July 16 through 20, 1996) and winer (February 13 through 16, 1996). And 248 cases in summer and 297 cases in winter were used in analysis. These questionnaire surveys asked residents' response about thermal sensation, humidity sensation, sense of air freshness regarding the indoor thermal environment. data acquired through the experiments and questionnaire surveys were then transferred to scales that allowed relative comparison, and measured to an appraisal standard chart. Appraisal tools included appraisal charts and radar charts. Indoor thermal environment was judged to be positive according to experiments, but residents appraised the thermal environment to be average. This difference between the two can be found in the strict standards by which residents judge the thermal environment of their apartments.

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老人福祉施設의 冬.夏節期 室內 溫熱環境 測定 및 溫熱感 評價 (An Study on the Evaluation of Thermal Indoor Environment and Thermal Sensations during Winter and Summer in Elderly Welfare Facilities)

  • 곽호;류우동;황광일;홍원화
    • 한국주거학회논문집
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    • 제14권1호
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    • pp.19-27
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    • 2003
  • This study aims to survey the living spaces of the welfare facilities for the aged to get the objective relationships between the physical thermal environment and the users' subjective responses. The surveys were made twice in winter and once in summer during 2001 and 2002. An ambient temperature, relative humidity, air velocity, globe temperature were measured as physical elements of thermal environment and the ASHRAE Psychophysical Voting Scale were used as an evaluation index for subjective responses. As the results, the aged respond thermally comfortable, in spite of the differences among important factors such as thermal sensations, humidity sensations and air velocity sensations. Also the physical thermal environmental elements and the subjective responses indices exceed thermal comfort range calculated by PMV(Predicted Mean Vote) and PPD(Predicted Percentage Dissatisfied). It shows that the insulation of walls of the facilities is not enough for heating and cooling seasons, and the indoor environmental control is necessary.