• Title/Summary/Keyword: Heat budget analysis

검색결과 35건 처리시간 0.03초

장파복사 모형의 매개변수 추정 (Parameters Estimation in Longwave Radiation Formula)

  • 조홍연;이길하;이정미
    • 환경영향평가
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    • 제21권2호
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    • pp.239-246
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    • 2012
  • Daily net radiation is essential for heat budget analysis for environmental impact assessment in the coastal zone and longwave radiation is an important element of net radiation because there is a significant exchange of radiant energy between the earth's surface and the atmosphere in the form of radiation at longer wavelengths. However, radiation data is not commonly available, and there has been no direct measurement for most areas where coastal environmental impact assessment is usually most needed. Often an empirical equation, e.g., Penman and FAO-24 formulae is used to estimate longwave radiation using temperature, humidity, and sunshine hour data but local calibration may be needed. In this study, local recalibration was performed to have best fit from a widely used longwave equation using the measured longwave radiation data in Korea Global Atmospheric Watch Center (KGAWC). The results shows recalibration can provided better performance AE=0.23($W/m^2$) and RMSE=14.73($W/m^2$). This study will contribute to improve the accuracy of the heat budget analysis in the coastal area.

인공열과 land-use가 부산시의 열적 환경에 미치는 영향 연구 (A Study on The Effect of Anthropogenic Heat Flux and Land-Use on Thermal Environment in Pusan)

  • 김유근
    • 한국대기환경학회지
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    • 제16권4호
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    • pp.363-372
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    • 2000
  • In order to overtake a quantitative analysis of effect of anthropogenic heat and different land-use on urban thermal environment numerical simulation of surface energy budget was carried out under typical summer synoptic condition. It is beneficial to understand surface temperature of complex urban surace. The different land-use types are classified of rice field farm fruit garden residential region forest water and swamp by using map scaled 1/25000 of Pusan metropolitan. The model predicts that maximum heat island intensity in the central part of Pusan is 7$^{\circ}C$ at 2000 LST in summertime. The surface temperature is propotional to the density of constructions. The effect of anthropogenic heat generation on surface temperature is the increase of 0.3$^{\circ}C$ at 1400LST in the central part of Pusan during summertime.

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한국잔디식재 경량박층형 옥상녹화의 열수지 해석 (Heat Budget Analysis of Light Thin Layer Green Roof Planted with Zoysia japonica)

  • 김세창;이현정;박봉주
    • 한국조경학회지
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    • 제40권6호
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    • pp.190-197
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    • 2012
  • 본 연구는 저관리 경량형 옥상녹화의 열수지를 정량화하기 위하여 모의실험을 수행하였다. 콘크리트블록을 이용하여 가로 $1.2m{\times}$세로 $1.2m{\times}$높이 1m의 모의실험구 2개를 제작하여 하나는 한국잔디를 식재한 토심 10cm의 옥상녹화 실험구로 하였으며, 옥상녹화를 실시하지 않은 나머지 하나는 대조구로 하였다. 2012년 6월 6일~7일에 기온, 상대습도, 풍향, 풍속 등 외부 기상환경, 증발산량, 옥상녹화와 대조구인 콘크리트의 표면과 천장면의 온도, 열류량, 열수지를 측정하였다. 6일과 7일의 일최고기온은 각각 $29.4^{\circ}C$$30^{\circ}C$로 초여름 날씨로는 매우 무더웠다. 6일과 7일의 일증발산량은 각각 $2,686.1g/m^2$$3,312.8g/m^2$이었으며, 일사량이 증가함에 따라 증발산량도 증가하였다. 외부 기온이 가장 높은 시간일 때의 옥상녹화 표면과 대조구 표면의 온도차이를 비교해 보면 대조구 표면이 $5.5^{\circ}C$(6일)와 $2.2^{\circ}C$(7일) 더 높은 것으로 나타났다. 옥상녹화 천장과 대조구 천장의 온도차이를 비교해 보면 $13.1^{\circ}C$(6일)와 $14.2^{\circ}C$(7일)로 나타나 옥상녹화에 의한 실내온도저감효과가 매우 큰 것으로 나타났다. 옥상녹화와 대조구인 콘크리트 표면의 열수지를 분석한 결과, 옥상녹화는 순복사량과 잠열량이 많은 비율을 차지하고 있었으나 대조구는 현열량과 전도열량의 비율이 높았다. 즉, 옥상녹화는 한국잔디와 식재토양에 의한 증발산으로 열을 식혀주는 잠열의 비율이 높은 반면에 대조구인 콘크리트 표면은 식물이 식재되어 있지 않기 때문에 열을 식혀주는 잠열은 $0W/m^2$인 반면에 주위 온도를 증가시키는 현열량과 건물내로 전달되는 전도열량의 비율이 높아 표면과 천장면의 온도를 상승시켰다. 본 연구는 옥상녹화의 온도저감과 열수지 해석을 시도했다는 점에서는 매우 의의가 크다고 할 수 있지만, 옥상녹화는 토심과 토양배합비, 식물종, 계절 등 여러 변수에 따라 온도저감효과가 다르게 나타날 수 있기 때문에 이에 대한 후속연구가 필요하다.

$\cdot$보수성 시멘트 콘크리트 포장의 열환경 특성( I ) (Thermal Environment Characteristics of Permeable Cement Concrete Pavement( I ))

  • 류남형;유병림
    • 한국조경학회지
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    • 제32권6호
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    • pp.82-94
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    • 2005
  • This study was undertaken to measure and analyze the thermal environment characteristics of the grey permeable cement concrete pavement(GPCCP), the permeable cement concrete brick pavement(PCCBP) compared with impermeable cement concrete pavement(ICCP) and bare soil(BS) under the summer outdoor environment. Following is a summary of major results. 1) The peak surface temperature was greatest in the GPCCP$(54.2^{\circ}C)$ followed by ICCP$(47.2^{\circ}C)$ rut August 2, 2002, the hottest day$(35.3^{\circ}C\;of\;highest\;temperature)$ during the experiment; peak temperature in the ICCP and BS were $45.5^{\circ}C)$ and $45.3^{\circ}C)$ respectively. 2) Analysis of heat budget of the pavements has revealed that the heat environment was worse in the GPCCP than that in the ICCP and that this was mainly due to a low albedo in the former(0.2) relative to that of the latter(0.4). 3) Analysis of heat budget of the pavements has revealed that the heat environment was worse in the GPCCP than that in the PCCBP, BS and that this was mainly due to a decreased latent heat resulting from a time dependent decreasing impact of rainfall. 4) It is necessary to make cool pavements to further studies on light-colored surface materials for attaining high albdo and construction methods which can enhance the latent heat through the continuous evaporation from pavements surface. 5) Vertical arrangement of pavement layers has not been considered in the present study, which has been focuses on the heat characteristics of the surface layer materials. Accordingly, future studies will have to be empasized on pavement methods including the vertical arrangement of the pavement layers.

An Observational Study on the Differences in Thermal Characteristics of the Upo Wetland and Converted Areas from Wetland to Paddy Field

  • Koo, Hyun-Suk;Jeon, Dae-Youn;Kim, Hae-Dong
    • 한국지구과학회지
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    • 제30권5호
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    • pp.622-629
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    • 2009
  • This study intended to collect data for evaluating the meteorological value of Upo Wetland which is the largest wetland in the downstream of Nakdong River. The observations were conducted in summer at the Upo Wetland and its surrounding paddy field that is the converted areas from a wetland to a paddy field. The following results are obtained: 1) The temperature of Upo Wetland area was $1^{\circ}C$ lower than the surrounding area during the day while it was a little higher during the night.; 2) The maximum wind speed in the Upo Wetland area was 3.5 m/s which is stronger than 1.6 m/s of its surrounding area. The south wind was observed in the farmland for most of the day while north winds and south winds alternated between day and night in Upo Wetland.; 3) In heat budget analysis, Upo Wetland was wasted in the form of latent heat rather than sensible heat in daytime.

육상지형을 고려한 연안해역에서의 중규모 기상장과 취송류에 관한 수치해석 (Numerical Analysis of Wind Driven Current and Mesoscale Air Flow in Coastal Region with Land Topography)

  • 이성대
    • 한국해양공학회지
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    • 제20권5호
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    • pp.23-29
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    • 2006
  • A quasi depth-varying mathematical model for wind-generated circulation in coastal areas, expressed in terms of the depth-averaged horizontal velocity components and free surface elevation was validated and used to understand the diurnal circulation process. The wind velocity is considered as a dominant factor for driving the current. In this paper, three-dimensional numerical experiments that included the land topography were used to investigate the mesoscale air flaw over the coastal regions. The surface temperature of the inland area was determined through a surface heat budget consideration with the inclusion of a layer of vegetation.A series of numerical experiments were then carried out to investigate the diurnal response of the air flaw and wind-generated circulation to various types of surface inhomogeneities.

HadGEM2-AO를 이용한 북서태평양-동아시아 해역의 표층 수온 모의 특성 분석 (Analysis of Sea Surface Temperature Simulation in the Northwestern Pacific and the East Asian Marginal Seas using HadGEM2-AO)

  • 김해진;김철호;신홍렬
    • Ocean and Polar Research
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    • 제38권2호
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    • pp.89-102
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    • 2016
  • In this study, we evaluated the model performance with respect to Sea Surface Temperature (SST) and Net Heat Flux (NHF) by considering the characteristics of seasonal temperature variation and contributing factors and by analyzing heat budget terms in the Northwestern Pacific and East Asian Marginal Seas ($110^{\circ}E-160^{\circ}E$, $15^{\circ}N-60^{\circ}N$) using the HadGEM2-AO historical run. Annual mean SST of the HadGEM2-AO is about $0.065^{\circ}C$ higher than observations (EN3_v2a) from 1950 to 2000. Since 1960, the model has simulated well the long-term variation of SST and the increasing rate of SST in the model ($0.014^{\circ}C/year$) is comparable with observations ($0.013^{\circ}C/year$). Heat loss from the ocean to the atmosphere was simulated slightly higher in the HadGEM2-AO than that in the reanalysis data on the East Asian Marginal Seas and the Kuroshio region. We investigated the causes of temperature variation by calculating the heat budget equation in the two representative regions. In the central part of the Kuroshio axis ($125^{\circ}E-130^{\circ}E$, $25^{\circ}N-30^{\circ}N$: Region A), both heat loss in the upper mixed layer by surface heat flux and vertical heat advection mainly cause the decrease of heat storage in autumn and winter. Release of latent heat flux through the heat convergence brought about by the Kuroshio contributes to the large surface net heat flux. Positive heat storage rate is mainly determined by horizontal heat advection from March to April and surface net heat flux from May to July. In the central part of the subtropical gyre ($155^{\circ}E-160^{\circ}E$, $22^{\circ}N-27^{\circ}N$: Region B), unlike Region A, vertical heat advection predominantly causes the decrease of heat storage in autumn and winter. In spring and summer, surface heat flux contributes to the increase of heat storage in Region B and the period is two times longer than the period for Region A. In this season, shoaling of the mixed layer depth plays an important role in the increase of SST.

육상지형을 고려한 연안해역에서의 취송류에 관한 수치해석 (Numerical Analysis of Wind Driven Current and Mesoscale Air Flow in Coastal Region with Land Topography)

  • 이성대;김인호;홍창배
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.1925-1930
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    • 2006
  • 흐름의 연직분포를 가정하여 수면에서 바닥까지 적분하여 평균화한 방정식에 기초한 준2차원 흐름모형을 연안해역에서의 취송류해석을 위해 적용되었다. 바람장의 변동에 따른 취송류장의 변동이 크게 나타나므로 본 연구에서는 육상지형의 영향을 고려할 수 있는 3차원 중규모 지역기상장 모형을 통해 연안해역에서의 시간에 따른 바람장변동을 수치해석 하였다. 육상에서의 지표면 열수지 변화를 위해 식생모델을 적용하였다. 기상장과 취송류 해석을 위한 수치모형실험결과 바람장의 변동에 따른 연안역에서의 흐름특성을 효과적으로 예측하고 있음을 확인하였다.

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경량모듈형 옥상녹화시스템의 온도저감 및 열수지 평가 (Assessment of Temperature Reduction and Heat Budget of Extensive Modular Green Roof System)

  • 김세창;박봉주
    • 원예과학기술지
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    • 제31권4호
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    • pp.503-511
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    • 2013
  • 본 연구는 돌나물과 한국잔디를 식재한 경량 모듈형 옥상녹화시스템의 온도저감과 열수지를 평가하였다. 식물생육은 초고와 피복율을 측정하였으며, 2012년 8월 2일부터 3일까지 48시간 동안 콘크리트와 옥상녹화 표면, 토양 속, 모듈 하부의 온도와 순복사, 증발산량을 측정하였다. 기온이 $34.6^{\circ}C$로 가장 높았던 8월 3일 15:00시의 표면온도는 콘크리트가 $57.5^{\circ}C$로 가장 높았으며, 그 다음으로 돌나물 $40.1^{\circ}C$, 한국잔디 $38.3^{\circ}C$의 순으로 옥상녹화 조성 시 큰 폭으로 온도가 저감되는 것으로 나타났다. 토양 속과 모듈 하부도 옥상녹화에 의한 온도저감 효과가 나타났으며, 한국잔디가 돌나물보다 온도저감 효과가 큰 것으로 나타났다. 콘크리트 표면과 비교하여 옥상녹화 최고 온도는 약 2시간 정도 지연되는 것으로 나타났다. 표면의 온도저감에는 식물종, 기온, 토양수분이 영향을 미치고, 모듈 하부의 온도저감에는 식물종, 기온, 토양수분, 표면온도가 유의하게 영향을 미친 것으로 나타났다. 열수지 분석결과, 현열은 콘크리트 표면이 가장 높았으며, 옥상녹화 시 감소하는 경향을 보였으며 잠열은 한국잔디가 돌나물보다 높았다. 따라서 온열환경 개선을 위해서는 한국잔디가 돌나물보다 옥상녹화 적용에 더 효과적임을 알 수 있었다.

대규모 해안매립에 따른 기상장 변동의 수치해석 (A Numerical Analysis of Regional Atmospheric Circulation with Large Scale Reclamation of Coastal Region)

  • 이성대
    • 한국해양공학회지
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    • 제14권3호
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    • pp.46-54
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    • 2000
  • Three dimensional numerical experiments that included the land-use transformation by the large scale reclamation were used to investigate the mesoscale air flow over the coastal regions. In this paper the surface temperature of the inland was determined through the surface heat budget consideration with inclusion of a layer of vegetation. The vertical diffusion coefficients of momentum, heat and specific humidity in the constant flux layer were taken from the Mellor and Yamada(1975). It has shown that the resulting model is able to reproduce the air circulation in coastal regions, and the simulated characteristics agree with the known properties of this circulation. A series of numerical experiments were then carried out to investigate the diurnal response of the air flow to various types of surface inhomogeneities.

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