• Title/Summary/Keyword: Sensible Heat Flux

검색결과 132건 처리시간 0.026초

HSPF 유역모델을 이용한 낙동강유역 실시간 수온 예측 (Operational Water Temperature Forecast for the Nakdong River Basin Using HSPF Watershed Model)

  • 신창민;나은혜;김덕길;김경현
    • 한국물환경학회지
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    • 제30권6호
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    • pp.673-682
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    • 2014
  • A watershed model was constructed using Hydrological Simulation Program Fortran to predict the water temperature at major tributaries of Nakdong River basin, Korea. Water temperature is one of the most fundamental indices used to determine the nature of an aquatic environment. Most processes of an aquatic environment such as saturation level of dissolved oxygen, the decay rate of organic matter, the growth rate of phytoplankton and zooplankton are affected by temperature. The heat flux to major reservoirs and tributaries was analyzed to simulate water temperature accurately using HSPF model. The annual mean heat flux of solar radiation was estimated to $150{\sim}165W/m^2$, longwave radiation to $-48{\sim}-113W/m^2$, evaporative heat loss to $-39{\sim}-115W/m^2$, sensible heat flux to $-13{\sim}-22W/m^2$, precipitation heat flux to $2{\sim}4W/m^2$, bed heat flux to $-24{\sim}22W/m^2$ respectively. The model was calibrated at major reservoir and tributaries for a three-year period (2008 to 2010). The deviation values (Dv) of water temperature ranged from -6.0 to 3.7%, Nash-Sutcliffe efficiency(NSE) of 0.88 to 0.95, root mean square error(RMSE) of $1.7{\sim}2.8^{\circ}C$. The operational water temperature forecasting results presented in this study were in good agreement with measured data and had a similar accuracy with model calibration results.

東海熱收支 의 時.空間的인 分布 (Temporal and spatial distributions of heat fluxes in the East Sea(Sea of Japan))

  • 박원선;오임상
    • 한국해양학회지
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    • 제30권2호
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    • pp.91-115
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    • 1995
  • 동해에서의 해양-대기 열교환량을 1961년부터 1990년까지의 선상관측자료와 1976 년부터 1985년까지의 일본기상처 부표자료를 이용하여 구하였다. 그리고 이 결과와 해 양상층부 200m 내의 열용량의 계절변화로부터 해양내부의 열유동량을 계산하였다. 겨 울에는 유입되는 단과복사량과 방출되는 장파오복사량의 크기가 비슷해 복사에 의한 열방출량은 적지만 열속과 자멸속이 강하여 전 해역에서 대기로 많은 열량을 방출한 다. 유효열방출량의 공간적인 변화폭은 100 Wm/SUP -2/이상이며, 최대의 열방출량은 쓰가루해협 부근에서 일어나고 대한해협과 울릉분지역등 남부역이 높은 방출량이 나타 난다. 특히 남서 해역의 강한 열방출이 겨울에 동해 중층균실수의 형성에 영향을 주는 것으로 보인다. 여름에는 강한 태양복사와 낮은 난류속의 영향으로 전해역에서 120~ 140 Wm/SUP -2/의 비슷한 크기로 해양이 가열된다. 해양내부의 열유동은 일본연안에서 양의 값을 나타내 여름의 강한 대마난류에 의한 열량의 유입을 보이며, 그 크기는 해 면을 통해 흡수한 열량보다 커서 여름에는 대마난류에 의한 열유입이 중요함을 보여준 다. 한국연안에서는 음의 값으로 수온이 낮은 북한 한류계수의 남하를 나타낸다. 봄과 가을은 3월과 100월에 각각 최소, 최대를 나타낸다. 유효열교환량의 연변화폭은 남서 해역의 경우 약 580 Wm/SUP -2/이다. 해표면을 통한 연평균 유효열교환량은 모든 해역 에서 음의 값으로 대기중으로 열량을 방출하며, 그 크기는 쓰가루해협부근에서 -130 Wm/SUP -2/로 강하고 대한해협과 울릉분지역에서도 이웃하는 해역보다 많은 열량을 방 출한다. 위도 35$^{\circ}$~39$^{\circ}$N 사이에서의 공간적인 연평균값의 크기는 단파복사량, 자멸 속, 장파복사, 열속의 크기로 각각 129, -90, -58, -32Wm/SUP -2/으로 유효열교환량은 -51W/SUP -2이다.

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핀-관 열교환기의 표면특성에 따른 착상 거동에 관한 연구 (A study on the behavior of frost formation according to surface characteristics in the fin-tube heat exchanger)

  • 류수길;이관수
    • 설비공학논문집
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    • 제11권3호
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    • pp.377-383
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    • 1999
  • In this study, the behavior of frost formation according to surface characteristics in the fin-tube heat exchanger has been examined experimentally. The results show that the thickness of the frost which is attached to the hydrophilic heat exchanger becomes thin and the air pressure drop is smaller than that of bare aluminium heat exchanger However, the frost mass of hydrophilic heat exchanger is more than the bare one. Hence, high density frost is attached to hydrophilic heat exchanger. The sensible and latent heat flux of hydrophilic heat exchanger is bigger than that of bare one, but the increasing amount is very small and the improvement of thermal performance is also very small. The variation of fin-pitch of heat exchanger shows little influence on frost formation and hydrophilic heat exchanger loses its surface characteristics rapidly with increasing relative humidity.

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고해상도 지표자료를 이용한 도시 열환경 완화효과 가능성에 관한 연구 (Application of High Resolution Land Use Data on the Possibility to Mitigate Urban Thermal Environment)

  • 이귀옥;이현주;이화운
    • 한국환경과학회지
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    • 제18권4호
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    • pp.423-434
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    • 2009
  • In recent years, the urban thermal environment has become worse, such as days on which the temperature goes above $30^{\circ}C$, sultry nights and heat stroke increase, due to the changes in terrestrial cover such as concrete and asphalt and increased anthropogenic heat emission accompanied by artificial structure. The land use type is an important determinant to near-surface air temperature. Due to these reasons we need to understand and improve the urban thermal environment. In this study, the fifth-generation Pennsylvania State University-National Center for Atmospheric Research Mesoscale Model(MMS) was applied to the metropolitan of Daegu area in order to investigate the influence of land cover changes and urban modifications increase of Albedo to the surface energy budget on the simulated near-surface air temperature and wind speed. The single urban category in existing 24-category U.S. Geological survey land cover classification used in MM5 was divided into 6 classes to account for heterogeneity of urban land cover. As a result of the numerical simulation intended for the metropolitan of Daegu assumed the increase of Albedo of roofs, buildings, or roads, the increase of Albedo (Cool scenario)can make decrease radiation effect of surface, so that it caused drops in ambient air temperature from 0.2 to 0.3 on the average during the daylight hours and smaller (or near-zero) decrease during the night. The Sensible heat flux and Wind velocity is decreased. Modeling studies suggest that increased surface albedo in urban area can reduce surface and air temperatures near the ground and affect related meteorological parameters such as winds, surface air temperature and sensible heat flux.

초음파 풍속온도계를 이용한 $SO_2$건성침착속도의 계절변화 특징 (Seasonal Variations of $SO_2$Dry Deposition Velocity Obtained by Sonic Anemometer-Thermometer)

  • 이종범;박세영
    • 한국대기환경학회지
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    • 제14권5호
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    • pp.465-478
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    • 1998
  • In this study, seasonal variations of the dry deposition velocity and deposition flux for the sulfur dioxide were analysed. The field observation was performed during one year (from November 1, 1995 to October 31, 1996) in Chunchon basin. The turbulence data were measured by 3-dimensional sonic anemometer/thermometer, and were estimated by mean meteorological data obtained at two heights (2.5 m and 10 m) of meteorological tower. Also, the estimation methods were evaluated by comparing the turbulence data. The results showed that the estimated dry deposition velocity and turbulence parameter such as uc and sensible heat flux using mean meteorological data were relatively similar to the sonic measurements, but all showed somewhat large differences. The dry deposition velocity was large in summer and small in winter mainly due to canopy resistance (rc). The major factor which affects diurnal variation of the velocity was aerodynamic resistance (rw). The SO2 dry deposition flux was large in winter and small in summer in Chunchon.

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이어도 종합해양과학기지에서 관측된 난류 플럭스의 계절적 특성 (Seasonal Characteristics of Turbulent Fluxes Observed at leodo Ocean Research Station)

  • 오현미;하경자;심재설;현유경;윤경숙
    • 대기
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    • 제17권4호
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    • pp.421-433
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    • 2007
  • We have investigated the seasonal characteristics of surface turbulent fluxes observed at Ieodo Ocean Research Station from 2005 to 2006. Both 10Hz and 30 minutes flux data are quality controled, and tilt correction is performed in 10Hz data before quality control. The turbulent fluxes of open sea shows clear seasonal variations, though diurnal variations are barely shown. The seasonal ratio of stable and unstable conditions are closely related to the temperature difference between sea surface and air. In stable and semi-stable condition, latent and sensible heat fluxes have very small values without any relationship with wind speed. Though friction velocity shows slightly increasing trend with wind speed, it has many outliers. In unstable condition, turbulent fluxes increased with wind speed. Especially, latent heat flux increased rapidly during DJF. The latent heat flux at high wind speeds is more scatter.

대기확산의 수치모의에서 SST 효과 (SST Effect upon Numerical Simulation of Atmospheric Dispersion)

  • 이화운;원경미;조인숙
    • 한국대기환경학회지
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    • 제15권6호
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    • pp.767-777
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    • 1999
  • In the coastal region air flow changes due to the abrupt change of surface temperature between land and sea. So a numerical simulation for atmospheric flow fields must be considered the correct fields of sea surface temperature(SST). In this study, we used variables such as latent heat flux, sensible heat flux, short and long wave radiation of ocean and atmosphere which exchanged across the sea surface between atmosphere and ocean model. We found that this consideration simulated the more precise SST fields by comparing with those of the observated results. Simulated horizontal SST differences in season were 2.5~4$^{\circ}C$. Therefore we simulated the more precise atmospheric flow fields and the movement and dispersion of the pollutants with the Lagrangian particle dispersion model. In the daytime dispersion pattern of the pollutants emitted from ship sources moved toward inland, in the night time moved toward sea by land/sea breeze criculation. But air pollutants dispersion can be affected by inland topography, especially Yangsan and coastal area because of nocturnal wind speed decrease.

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동지나해의 열속추정에 관한 연구 (Estimate of Heat Flux in the East China Sea)

  • 김영섭
    • 한국수산과학회지
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    • 제29권1호
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    • pp.84-91
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    • 1996
  • 각종 해${\cdot}$기상 자료와 위성관측에 의한 운량 자료를 이용하여 벌크법에 의해 동지나해에 있어서 대기와 해양간의 열속을 추정하였으며, 그 결과를 요약하면 다음과 같다. 1) 태양복사량은 5월에 $255Wm^{-2}$로 최대, 12월에 $111Wm^{-2}$로 최소이며, 그 분포는 동절기에는 남쪽으로 갈수록 증가하고, 하절기에는 장마전선의 영향으로 북쪽으로 갈수록 증가하는 경향이 있었다. 장파복사량의 경우, 공간적 분포의 차이는 작으나 계절에 따른 차이는 커서 최대인 2월의 값은 (약 $70Wm^{-2}$) 최소인 7월의 2배에 이른다. 2) 현열과 잠열의 공간적 분포양상은 조사해역내의 해류 분포와 비슷하였다. 겨울철에 이 두 요소에 의한 해양의 열손실량은 대단히 커서 $830Wm^{-2}$ 이상이고, 이것은 같은 기간중 순폭사량의 5배에 이른다. 3) 연평균 순열플럭스의 분포는 전역에서 부 값을 보였으며, 최대 열손실 해역은 큐슈 남단으로 1월에 $400Wm^{-2}$ 이상이었다. 4) 조사해역의 태양복사량, 장파복사량, 현열 및 잠열의 연평균치는 각각 187, -52, -30, $-137Wm^{-2}$이고, 결과적으로 연간 약 $32Wm^{-2}(2.48\times10^{13}\;W)$의 에너지를 손실하고 있는 것으로 추정되었다. 5) Fig. 1에 표시되어 있는 A 해역 (황해)은 대기와의 열교환을 통하여 오히려 연간 $10Wm^{-2}(0.4\times10^{13}\;W)$의 에너지를 얻고, B 해역 (동지나해)은 $48Wm^{-2}(2.1\times10^{13}\;W)$,그리고 C 해역 (쿠로시오역)은 $39Wm^{-2}(1.7\times10^{13}\;W)$의 열을 손실하고 있는 것으로 추정되었다.

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액적의 리바운드 모션에 주목한 분무냉각 막 비등 열전달 모델 (Film Boiling Heat Transfer Model of Spray Cooling Focusing on Rebound Motion of Droplets)

  • 김영찬
    • 대한기계학회논문집B
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    • 제29권2호
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    • pp.287-293
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    • 2005
  • In the present study, to determine the flow rate of droplets supplied to heat transfer surface after (j-1)th rebound, $D_X[j{\ge}2]^{\ast}$, it was assumed that the rebound droplets are distributed according to the Gaussian distribution from 0 to L, in which the flight distance L is determined by maximum flight distance $L_{max}$. We also assumed that $L_{max}$ is dependent on the air flow velocity and mean size of droplets. The local heat flux of a dilute spray in high temperature region was predicted using the newly evaluated $D_X[j{\ge}2]^{\ast}$. In addition, the predicted results by the present model were compared with the existing experimental data.

현열 플럭스 추정에 의한 대류 혼합층 고도의 산출 (Calculation of the Convective Mixed Layer by Estimation of Sensible Heat Flux)

  • 김용국
    • 한국환경과학회지
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    • 제7권5호
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    • pp.639-645
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    • 1998
  • A Jump model was evaluated for the calculation of hourly mixing height and mean potential temperature within the height. The Sump model was modified for estimation of downward heat fluxes by mechanical convections and surface heat fluxes. The surface heat fluxes were estimated from routine weather data such as solar radiation and air temperature. Total of 8 upper-air data observed at 0000UTC and 0600UTC in Osan station during April 23 to 26, 1996 were analyzed, and compared to the model results in detail. The calculated mixing heights and potential temperatures within the height were comparable to the observations, but some differences were showed. The calculated mixing heights were generally higher than observations. And, when variations of wind directions were large, the large difference of potential temperature was occurred. From the results, it was important to note that vortical motions and advections of air masses would affect to the growth of the mixing height.

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