• 제목/요약/키워드: soil heat flux

검색결과 48건 처리시간 0.024초

지표면 열수지의 강수응답성에 관한 연구 (The Response of soil surface heat budget to the precipitation)

  • 황수진;진병화
    • 한국환경과학회지
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    • 제3권2호
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    • pp.89-100
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    • 1994
  • It is very important to assess accurately the terms which are included in the heat budget equation of soil surface because they are used in the UM and miso-scale circulation modeling as well as in the micrometeorological studies. Each terms in the heat budget equation change according to the soil moisture content. So, it is necessary to specify clearly the relations between soil moisture content and these terms. Special experiment with micrometeorological measurements was executed to study these relations at Environmental Research Center of Tsukuba University, Japan. The results are as follow: 1. The soil moisture contents of 1 cm and 4 cm depth are oscillated with one day Period in drying process and the amplitude of variation of 1 cm depth is greater than that of 4 cm. 2. Increase in soil moisture contents due to precipitation result in decrease of albedo with step function. 3. Sensible heat is in reverse proportion to the soil moisture content and latent heat is in direct proportion to it. Latent heat is more sensitive than sensible heat according to the soil moisture variation. Net long wave radiation have high correlation with soil moisture. 4. Comparing with the radiative term with the flux term in wetting process due to precipitation, the energy transfer of the aero and thermodynamic flux is greater than that of the radiative heat flux.

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지중가온이 온실의 난방부하에 미치는 영향 (The Effect of Soil Warming on the Greenhouse Heating Load)

  • 남상운
    • 한국농공학회논문집
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    • 제48권5호
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    • pp.51-60
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    • 2006
  • In order to examine the heat transfer characteristic of a soil warming system and effects of soil warming on the greenhouse heating load, control experiments were performed in two greenhouses covered with double polyethylene film. One treated the soil warming with an electric heat wire and the other treated a control. Inside and outside air temperature, soil temperature and heat flux, and heating energy consumption were measured under the set point of heating temperature of $5,\;10,\;15,\;and\;20^{\circ}C$, respectively. Soil temperatures in a soil warming treatment were observed $4.1\;to\;4.9^{\circ}C$ higher than a control. Heating energy consumptions decreased by 14.6 to 30.8% in a soil warming treatment. As the set point of heating temperature became lower, the rate of decrease in the heating energy consumptions increased. The percentage of soil heat flux in total heating load was -49.4 to 24.4% and as the set point of heating temperature became higher, the percentage increased. When the set point of heating temperature was low in a soil warming treatment, the soil heat flux load was minus value and it had an effect on reducing the heating load. Soil heat flux loads showed in proportion to the air temperature difference between the inside and outside of greenhouse but they showed big difference according to the soil warming treatment. So new model for estimation of the soil heat flux load should be introduced. Convective heat transfer coefficients were in proportion to the 1/3 power of temperature difference between the soil surface and the inside air. They were $3.41\;to\;12.42\;W/m^{2}^{\circ}C$ in their temperature difference of $0\;to\;10^{\circ}C$. Radiative heat loss from soil surface in greenhouse was about 66 to 130% of total heating load. To cut the radiation loss by the use of thermal curtains must be able to contribute for the energy saving in greenhouse.

함평만 갯벌에서 순복사에 의한 토양열 플럭스와 기온의 변동 분석 (Analysis of Variations in Soil Heat Flux and Air Temperature by Net Radiation at a Mud Flat in Hampyeong Bay)

  • 박호선;권병혁;김일규;소윤환;오세봉;강동환
    • 한국환경과학회지
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    • 제26권9호
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    • pp.1101-1110
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    • 2017
  • In this study, we analyze changes in soil heat flux and air temperature in August (summer) and January (winter) according to net radiation, at a mud flat in Hampyeong Bay. Net radiation was observed as $-84.2{\sim}696.2W/m^2$ in August and $-79.4{\sim}352.5W/m^2$ in January. Soil heat flux was observed as $-80.7{\sim}139.5Wm^{-2}$ in August and $-49.09{\sim}137W/m^2$ in January. Air temperature was observed as $24.2{\sim}32.9^{\circ}C$ in August and $-1.5{\sim}11.1^{\circ}C$ in January. The rate of soil heat flux for net radiation ($H_G/R_N$) was 0.17 in August and 0.34 in January. Because the seasonal fluctuation in net radiation was bigger than the soil heat flux, net radiation in August was bigger than in January. We estimated a linear regression function to analyze variations in soil heat flux and air temperature by net radiation. The linear regression function and coefficient of determination for the soil heat flux by net radiation was y=0.19x-7.94, 0.51 in August, and y=0.39x-11.69, 0.81 in January. The time lag of the soil heat flux by net radiation was estimated to be within ten minutes in August 2012 and January 2013. The time lag of air temperature by net radiation was estimated at 160 minutes in August, and 190 minutes in January.

고흥만 습지에서 증발산량의 산출 방법 (Estimation Method of Evapotranspiration over Goheung bay Wetland)

  • 권병혁;김동수;김근회;강동환
    • 한국습지학회지
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    • 제10권1호
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    • pp.21-30
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    • 2008
  • 증발산은 지표와 대기 사이에서 일어나는 에너지 상호작용에 기여하는 중요한 요소 중 하나이다. 갈대로 덮인 고흥만 간척지에서 현열, 토양열 그리고 순복사를 측정하여 증발산량을 조사하였다. 자동기상관측 자료로부터 산출된 증발산량은 구름과 바람의 연직경도가 $1s^{-1}$보다 미약한 경우를 제외하고 열수지 방정식으로 추정한 값과 잘 일치하였다. 토양열은 순복사의 약 10%로 평가되었다. 갈대로 구성된 식생캐노피 내에서 온도에 따른 포화수증기압의 변화율($${\Delta}{\sim_=}de_s/dT$$)이 약 1.5로 근사되었고, 증발산량은 순복사 에너지의 함수로 설명될 수 있다.

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대규모 주택단지내의 인공구조물에 의한 승온화효과에 관한 연구 (On the Warming Effects due to Artificial Constructions in a Large Housing Complex)

  • 김해동;이송옥;구현숙
    • 한국환경과학회지
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    • 제12권7호
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    • pp.705-713
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    • 2003
  • In mid-August 2002, under clear summer pressure patterns, we carried out an intensive meteorological observation to examine the warming effects due to artificial constructions in a large housing complex. We set an automatic weather system(AWS) at two places in a bare soil surface within a limited development district and an asphalt surface within a large apartment residence area, respectively. As a result of observation, it became clear that the difference of the surface air(ground) temperature between the bare soil surface and its peripheral asphalt area reached about 4$^{\circ}C$(13$^{\circ}C$) at the maximum from diurnal variation of surface temperatures on AWS data. Through the heat balance analysis using measurement data, it became clear that the thermal conditions at two places are dependent on the properties of surface material. The latent heat flux over the bare soil surface reached to about 300 W/㎡, which is more than a half of net radiation during the daytime. On the other hand, it was nearly zero over the asphalt surface. Hence, the sensible heat flux over the asphalt surface was far more than that of the bare soil surface. The sensible heat flux over the asphalt surface showed about 20∼30 W/㎡ during the night. It was released from asphalt surface which have far more heat capacity than that of bare soil surface.

갈대 서식 연안습지에서의 순복사와 토양열 플럭스 (Net Radiation and Soil Heat Fluxes Measured on Coastal Wetland Covered with Reeds)

  • 김희종;김동수;윤일희;이동인;권병혁
    • 한국환경과학회지
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    • 제16권2호
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    • pp.233-239
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    • 2007
  • In the coastal wetland the mud is consist of fine particles, which means that it is characterized by small gap, and heat transfer is obstructed since moisture is found between the gaps. The relationship between net radiation ($R_N$) and soil heat flux($H_G$) shows a counterclockwise hysteresis cycle, which refer to a time lag behind in the maximal soil heat fluxes. The albedo is independent of seasonal variation of the vegetation canopy which plays very important roles to store and control the heat in the atmospheric surface layer.

Heat flux를 이용한 토양 표면 온도 예측 (Estimation of Soil Surface Temperature by Heat Flux in Soil)

  • 허승오;김원태;정강호;하상건
    • 한국토양비료학회지
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    • 제37권3호
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    • pp.131-135
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    • 2004
  • 본 연구는 일반 기상 측정에서 에너지 수지를 구할 때 이용되는 지중열류 값과 토양 내 10 cm 깊이에서 측정한 토양온도를 활용하여 태양 복사에너지와 지표면 복사 에너지의 도달과 분배에 중요한 역할을 하는 토양표면의 온도를 예측하고자 수행하였다. 2003년 6월 10일부터 6월 24일까지 측정한 지중열류와 토양온도 그래프에서 토양온도나 지중열류는 주기성을 나타내며 일중 최저 지중열류와 최고 토양온도 사이에는 위상편차가 존재한다. 토심 5 cm에서 측정하여 시간별로 평균한 토양온도와 지중열류 사이에는 2시간의 시간지연이 존재하며 토양온도와 시 공간상에서의 지중열류는 정의 상관관계를 보였다. 이는 단위체적 당 열용량과 깊이에 따른 열량의 변화율이 태양에너지와 지표면 복사를 통한 지중열류에 비례한다는 것을 의미한다. 예측된 토양 표면온도는 시간별로 평균하였을 때 그 평균온도가 $20^{\circ}C$를 넘어 여름철의 기온을 반영하였으며 모양도 주기함수 형태를 보였다. 진폭은 $4.5^{\circ}C$로서 10 cm 깊이에서의 진폭인 $3.4^{\circ}C$보다 $1.1^{\circ}C$ 높았으며 최저온도가 나타난 시간은 토양표면의 경우는 오전 8시, 10 cm 깊이에서는 오전 9시였으며 최고온도가 나타난 시간은 토양표면은 16시, 10 cm 깊이는 19시이었다. 시간별로 평균하지 않았을 때의 최고와 최저온도는 각각 33.2, $16.5^{\circ}C$ 였으며, 토양표면온도 분포는 $15-20^{\circ}C$가 5.3%, $20-25^{\circ}C$가 65.6%, $25-30^{\circ}C$가 28.1%, $30-35^{\circ}C$가 1%로 대부분의 온도는 $20-25^{\circ}C$ 범위의 값을 나타냈다. 예측된 토양표면온도의 검증을 위해 토양표면 온도와 10 cm 깊이의 토양온도를 가지고 계산한 산술 평균과 토심 5 cm에서 측정한 토양온도를 비교하였다. 또한, 그 과정을 통해 얻어진 추정회귀모형은 P값이 0.001보다 작아 유의성이 인정 되었다. 회귀모형의 결정계수는 0.968이었고 표준오차는 0.38로 예측된 토양표면온도는 추정 회귀모형에 의해 실제 값에 가깝게 추정할 수 있을 것이다.

접지층에서 대기난류의 역할과 에너지 평형 (Role of Atmospheric Turbulences and Energy Balances in the Atmospheric Surface Layer)

  • 권병혁;김근희;김광호;강동환
    • 한국습지학회지
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    • 제11권1호
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    • pp.105-113
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    • 2009
  • 연안습지 생태계에서 열에너지 교환 과정은 매우 중요하다. 지표 열에너지 평형을 이루는 요소인 순복사플럭스, 현열 플럭스, 잠열 플럭스 그리고 토양열 플럭스를 전라남도 고흥에 위치한 수평적으로 균질하다고 판단되는 지역인 고흥만 간척지에서 관측하고 분석하였다. 열의 수송을 평가하기 위해서 5회의 집중관측 기간에 대기 난류를 측정하였고, 특히 갈대로 덮여있는 간척지에서 지표층 열에너지 수지를 분석하기 위해서는 물과 매우 미세한 입자로 구성된 토양 그리고 계절에 따라 색깔과 밀도가 변하는 식생캐노피를 고려하였다. 순복사 플럭스, 현열 플럭스, 잠열 플럭스, 토양열 플럭스를 기존의 에너지 수지방정식에 적용하여 식생과 토양과 같은 지표면 특성에 따른 열 플럭스의 특징을 조사하여 습지의 기온조절 효과에 대해 알아보았다. 에너지 수지비로 식생 성장기에는 주로 잠열 플럭스에 의해 열이 대기로 전달되는 것을 알 수 있었다. 또한 식생층은 열을 저장하여 기온의 일교차를 줄이는 역할을 한다. 여름철에 집중관측지의 기온이 주변 지역의 기온보다 보다 낮고 겨울철에는 다소높게 나타난 결과는 식생층을 포함하는 연안습지가 열환경을 조절함을 보여주었다.

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해안 대기 표층의 난류와 해안 대기 경계층의 구조 (Turbulence of the Coastal Atmospheric Surface Layer and Structure of the Coastal Atmospheric Boundary Layer)

  • 권병혁
    • 수산해양교육연구
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    • 제17권3호
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    • pp.404-412
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    • 2005
  • The surface energy budget depends on many factors, such as the type of surface, the soil moisture and the vegetation canopy, the geographical location, daily, monthly and seasonal variations, and weather conditions. In the coastal region, the surface is not homogeneous at various scales for instance water, sand, mud, tall grass, and crops. The energy balance over the vegetation canopy was analyzed with the optical energy balance measuring system. The latent heat flux was more intensive than the sensible heat flux. The sensible heat flux was very small in summer due to the canopy effect and higher in spring and autumn. In summer the development of the atmospheric boundary depended on rather the vertical shear of wind than the sensible heat flux.

CFD를 이용한 폐쇄생태계 내 토양표면의 열전달계수 분석 (An Analysis of Heat Transfer Coefficient of Soil Surface in Closed Ecosystems Using CFD)

  • 노상목;남상운
    • 농업과학연구
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    • 제33권1호
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    • pp.85-95
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    • 2006
  • A model experiment has been performed to get the heat transfer coefficient on the soil surface in the closed ecosystem. The heat flux on the soil surface was measured and the heat transfer coefficient was derived in the following two cases with 5-stepped control of inside air current speed. One case was that heat flowed from air to soil and the other case was that heat flowed from soil to air. Three dimensional CFD model has been set to simulate thermal environment in the closed ecosystem including soil layers. The standard $k-{\varepsilon}$ model of the CFD program was chosen for turbulence model and heating wire buried in the soil layers was set as heat source option to simulate the case when the temperature of soil surface was higher than that of inside air in the closed ecosystem. Between one case that heat flowed from air to soil and the other case that heat flowed from soil to air, there were big differences in the temperature distribution of soil layers and the heat transfer coefficient of the soil surface. The increasing rate of heat transfer coefficient on each case according to the increase of inside air current speed was similar to each other and it respectively increased linearly. But the heat transfer coefficient on the case that heat flowed from soil to air was much bigger than that of the other case. The model was validated by comparing simulated values of CFD model with measured values of the model experiment. Simulated and measured temperature of inside air and soil layers, and heat transfer coefficient of the soil surface were well accorded and the range of corrected $R^2$ was 0.664 to 0.875. The developed CFD model was well simulated in parts of the temperature of inside air and soil layers, the distribution of the inside air current speed, and heat transfer coefficient of the soil surface were able to be quantitatively analyzed by using this model. Therefore, the model would be applied and used for analysis of heat transfer coefficient between air and surface in various agricultural facilities.

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