• Title/Summary/Keyword: Sensible Heat

검색결과 332건 처리시간 0.026초

냉수 대온도차 흡수식 냉동기용 2단 증발기/ 흡수기 최적 설계 (Optimum design of the Characteristics of Double Stage Evaporator/Absorber for Large temperature Difference Absorption System)

  • 박찬우;임익태;강용태
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 동계학술발표대회 논문집
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    • pp.203-211
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    • 2008
  • The optimal design of two stage evaporation & absorption system which is related to the large temperature difference system was investigated numerically in the absorption refrigeration system. The concentrations at inlet & oulet of absorber are 62.9% and 56.9%, but in two stage absorption system the values are 62.2% and 56.2%. Therefore strong solution & weak solution became diluted than the standard value. The amount of weak solution circulation can be reduced in absorption refrigeration system, and the sensible heat load is more reduced to enhance the COP of system. As UAR is increased, COP becomes larger, and this means the role of top section is more important than bottom section in two stage evaporation & absorption system. But the increase of COP becomes slower at 0.7 of UAR ratio. The performance of Type2 is higher than Type1 in COP with the flow direction of cooling waters. This phenomena is due to the active absorption of vapor -absorption & lower temp. cooling water is more effective. The pressure at bottom section becomes higher & that at top section becomes lower and therefore the circulation rate can be diminished more.

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주거용 태양열 성층축열시스템의 시뮬레이션 (A Simulation for the Stratified Thermal Storage System in Residential Solar Energy Application)

  • 박이동;유호선
    • 태양에너지
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    • 제11권3호
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    • pp.44-52
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    • 1991
  • 본 연구의 목적은 주거용 태양열 온수이용에 있어서 성층저장의 잠점을 평가하고 최적의 설계변수를 제시하되 실험이 아닌 시뮬레이션을 통한다는 것이다. 그 결과는 다음과 같으며 실험의 결과들과 잘 일치함을 보였다. 1. 탱크의 성층분활이 증가함에 따라서 태양부하율이 증가함을 보여 주었고 본 연구에서는 평균 10% 정도 증가함을 나타내었다. 2. 저장탱크의 높이 대 지름의 비가 3정도일 때가 태양부하율이 최대가 되었으며 그 이상이 되면 감소하는 경향을 나타내었다. 3. 집열기로 부터 저장탱크로 유입되는 온수의 유동율이 증가할 수록 완전혼합저장에서는 태양부하율이 증가하지만 성충저장에서는 유입율이 감소하는 것이 태양부하율을 증가시키는 결과가 되었다. 4. 이와 같은 결과로 성층축열시스템 전체적으로는 약 17%의 성능 향상을 기대할 수 있다.

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지표 에너지 수지에 미치는 구름의 복사 역할 (Radiative Role of Clouds on the Earth Surface Energy Balance)

  • 홍성철;정일웅;김형진;이재범;오성남
    • 한국환경과학회지
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    • 제16권3호
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    • pp.261-267
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    • 2007
  • In this study, the Slab Ocean Model (SOM) is coupled with an Atmospheric General Circulation Model (AGCM) which developed in University of Kangnung based on the land surface model of Biosphere-Atmosphere Transfer Scheme (BATS). The purposes of this study are to understand radiative role of clouds considering of the atmospheric feedback, and to compare the Clouds Radiative Forcing (CRF) come from the analyses using the clear-cloud sky method and CGCM. The new CGCM was integrated by using two sets of the clouds with radiative role (EXP-A) and without radiative role (EXP-B). Clouds in this two cases show the negative effect $-26.0\;Wm^{-2}$ of difference of radiation budget at top of atmosphere (TOA). The annual global means radiation budget of this simulation at TOA is larger than the estimations ($-17.0 Wm^{-2}$) came from Earth Radiation Budget Experiment (ERBE). The work showed the surface negative effect with $-18.6 Wm^{-2}$ in the two different simulations of CRF. Otherwise, sensible heat flux in the simulation shows a great contribution with positive forcing of $+24.4 Wm^{-2}$. It is found that cooling effect to the surface temperature due to radiative role of clouds is about $7.5^{\circ}C$. From this study it could make an accurate of the different CRF estimation considering either feedback of EXP-B or not EXP-A under clear-sky and cloud-sky conditions respectively at TOA. This result clearly shows its difference of CRF $-11.1 Wm^{-2}$.

도시 캐노피 층 기온과 상대습도의 일변화에 관한 수치 모의 (Numerical Simulations of Diurnal Variations of Air Temperature and Relative Humidity in the Urban Canopy Layer)

  • 박경주;한범순;진한결
    • 대기
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    • 제31권3호
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    • pp.295-309
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    • 2021
  • Diurnal variations of air temperature and relative humidity in the Urban Canopy Layer (UCL) of the Seoul metropolitan area are examined using the Weather Research and Forecasting model coupled with the Seoul National University Urban Canopy Model. The canopy layer air temperature is higher than 2-m air temperature and exhibits a more rapid rise and an earlier peak in the daytime. These result from the multiple reflections of shortwave radiation and longwave radiation trapping due to the urban geometry. Because of the absence of vegetation in the UCL and the higher canopy layer air temperature, the canopy layer relative humidity is lower than 2-m relative humidity. Additional simulations with building height changes are conducted to examine the sensitivities of the canopy layer meteorological variables to the urban canyon aspect ratio. As the aspect ratio increases, net sensible heat flux entering the UCL increases (decreases) in the daytime (nighttime). However, the increase in the volume of the UCL reduces the magnitude of change rate of the canopy layer air temperature. As a result, the canopy layer air temperature generally decreases in the daytime and increases in the nighttime as the aspect ratio increases. The changes in the canopy layer relative humidity due to the aspect ratio change are largely determined by the canopy layer air temperature. As the aspect ratio increases, the canopy layer relative humidity is generally increased in the daytime and decreased in the nighttime, contrary to the canopy layer air temperature.

서울에서 겨울철 기온이 -5℃ 이하인 날 수의 십년간 변동 특성 (Interdecadal Changes in the Number of Days on Which Temperatures are not Higher Than -5℃ in Winter in Seoul)

  • 최재원;차유미;김정윤;박철홍
    • 한국기후변화학회지
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    • 제7권1호
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    • pp.49-57
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    • 2016
  • In the present study, the time series of the number of days on which temperatures were not higher than $-5^{\circ}C$ in winter in Seoul was analyzed. The results showed a decreasing tendency until recently. Statistical change-point analysis was conducted to examine whether climate regime shifts existed in this time series. According to the results, the number of days on which temperatures were not higher than $-5^{\circ}C$ in winter in Seoul drastically decreased since 1988. Therefore, to find out the reason for the recent decrease in the number of days, differences between the means of large-scale environments in winder during 1988~2010 and those during 1974~1987 were analyzed. In all layers of the troposphere, anomalous anticyclones developed in regions around the Korean Peninsula and thus the Korean Peninsula was affected by westerlies or south-westerlies. This was associated with the recent a little further northward development of western North Pacific subtropical high. Therefore, environments good for warm and humid air to flow into the Korean Peninsula were formed. To examine whether relatively warm and humid air actually flowed into the Korean Peninsula recently, temperatures and specific humidity in all layers in the troposphere were analyzed and according to the results the Korean Peninsula showed warm and humid anomalies. In the analyses of sensible heat net flux and maximum temperatures at a height of 2 m that can be felt by humans, the East Asia Continent including the Korean Peninsula showed positive anomalies.

제주의 여름철 기온이 25℃ 이상인 날수의 장기변화 분석 (Analysis of Long-term Changes of Days with 25℃ or Higher Air Temperatures in Jeju)

  • 최재원;차유미;김정윤;박철홍
    • 한국기후변화학회지
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    • 제7권1호
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    • pp.31-39
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    • 2016
  • In this study, the time series of the number of days with $25^{\circ}C$ or higher temperatures in the Jeju region were analyzed and they showed a strong trend of increase until recently. To determine the existence of a climate regime shift in this time series, the statistical change-point analysis was applied and it was found that the number of days with $25^{\circ}C$ or higher temperatures in the Jeju region increased sharply since 1993. Therefore, in order to examine the cause of the sharp increase of the days with $25^{\circ}C$ or higher temperatures in the Jeju region, the differences between the averages of 1994~2013 and the averages of 1974~1993 were analyzed for the large-scale environment. In the Korean Peninsula including the Jeju region, precipitable water and total cloud cover decreased recently due to the intensification of strong anomalous anticyclones near the Korean Peninsula in the top, middle and bottom layers of the troposphere. As a result of this, the number of days with $25^{\circ}C$ or higher temperatures in the Jeju region could increase sharply in recent years. Furthermore, in the analysis of sensible heat net flux and daily maximum temperatures at 2 m, which is the height that can be felt by people, the Korean Peninsula was included in the positive anomaly region. In addition, the frequency of typhoons affecting the Korean Peninsula decreased recently, which reduced the opportunities for air temperature drops in the Jeju region.

통합모델을 이용한 토지피복변화와 도시 모수화 방안에 따른 지상 기온 모의성능 민감도 분석 (Sensitivity Analysis of Near Surface Air Temperature to Land Cover Change and Urban Parameterization Scheme Using Unified Model)

  • 홍선옥;변재영;박향숙;이영곤;김백조;하종철
    • 대기
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    • 제28권4호
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    • pp.427-441
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    • 2018
  • This study examines the impact of the urban parameterization scheme and the land cover change on simulated near surface temperature using Unified Model (UM) over the Seoul metropolitan area. We perform four simulations by varying the land cover and the urban parameterization scheme, and then compare the model results with 46 AWS observation data from 2 to 9 August 2016. Four simulations were performed with different combination of two urban parameterization schemes and two land cover data. Two schemes are Best scheme and MORUSES (Met Office Reading Urban Surface Exchange Scheme) and two land cover data are IGBP (International Geosphere and Biosphere Programme) and EGIS (Environmental Geographic information service) land cover data. When land use data change from IGBP to EGIS, urban ratio over the study area increased by 15.9%. The results of the study showed that the higher change in urban fraction between IGBP and EGIS, the higher the improvement in temperature performance, and the higher the urban fraction, the higher the effect of improving temperature performance of the urban parameterization scheme. 1.5-m temperature increased rapidly during the early morning due to increase of sensible heat flux in EXP2 compared to CTL. The MORUSES with EGIS (EXP3) provided best agreement with observations and represents a reasonable option for simulating the near surface temperature of urban area.

2018년 8월 1일 홍천에서의 기록적인 고온 사례(41.0℃)에 영향을 준 푄 바람 (Effect of Foehn Wind on Record-Breaking High Temperature Event (41.0℃) at Hongcheon on 1 August 2018)

  • 김석환;이재규;김유진
    • 대기
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    • 제31권2호
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    • pp.199-214
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    • 2021
  • A record-breaking high surface air temperature of 41.0℃ was observed on 1 August 2018 at Hongcheon, South Korea. In this study, to quantitatively determine the formation mechanism of this extremely high surface air temperature, particularly considering the contributions of the foehn and the foehnlike wind, observational data from Korea Meteorological Administration (KMA) and the Weather Research and Forecasting (WRF) model were utilized. In the backward trajectory analysis, trajectories of 100 air parcels were released from the surface over Hongcheon at 1600 LST on 1 August 2018. Among them, the 47 trajectories (38 trajectories) are tracked back above (below) heights of 1.4 km above mean sea level at 0900 LST 31 July 2018 and are defined as upper (lower) routes. Lagrangian energy budget analysis shows that for the upper routes, adiabatic heating (11.886 × 103 J kg-1) accounts for about 77% of the increase in the thermal energy transfer to the air parcels, while the rest (23%) is diabatic heating (3.650 × 103 J kg-1). On the other hand, for the lower routes, adiabatic heating (6.111 × 103 J kg-1) accounts for about 49% of the increase, the rest (51%) being diabatic heating (6.295 × 103 J kg-1). Even though the contribution of the diabatic heating to the increase in the air temperature rather varies according to the routes, the contribution of the diabatic heating should be considered. The diabatic heating is caused by direct heating associated with surface sensible heat flux and heating associated with the turbulent mixing. This mechanism is the Type 4 foehn described in Takane and Kusaka (2011). It is concluded that Type 4 foehn wind occurs and plays an important role in the extreme event on 1 August 2018.

건물에너지시뮬레이션 기법을 이용한 육계사 표준설계모델의 에너지 부하 산출 (Evaluation of Energy Loads for Broiler-Standard Design Models Using a Building Energy Simulation Method)

  • 권경석;양가영;김종복;장동화;하태환;전소라
    • 한국농공학회논문집
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    • 제65권1호
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    • pp.27-39
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    • 2023
  • This study was to quantitatively evaluate periodic and maximum energy loads for broiler-standard design models by the Ministry of Agriculture, Food and Rural Affairs (2016). Building energy simulation method was used to compute heating and cooling loads of the designed broiler houses according to regional locations and insulation characteristics of wall and roof. It considered sensible and latent heat generation from broilers, dynamic operation of ventilation system according to environment variations. It was found that variation of periodic heating loads was relatively higher than that of periodic cooling loads according to thickness changes of wall and roof. Assuming that broiler was raised at every even-month, periodic heating and cooling loads were 6 and 18% lower, respectively than odd-month raising condition. When recommendation rules of insulation characteristics (wall and roof thickness) by the Ministry of Land, Infrastructure and Transport was adopted, periodic heating load of Jeju-si was 20.3% higher than national average values. Based on the BES computed periodic and maximum energy loads under the designed experimental condition, these results can contribute to reestablishing standard design of broiler houses, especially for insulation characteristics, and designing management strategies for efficient energy uses.

동아시아 이상기후 감시 서비스를 위한 지면모형 기반 준실시간 토양수분지수평가 (Evaluation of near-realtime weekly root-zone Soil Moisture Index (SMI) for the extreme climate monitoring web-service across East Asia)

  • 전종안;이은정;김대하;김선태;이우섭
    • 한국수자원학회논문집
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    • 제53권6호
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    • pp.409-416
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    • 2020
  • 최근 증가하고 있는 이상기후현상으로 인한 사회·경제적 피해를 줄이기 위해 이상기후 감시가 필수적이다. 이 연구의 목적은 Noah 3.3 지면모형으로 추정한 토양수분자료를 활용하여 준실시간 주간 근역층 토양수분지수(Soil Moisture Index, SMI)를 산정하는데 있다. 동아시아영역(15-60°N, 70-150°E)에 대해 Noah 3.3 지면모형의 적용성을 평가하기 위해 양쯔강유역을 선정하였으며, 해당 유역에서 증발산과 현열을 FluxNet, FluxCom, Global Land Evaporation Amsterdam Model (GLEAM), ERA-5, Generalized Complementary Relationship (GCR)자료를 이용하여 비교·평가하였다. 양쯔강 유역에서 Noah 지면모형으로 추정한 증발산은 FluxNet, FluxCom, GLEAM, ERA-5, GCR에 의한 증발산과 0.96이상의 매우 높은 결정계수의 값을 보였으며, 현열의 경우에는 FluxNet 현열 자료와 0.71의 결정계수로 증발산 보다 다소 낮은 값을 보였다. 주간 근역층 SMI 시계열로부터 2019년 7월부터 10월까지 중국의 동부지역에서 극한가뭄(Extreme drought)이 확장되는 현상이 관측되었다. 월별 극한가뭄 발생일수의 트렌드 분석결과, 우리나라의 경우 봄철에는 극한가뭄이 지난 20년 동안 대체로 감소하는 경향이 나타났으나, 가을철에는 한반도 전역에 걸쳐 증가하는 경향이 나타났다. 이 연구가 가뭄의 시·공간적 지속성 및 확장성과 최근 가뭄발생의 경향성 등을 종합적으로 분석하고 판단하여, 가뭄으로 인한 사회·경제적 피해를 줄이기 위한 적절한 대책 마련에 활용성이 클 것으로 기대된다.