• 제목/요약/키워드: 미기상환경

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미기상 수치모의를 위한 다층식생모델의 식생 팍라메타가 바람에 미치는 영향 (The effect of vegetation parameter characteristics of the multi-layer vegetation model on wind for numerical simulation of micro-meteorology)

  • 오은주;이화운;정용현
    • 한국환경과학회지
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    • 제12권6호
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    • pp.605-613
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    • 2003
  • In order to make use of the protection effect against wind by the vegetation, it examined whether it should make what vegetation form and arrangement using the 2-dimensional non-hydrostatic model. When the foliage shielding factor increases, it becomes hard to take in protection effect against wind in a residential section. When it makes height of vegetation high, it becomes hard to take in protection effect against wind with height. In the comparison in the case where vegetation high is gradually made low toward wind-stream from a vegetation, and the case of making it low gradually, although former tends to receive the protection effect against wind by the vegetation, attenuation of wind velicity becomes large. In the comparison in the case where foliage shielding factor and distribution of density of leaf are gathered gradually toward wind-stream from a vegetation. It has been understood to evaluate to height the influence that the vegetation multi-layer model by which the heat revenue and expenditure in the direction of the vegetation height is considered is used, and to characterize the vegetation group by the parameter setting.

낙동강 구미 보의 증기 안개 발생 시의 미기상학적 특성 (Micro-meteorological Characteristics during the Steam Fog over the Gumi Reservoir of Nakdong River)

  • 김해동;조창범;서광수
    • 한국환경과학회지
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    • 제25권3호
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    • pp.405-415
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    • 2016
  • We analyzed the micro-meteorological characteristics during typical steam fog over the Gumi Reservoir of Nakdong river with the field observation data for recent 2 year(1 April 2013~31 March 2015) collected by the national institute of meteorological research, KMA. Steam fog occur when the cold drainage flows over the warm water surface. As the sensible and latent heat from water are provided to the air, the instability of lower atmosphere is increased. The resultant vertical mixing of warm, moist air near water surface and cold air aloft causes the formation of status cloud. The convection strengthened by radiative cooling of the upper part of the stratus causes the fog to propagate downward. Also, the temperature at the lowest atmosphere is increased rapidly and the inversion near surface disappear by these processes when the fog forms. The increase of wind speed is observed because the downward transportation of momentum is caused by vertical mixing.

미기상학적 기법을 응용한 난지도지역이 수은교환율 측정연구 (Mercury Fluxes from the Nan-Ji-Do Area of Seoul -Application of Micrometerorological Methods)

  • 김민영;김기현;이강웅;정일현
    • 한국대기환경학회지
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    • 제16권6호
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    • pp.585-594
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    • 2000
  • Through an application of Micrometerorological methods, we conducted measurements of Hg fluxes from Nan-Ji-Do which is well known as one of the major local areal sources in Seoul metropolitan area during Match/April of 2000. In the course of our study, we determined the concentration gradients of total gaseous Hg(between 20 and 2000 cm heights) and combined these data with Micrometerorological components to derive is fluxes. It turned out that emission from and dry deposition to soil surfaces occurred at the ratio of 72:27 from a total of 271 hourly measurements. The validity of measured concentration gradients( or resulting fluxes) was evaluated in terms of percent gradient. Accordingly, about more than 95% of gradient data derived were statistically significant. The mean fluxes of Hg across soil-air interface, when computed using the concentrations gradients and relevant parameters, were found at 253(during emission) and -846ng/$m^2$/h(during dry deposition) The occurrences of abnormalously high exchange rates appear to be the combined effects of enormously high gradient values and high transfer coefficients. While the emissions of Hg occurred constantly during the whole study periods, the occurrences of dry deposition events were observed most intensively during very limited time periods(3/29 and 4/3). The results of our study cleary indicated that the studied area is a strong local areal source, while exhibiting great potential as a major sink simultaneously.

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A Comparison between In-situ PET and ENVI-met PET for Evaluating Outdoor Thermal Comfort

  • Jeong, Da-in;Park, Kyung-hun;Song, Bong-guen
    • KIEAE Journal
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    • 제16권1호
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    • pp.11-19
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    • 2016
  • Purpose: PMV, PET, and similar thermal comfort indices and microclimate modeling have recently become actively used to evaluate thermal comfort. This study will look at pedestrian roads with diverse spatial characteristics on university campus using the ENVI-met model as the base for onsite measurement. Method: The PET was used as the thermal comfort index. The first microclimate measures were collected on September 20, 2014, and the second microclimate measures were collected on June 1, 2015. The ENVI-met model was used at the same time. Result: As a results, Onsite measurement results differed depending on the PET spatial characteristics. The location associated with the most discomfort had a PET of $47.8^{\circ}C$. The spatial characteristics of this place included a with no shade. The most comfortable location had shade, and the PET was $24.6^{\circ}C$. When the ENVI-met model and onsite measurements were compared, similar patterns were found, but with a few differences at specific points; this was due to the limitation of using input materials such as trees, buildings, and covering materials with the ENVI-met model. This factor must be thoroughly considered when analyzing modeling results.

거리협곡 벽면녹화 조성유형에 따른 미기상 변화 및 열환경 평가 (A Study on Verifying the Effect of Thermal Environment Control of Street Canyons based on Application of Green Wall System)

  • 김정호;최원준;윤용한
    • 한국환경과학회지
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    • 제25권2호
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    • pp.311-322
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    • 2016
  • This study reduced and built Street Canyons created by skyscrapers in order to verify effect of Street Canyons by green wall within the city centre and analysed influence factors on temperature reduction according to applicative types of green wall in the lab. Applicative types were divided into three types such as non- greening type(Case A), one-side greening type(Case B), both side greening type(Case C). The result of analysis of each types showed that average temperature of Case B and Case C is respectively $1.0^{\circ}C$ and $1.7^{\circ}C$ lower than Case A. The result of analysis of WBGT was that the highest temperature was given by Case A($40.2^{\circ}C$) and second one was from Case B($39.8^{\circ}C$) and third one was from ($39.1^{\circ}C$) and in UTCI Case A records the highest temperature of $34.7^{\circ}C$ and Case B provided the second highest temperature of $33.9^{\circ}C$ and Case B gave the lowest temperature of $32.7^{\circ}C$. In PMV the highest temperature of 2.65 was from Case B and second one of 2.61 was from Case A and third one of 2.54 was from Case C. Duncan analysis of each types based on solar radiation and thermal comfort generated that there was analytical significance between Case A and Case B and Case B in terms of each types of average temperature reduction. The significance of thermal comfort in WBGT, MRT, PMV showed non-significance but, In UTCI it was analysed that there was significance between Case C and Case A.

자연 환기식 온실의 모델 기반 환기 제어를 위한 미기상 환경 예측 모형 (Predictive Model of Micro-Environment in a Naturally Ventilated Greenhouse for a Model-Based Control Approach)

  • 홍세운;이인복
    • 생물환경조절학회지
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    • 제23권3호
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    • pp.181-191
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    • 2014
  • Modern commercial greenhouse requires the use of advanced climate control system to improve crop production and to reduce energy consumption. As an alternative to classical sensor-based control method, this paper introduces a model-based control method that consists of two models: the predictive model and the evaluation model. As a first step, this paper presents straightforward models to predict the effect of natural ventilation in a greenhouse according to meteorological factors, such as outdoor air temperature, soil temperature, solar radiation and mean wind speed, and structural factor, opening rate of roof ventilators. A multiple regression analysis was conducted to develop the predictive models on the basis of data obtained by computational fluid dynamics (CFD) simulations. The output of the models are air temperature drops due to ventilation at 9 sub-volumes in the greenhouse and individual volumetric ventilation rate through 6 roof ventilators, and showed a good agreement with the CFD-computed results. The resulting predictive models have an advantage of ensuring quick and reasonable predictions and thereby can be used as a part of a real-time model-based control system for a naturally ventilated greenhouse to predict the implications of alternative control operation.

전산유체역학모형에 근거한 미기상 바람환경 영향평가 시스템 (An Environmental Impact Assessment System for Microscale Winds Based on a Computational Fluid Dynamics Model)

  • 김규랑;구해정;권태헌;최영진
    • 환경영향평가
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    • 제20권3호
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    • pp.337-348
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    • 2011
  • Urban environmental problem became one of major issues during its urbanization processes. Environmental impacts are assessed during recent urban planning and development. Though the environmental impact assessment considers meteorological impact as a minor component, changes in wind environment during development can largely affect the distribution pattern of air temperature, humidity, and pollutants. Impact assessment of local wind is, therefore, a major element for impact assessment prior to any other meteorological impact assessment. Computational Fluid Dynamics (CFD) models are utilized in various fields such as in wind field assessment during a construction of a new building and in post analysis of a fire event over a mountain. CFD models require specially formatted input data and produce specific output files, which can be analyzed using special programs. CFD's huge requirement in computing power is another hurdle in practical use. In this study, a CFD model and related software processors were automated and integrated as a microscale wind environmental impact assessment system. A supercomputer system was used to reduce the running hours of the model. Input data processor ingests development plans in CAD or GIS formatted files and produces input data files for the CFD model. Output data processor produces various analytical graphs upon user requests. The system was used in assessing the impacts of a new building near an observatory on wind fields and showed the changes by the construction visually and quantitatively. The microscale wind assessment system will evolve, of course, incorporating new improvement of the models and processors. Nevertheless the framework suggested here can be utilized as a basic system for the assessment.

광합성효율 모델을 이용한 밀폐형 식물 생산시스템의 재배환경 최적화 (Optimization of Growth Environment in the Enclosed Plant Production System Using Photosynthesis Efficiency Model)

  • 김기성;김문기;남상운
    • 생물환경조절학회지
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    • 제13권4호
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    • pp.209-216
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    • 2004
  • 본 연구에서는 폐쇄형 식물 생산시스템 내에서 생체정보에 의한 최적 환경제어와 식물의 환경스트레스 판단을 위하여 엽록소형광 분석법으로 광합성효율 모델을 만들었으며, 광합성효율 모델에 유전알고리즘을 적용하여 재배환경 최적화 프로그램의 응용성을 평가하였다. 6가지 미기상 요인 중 5가지는 고정하고 1가지씩만 변화시켜 가며 측정한 Fv'/Fm'이 최대가 되는 환경조건은 기온 $21^{\circ}C,\;CO_2$농도 $1,200\~1,400ppm$, 상대습도 $68\%$, 기류속도 $1.4m{\cdot}s^{-1}$, 배양액온도 $20^{\circ}C$이었으며 PPF가 $140{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$ 보다 증가할수록 광합성 효율은 감소하였다. 광합성효율모델의 오차는 평균 $2.5\%$였다. 재배환경 최적화 프로그램으로부터 계산된 밀폐형식물 생산시스템내에서 상추의 최적재배환경조건은 기온 $22^{\circ}C$, 배양액온도 $19^{\circ}C,\;CO_2$농도 1,400ppm, 기류속도 $1.0m{\cdot}s^{-1}$, PPF $430{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$, 상대습도 $65\%$이다. 이상의 연구 결과로부터 광합성 효율 모델을 이용하여 식물 생산시설의 환경모니터링 시스템과 식물 생체정보에 의한 최적제어시스템의 개발이 가능함을 확인하였다.

톱밥 절감형 돈분 슬러리 연속 퇴비화 공정 연구 (Study on the Continuous Composting Process to Reduce the Use of Bulking Agent in Pig Slurry)

  • 류종원
    • 한국축산시설환경학회지
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    • 제13권2호
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    • pp.121-128
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    • 2007
  • 축산분뇨와 톱밥을 혼합하여 수분조절을 한 후 발효조에 투입하는 방식이 아닌 발효상에 미리 투입된 톱밥위에 축산분뇨를 살포하면서 교반처리하여 발효증발 처리하는 시스템을 이용하여 퇴비 발효층의 온도, 수분함량, 수분수지, 퇴비의 비료성분을 연구하였다. 1. 본 처리공정은 과다한 수분을 신속하게 침출수 강제배출 방식으로 배출하여 슬러리 투입분뇨의 함수율이 높더라도 수분증발이 이루어지고 발효상 함수율은 $65{\sim}73%$ 전후로 유지되었다. 2. 연속퇴비화 과정에서 시험기간 중에 10.6% 정도의 침출수가 발생되었다. 또한 5개월 가동 기간 동안 톱밥 $1m^3$ 투입 당 $3.16m^3$의 돈분슬러리 처리가 가능하였다. 3. 침출여과액은 오염물질농도가 낮아져 투입분뇨 대비 BOD는 86.5%, SS은 96.2% 저감되었다. 4. 퇴비사의 미기상 분석결과 상대습도는 낮 시간을 제외한 야간시간에는 $80{\sim}100%$로서 높았다. 퇴비사의 습도가 높아지면 퇴비화 과정 중 수분증발 효율이 저하의 원인이 될 것으로 사료된다.

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기능성 연질필름 온실의 미기상 (Microclimate of Greenhouses Covered with Functional Film)

  • 전희;최영준;최영하;김학주;이시영;정두석;신용습;최충돈
    • 생물환경조절학회지
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    • 제16권2호
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    • pp.96-100
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    • 2007
  • 피복자재별로 전광선투과율은 차이가 거의 없었으나, 물방울과 먼지의 부착량이 적은 J-2에서 시설 내 광투과율은 78.2%로 가장 높았다. 자외선 투과율이 완전히 차단된 필름은 J-2이었고, 나머지의 자외선 투과율은 $62{\sim}76%$ 정도이었다. 무가온 참외재배시기에 터널 안이 노지보다 기온은 $15{\sim}21^{\circ}C$, 지온은 $20{\sim}25^{\circ}C$ 정도 높았다. 피복자재별로 기온은 $6^{\circ}C$, 지온이 $5^{\circ}C$ 정도 차이가 나타났으며 기온과 지온 모두 J-2 에서 가장 높았다.