• Title/Summary/Keyword: 온실 기상조건

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Relationship between Total Solar Radiation and PPF, and Transmittance in Greenhouse at Different Weather Conditions (기상조건에 따른 온실의 전천일사량 및 광합성유효광량자속의 상관관계 및 투과율)

  • 이현우;이석건;이상호
    • Journal of Bio-Environment Control
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    • v.11 no.2
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    • pp.56-60
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    • 2002
  • Since the transmittance of solar radiation directly affected by the structural frames of greenhouse can be changed according to the ratio of diffuse to direct radiations, it is necessary to investigate the transmittance of greenhouse at the different weather conditions. We can easily get the data of total solar radiation from the Meteorological Administration, but we have to personally measure the photosynthetic photon flux (PPF). If the relationship between total solar radiation and PPF is established, the PPF can be simply acquired from the relationship. Sol it is required to develop the equation to calculate PPF depending on weather condition. This study was conducted to determine the transmittance of PPF at canopy level in glasshouse and the correlation between total solar radiation and PPF at clear and cloudy days. The variation phase of greenhouse transmittance at clear day was very different from that at cloudy day. It was concluded that the proper transmittance, depending on the weather condition, should be adopted to calculate the accurate total solar radiation and PPF in greenhouse. The transmittance of solar radiation was the same as that of PPF in greenhouse. It was confirmed that the ratio of PPF to total radiation increased as the amount of cloud increased. The correlation between the hourly total solar radiation and PPF was derived.

Effects of frame ratio and length on the transmissivity of solar radiation in glasshouse by a computer simulation (컴퓨터 시뮬레이션에 의한 유리온실내의 일사 투과율에 미치는 골조율 및 동길이의 영향)

  • 김용현;이석건
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1998.10a
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    • pp.55-62
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    • 1998
  • 온실내에서 직달 및 산란일사의 투과율은 온실이 설치된 지역의 위도, 온실의 동방위 및 형상, 피복재의 광학적 특성, 년중일수, 기상 조건, 지붕면의 경사각 뿐만 아니라 온실의 길이, 구조물의 크기 등에 따라 달라질 수 있다. 현재 국내의 기상 조건에 적합한 표준형 유리온실의 설계 기준이 부분적으로 제시되고 있으나, 온실내의 광환경과 관련된 설계 기준은 제시되지 않고 있는 실정이다. (중략)

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Safety Snow Depth and Wind Speed of Domestic Greenhouses (국내보급온실의 안전기상하중 분석)

  • 이현우;이석건
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1995.10a
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    • pp.82-84
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    • 1995
  • 현재 국내에는 여러 가지 개량된 형태의 온실이 보급되어 온실산업의 생산성이 상당히 증가하고 있다. 그러나 현재 널리 보급되어 있는 온실의 형태가 구조적 안전성, 환경조건 및 경제성 등의 측면에서 현실적으로 완전한 조건을 갖추었다고는 보기 어렵다. 따라서 이들 형태들에 대한 다양한 질적 개선을 통하여 국내 환경에 보다 적합한 형태로 개선 발전시킬 필요가 있을 것으로 판단된다. (중략)

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Derivation of Standard Air Temperature Curve for Greenhouse Heating Design and its Application to Heating Degree Hour (온실의 난방설계를 위한 표준기온곡선 유도 및 난방 Degree Hour에의 적용)

  • 김문기;손정익;남상운;유인호;이동근
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1992.12a
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    • pp.21-22
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    • 1992
  • 온실의 난방에 필요한 난방기기의 용량 및 연료소비량을 합리적으로 추정하기 위해서는 난방설계용 외기조건, 즉 표준기상 데이터가 필요하다. 그러나, 현재 국내에는 건물의 냉난방 설계를 위한 표준기상 자료가 대도시 지역의 일부에 대하여만 발표되어 있다. 이것은 농업시설에 대해서는 적용이 불가능하므로 농업 시설 설계를 위한 개략적인 표준기상 데이터의 선정이 요망된다. (중략)

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A simulation model for the analysis of direct and diffuse solar radiation in glasshouse - Effect of orientation on the transmissivity of direct solar radiation in glasshouse - (유리온실내의 직달일사 및 산란일사 해석을 위한 시뮬레이션 모형 개발 - 동방위가 온실내의 직달일사 투과도에 미치는 영향 -)

  • 김용현;이석건
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1997.11a
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    • pp.1-7
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    • 1997
  • 온실이란 식물 생육에 요구되는 태양광을 유용하게 활용하기 위하여 투명한 피복재가 사용된 구조물을 일컫는다. 온실내로 투과되는 일사량은 온실이 설치된 지역의 위도, 온실의 동방위 및 형상, 구조물의 재원, 피복재의 광학적 특성, 년중일수, 기상 조건, 지붕면의 경사각 등에 따라 변화된다. 일반적으로 겨울철에 온실내의 일사량은 식물의 정상적인 생육에 제약이 되는 요소로 작용한다. (중략)

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Analysis of the Outdoor Design Conditions for Greenhouse Heating and Cooling Systems in Korea (온실의 냉난방시스템 설계용 외부기상조건 분석)

  • Nam, Sang-Woon;Shin, Hyun-Ho
    • Journal of Bio-Environment Control
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    • v.25 no.4
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    • pp.308-319
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    • 2016
  • In order to set the outdoor weather conditions to be applied to the design standard of the greenhouse heating and cooling system, outdoor air temperature and heating degree-hour for heating design, dry bulb temperature, wet bulb temperature and solar irradiance for cooling design were analyzed and presented. For every region in Korea, we used thirty years from 1981 to 2010 hourly weather data for analysis, which is the current standard of climatological normal provided by KMA. Since the use of standard weather data is limited, design weather conditions were obtained using the entire weather data for 30 years, and the average value of the entire data period was presented as a design standard. The design weather data with exceedance probability of 1, 2.5, and 5% were analyzed by the TAC method, and we presented the distribution map with exceedance probability of 1% for heating and 2.5% for cooling which are recommended by design standards. The changes of maximum heating load, seasonal heating load and maximum cooling load were examined by regions, exceedance probabilities, and setpoint temperatures. The proposed outdoor design conditions can be used not only directly for the greenhouse heating and cooling design, but also for the reinforcement of heating and cooling facilities and the establishment of energy saving measures. Recently, due to the climate change, sweltering heat in summer and abnormal temperature in winter are occurring frequently, so we need to analyze weather data periodically and revise the design standard at least every 10 years cycle.

Analysis of Outdoor Design Temperatures for Heating and Cooling Greenhouses Based on Annual Percentiles (연간 백분위 방식에 의한 온실 냉난방 설계기온의 분석)

  • Nam, Sang-Woon;Shin, Hyun-Ho
    • Journal of Bio-Environment Control
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    • v.27 no.3
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    • pp.269-275
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    • 2018
  • In order to establish the criterion for analyzing outdoor weather conditions in the greenhouse heating and cooling system design, we analyzed heating and cooling design outdoor temperatures by the annual percentile method and compared with design outdoor temperatures by the existing seasonal percentile method. In the annual percentile method, 0.4%, 1% and 2% of the total 8,760 hours per year are presented as cooling design outdoor temperatures and 99.6% and 99% as heating design outdoor temperatures. When the annual percentile method was adopted, heating design outdoor temperatures increased by 6.7 to 9.6% compared with the seasonal percentile method, and cooling design outdoor temperatures decreased by 0.6 to 1.1%. The maximum heating load in the same greenhouse condition decreased by 3.0 to 3.6% when the annual percentile method was adopted, but the effect on the maximum cooling load was insignificant. Therefore, it is necessary to consider the change of heating design outdoor temperatures to the annual percentile method, but it is not necessary to change the cooling design outdoor temperatures since there is little difference between the two methods.

Exergy Analysis of Solar Collector for Solar Heated Greenhouse Design (태양열온실의 설계를 위한 집열기의 EXERGY 분석)

  • 이석건
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1993.05a
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    • pp.18-19
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    • 1993
  • 지상의 기상환경조절이 불가능한 노지재배는 생산의 불안정요인이 대부분 기후조건으로 부터 기인된다. 반면에 시설원예는 피복재를 이용하여 격리된 공간을 만들고 그 속에 태양에너지를 저장하고 이를 제어하여 작물의 생육에 적절한 온실환경을 조성하는 수단이며 밀폐된 공간은 외부와 격리되어 있기 때문에 열 및 물질의 전달이 억제되므로 필요한 경우에는 열, $CO_2$, 습도 및 공기의 이동 등 보조에너지의 투입이 가능하므로 보다 적절한 지상환경조건을 조성할 수 있다. (중략)

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The Cooling Effect of Evaporative Cooling Systems on Greenhouse (증발냉각시스템 설치 온실의 냉방효과)

  • 김기성;김문기;김현수
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1999.11a
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    • pp.209-212
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    • 1999
  • 여름철 재배시설의 기본적인 온도상승 억제방법은 차광과 환기이지만 이 방법만으로는 작물의 적정 생육온도에 접근하기 어렵기 때문에 추가적인 냉방 장치가 도입되고 있다. 현재 온실의 냉방시스템은 물의 증발잠열을 이용한 Pad and Fan 방식과 Fog 방식의 냉방시스템이 보급되어 있으나, 국내의 지역기상조건을 감안한 연구가 충분히 이루어지지 못하여 냉방시스템의 설치와 운영에 대한 기준이 명확하지 못한 실정이다. 따라서, 본 연구에서는 현장 실험을 통하여 기초적인 자료를 수집하였다.

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A Review of Greenhouse Energy Management by Using Building Energy Simulation (BES 프로그램을 이용한 온실의 에너지 관리)

  • Rasheed, Adnan;Lee, Jong Won;Lee, Hyun Woo
    • Journal of Bio-Environment Control
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    • v.24 no.4
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    • pp.317-325
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    • 2015
  • This paper attempts to present a review about simulation of different greenhouse parameters and energy supplying techniques by using building energy simulation, to find out the optimal solution for keeping greenhouse microclimate favorable for the crop production. The objectives of conducting this study were, to describe the various energy systems and techniques used for the greenhouse energy management and efficiency analysis of these technologies by using building energy simulation. We describe different models to understand the behavior of the energy saving technologies with respect to the resources available and different outside climatic conditions. We identified main features of the building energy simulation software, that enable users, to simulate hybrid agricultural building projects by using user defined parameters. At the end of the paper we draw some important concluding remarks on the basis of reviewing all the investigators contributions for the developments of simulation model of agricultural greenhouse energy management, using a building energy simulation software specifically TRNSYS. In conclusion, this paper provides information that TRNSYS have great potential for agricultural buildings energy simulation along with the renewable energy resources and energy saving techniques. This review paper provides aid to greenhouse researcher and energy planner for the future studies of greenhouses energy planning.