RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      검색결과 좁혀 보기

      선택해제
      • 좁혀본 항목 보기순서

        • 원문유무
        • 원문제공처
        • 등재정보
        • 학술지명
        • 주제분류
        • 발행연도
        • 작성언어
        • 저자
          펼치기

      오늘 본 자료

      • 오늘 본 자료가 없습니다.
      더보기
      • 무료
      • 기관 내 무료
      • 유료
      • KCI등재

        과수재배용 온실의 구조유형과 설계요소 분석

        남상운,고기혁,Nam, Sang-Woon,Ko, Gi-Hyuk 한국생물환경조절학회 2013 생물환경조절학회지 Vol.22 No.1

        본 연구는 과수재배 시설의 표준화 및 환경조절기술개발을 위한 기초자료로 제공하는 것을 목적으로 과수재배용 온실의 실태를 조사하여 구조유형과 설계요소를 분석하고, 기상재해에 대한 안전성과 구조 및 환경관리에 대한 개선방안을 검토하였다. 시설재배 면적이 가장 많은 5개 품목 중 주로 제주도에서 재배되고 있는 감귤과 현재 재배온실을 찾을 수 없는 단감을 제외한 포도, 배 및 복숭아재배 온실을 연구대상으로 하였다. 감귤과 포도재배 온실은 꾸준히 증가하고 있으나 저장시설의 발달로 배와 단감재배 온실은 감소하고 있는 추세이다. 앞으로는 비가림 효과가 크고 저장성이 떨어지는 품목을 중심으로 과수재배 온실의 변화가 예상된다. 조사대상 온실 중 배 재배 온실과 복숭아재배 대형 단동온실을 제외하고는 대체로 보급형 온실의 규격을 따르고 있으며, 재배작목별로 특성화된 온실은 없는 것으로 나타났다. 과수재배 온실의 대부분은 농촌진흥청과 농림수산식품부에서 고시한 농가보급형 모델이나 내재해형 모델의 부재규격을 따르고 있었다. 기초는 대부분 콘크리트 기초를 사용하고 있었으며, 배 재배 온실의 경우에는 내재해형 모델보다 두꺼운 단면의 기둥을 사용하고, 강판을 기둥의 하단에 용접하여 매설한 형태의 특수한 기초를 적용하고 있었다. 조사대상 온실의 구조적 안전성을 검토한 결과 대부분 안전하였으나 김천과 천안의 포도재배 온실, 남원과 천안의 복숭아재배 온실에서 적설에 불안전한 것으로 나타났고, 남원의 복숭아재배 온실은 풍속에 대한 안전성도 부족한 것으로 나타났다. 또한 채소재배 온실을 복숭아재배로 전용한 온실의 경우 적설과 풍하중 모두 상당히 불안정한 것으로 나타났다. 과수의 수형, 수고 및 재식간격을 고려하여 과수 재배 온실의 적정규격을 검토한 결과 포도재배 온실은 폭 7.0~8.0m, 측고 2.5~2.8m가 적당하고, 배와 복숭아재배 온실은 폭 6.0~7.0m, 측고 3.0~3.3m 정도가 적당한 것으로 판단된다. In order to provide basic data for the development of a controlled environment cultivation system and standardization of the structures, structural status and improvement methods were investigated for the fruit tree greenhouses of grape, pear, and peach. The greenhouses for citrus and grape cultivation are increasing while pear and persimmon greenhouses are gradually decreasing due to the advance of storage facilities. In the future, greenhouse cultivation will expand for the fruit trees which are more effective in cultivation under rain shelter and are low in storage capability. Fruit tree greenhouses were mostly complying with standards of farm supply type models except for a pear greenhouse and a large single-span peach greenhouse. It showed that there was no greenhouse specialized in each species of fruit tree. Frame members of the fruit tree greenhouses were mostly complying with standards of the farm supply type model or the disaster tolerance type model published by MIFAFF and RDA. In most cases, the concrete foundations were used. The pear greenhouse built with the column of larger cross section than the disaster tolerance type. The pear greenhouse had also a special type of foundation with the steel plate welded at the bottom of columns and buried in the ground. As the results of the structural safety analysis of the fruit tree greenhouses, the grape greenhouses in Gimcheon and Cheonan and the peach greenhouses in Namwon and Cheonan appeared to be vulnerable for snow load whereas the peach greenhouse in Namwon was not safe enough to withstand wind load. The peach greenhouse converted from a vegetable growing facility turned out to be unsafe for both snow and wind loads. Considering the shape, height and planting space of fruit tree, the appropriate size of greenhouses was suggested that the grape greenhouse be 7.0~8.0 m wide and 2.5~2.8 m high for eaves, while 6.0~7.0 m wide and 3.0~3.3 m of eaves height for the pear and peach greenhouses.

      • KCI등재

        저압 에어포그 시스템을 설치한 온실의 냉방효율

        남상운,김영식,성인모,고기혁,Nam, Sang-Woon,Kim, Young-Shik,Sung, In-Mo,Ko, Gi-Hyuk 한국농공학회 2012 한국농공학회논문집 Vol.54 No.5

        In order to derive the efficient utilization of low pressure compressed air fogging system, cooling efficiencies with control types were analyzed through cooling experiments in tomato greenhouses. The control types were set up with temperature control, humidity control, temperature and humidity control, and time control. It showed that the cooling effects were 0.7 to $3.3^{\circ}C$ on average and maximum of 4.3 to $7.0^{\circ}C$, the humidification effects were 3.5 to 13.5 % on average and maximum of 14.3 to 24.4 %. Both the cooling and humidification effect were the highest in the time control method. The cooling efficiency of the air fogging system was not high with 8.3 to 27.3 % on average. However, the cooling efficiency of 24.6 to 27.3 % which appears from the time control is similar to the cooling efficiency of high pressure fogging system experimented in Japan. The air fogging system is operated by low pressure, but its efficiency is similar to high pressure. We think because it uses compressed air. From this point of view, we suggest that the air fogging system can get the cooling efficiency of similar levels to that of high pressure fogging system and it will have an advantage from clogging problem of nozzle etc.

      • KCI등재후보

        단동 플라스틱 온실의 천창 환기효과와 설치기준 분석

        남상운(Sang-Woon Nam),김영식(Young-Shik Kim),고기혁(Gi-Hyuk Ko),성인모(In-Mo Sung) 충남대학교 농업과학연구소 2012 농업과학연구 Vol.39 No.2

        Dimensions, operation conditions and improvement items for round roof windows were investigated in arch shape single-span plastic greenhouse with roof vents, and natural ventilation performance was analyzed based on the ventilation theory. Diameter of round roof windows was mostly 60 ㎝, and chimney height projected on roof was average 30 ㎝. Installation space was mostly 5 to 6 m but farmhouse of 10 m and over was 16.7% also. A round roof window which has 60 ㎝ diameter was installed to 6 m space generally and 80 ㎝ diameter was installed to 10 m space, but correct standards did not exist. There were a lot of opinions that ventilation effect of round roof windows is fairly good and user satisfaction is generally excellent. It is problem that there is few effects in summer and that vinyl around each vent tears well and rainwater leaks, and improvement hope item required development of automatic control system. In the wind speed of 0.3 ㎧, it was estimated that natural ventilation rates were 0.69, 0.55, 0.50 and 0.48 volumes per minute in case of 2, 4, 6 and 8 m installation space for round roof windows, respectively. It was analyzed that the ratio of ventilation due to buoyancy out of total ventilation were 65.2, 41.9, 29.9 and 22.8% in case of 2, 4, 6 and 8m installation space, respectively. By the round roof windows installed at space of 6 m, ventilation rate was estimated to 0.5 volumes per minute, and we can expect the increase in ventilation rate of 30%. In order to meet the recommended ventilation rate for summer season, we have to install the round roof windows at space of 1 to 2 m. However, it is difficult to apply those installation space because of falling productivity due to lower light transmittance as well as rising costs. It is estimated that the installation space of 6m is appropriate for spring or fall season. Therefore it is necessary to encourage installing the roof windows in single-span plastic greenhouses.

      연관 검색어 추천

      이 검색어로 많이 본 자료

      활용도 높은 자료

      해외이동버튼