• 제목/요약/키워드: even span greenhouse

검색결과 9건 처리시간 0.025초

풍동을 이용한 간척지 내 양지붕형 온실의 지붕 경사에 따른 풍압계수 평가 (Estimation of Wind Pressure Coefficients on Even-Span Greenhouse Built in Reclaimed Land according to Roof Slop using Wind Tunnel)

  • 김락우;김동우;류기철;권경석;이인복
    • 생물환경조절학회지
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    • 제23권4호
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    • pp.269-280
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    • 2014
  • To cope with increasing of vegetables and flowers consumptions, horticulture facilities have been modernized. Korea government recently announced construction plan of new greenhouse complex at reclaimed land. However wind characteristics of reclaimed land is totally different from those of inland, wind pressure on greenhouse built in reclaimed land should be carefully evaluated to secure structural safety on the greenhouse. In this study, as a first step, wind pressure coefficient and local wind pressure coefficient on even-span greenhouse were measured using wind tunnel test. ESDU was adopted to realize wind characteristics of reclaimed land such as wind and turbulence profiles. From the wind tunnel test, when wind direction was 0 degree, it was concluded that KBC2009 standard underestimated scale of wind pressure coefficients at roof area of greenhouse whereas NEN-EN2002 standard underestimated those at every surface of greenhouse. When wind direction was 90 degree, both standards did not well reflect the characteristics of wind pressure distribution. From the analysis of local wind pressure coefficients according to wind direction conditions, design of covering, glazing bar of greenhouse where large effects of the local wind pressure were estimated should be well established. Wind pressure coefficients and local wind pressure coefficients according to parts of the greenhouse were finally suggested and these results could be practically used for suggesting new design standards of greenhouse.

박과작물 재배 단동 비닐하우스의 천장 환기시스템 설치 실태조사 (A field survey on roof ventilation system of single-span plastic greenhouse in cucurbitaceae vegetable cultivation)

  • 여경환;유인호;이한철;정재완;최경이
    • 농업과학연구
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    • 제40권4호
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    • pp.317-323
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    • 2013
  • This research was conducted to obtain the basic information for establishment of standard guidelines in the design and installation of roof ventilation system in single-span plastic greenhouse. To achieve this, the greenhouse structure & characteristics, cultivation status, and ventilation system were investigated for single-span greenhouse with roof ventilation system cultivating the Cucurbitaceae vegetables, watermelon, cucumber, and oriental melon. Most of single-span watermelon greenhouse in Haman and Buyeo area were a hoop-style and the ventilation system in those greenhouses mostly consisted of two different types of 'roof vent (circular or chimney type) + side vent (hole) + fan' and 'roof vent (circular type) + side vent (hole or roll-up type)'. The diameter of circular and chimney-type vent was mostly 60cm and the average number of vents was 10.5 per a bay with vent spacing of average 6.75m. The ratio of roof vent area to floor area and side vent area in the single-span watermelon greenhouse with ventilation fan were 0.46% and 7.6%, respectively. The single-span cucumber greenhouse in Haman and Changnyeong area were a gable roof type, such as even span, half span, three quarter and the 70.6% of total investigated single-span greenhouses was equipped with a roof ventilation fan while 58.8% had a circulation fan inside the greenhouse. The ratios of roof vent area to floor area in the single-span cucumber greenhouse ranged from 0.61 to 0.96% and in the case of the square roof vent, were higher than that of the circular type vent. On average, the roof ventilation fan in single-span cucumber greenhouse was equipped with the power input of 210W and maximum air volume of $85.0m^3/min$, and the number of fans was 9.75 per a bay. The number of roof vent of single-span oriental melon greenhouse with only roll-up type side vent ranged from 8 to 21 (average 14.8), which was higher than that of other Cucurbitaceae vegetables while the vent number of the greenhouse with a roof ventilation fan was average 7 per a bay.

도시농업을 위한 소형온실 설계요인 분석 및 구조모델 개발 (Development of Structural Model and Analysis of Design Factors for Small Greenhouse of Urban Agriculture)

  • 김형권;유영선;김영화;이태석;오성식;이원석;김용현
    • 생물환경조절학회지
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    • 제28권4호
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    • pp.388-395
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    • 2019
  • The purpose of this study is to suggest structural model and analyze design factors for the development of small greenhouse standardization model. The average dimensions of small greenhouse desired by urban farmers were 3.3m in width, 1.9m in eaves height, 2.7m in ridge height, 5.7m in length. The cladding materials for small greenhouse were preferred to glass, PC board and plastic film, framework to aluminum alloy and steel, and heating method in electrical energy. In addition, it was analyzed that small greenhouses need to develop structural model by dividing them into entry-level type and high-level type. The roof type that was used for entry-level type was arch shape, framework was steel pipe, cladding material was plastic film. On the other hand, high-level type was used in even span or dutch light type, framework with square hollow steel, cladding materials with glass or PC board. In consideration of these findings and practicality, this study developed four types of small greenhouses. The width, eaves height, ridges height, and length of the small greenhouses of even span type, which were covered with 5mm thick glass and 6mm thick PC board were 3m, 2.2m, 2.9m, and 6m, respectively. The small greenhouse of dutch light type covered with 5mm thick glass was designed with 3.8m in with, 2.2m in eaves height, 2.9m in ridges height, and 6m in length. The width, eaves height, ridges height, and length of the arch shape small greenhouse covered with a 0.15mm PO film were 3m, 1.5m, 2.8m, and 6m, respectively.

간척지 내 단동형 온실의 풍하중에 대한 구조 안정성 분석 (Structural Safety of Single-Span Greenhouses under Wind Load of Costal Reclaimed Lands)

  • 홍세운;김락우;최원
    • 한국농공학회논문집
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    • 제59권4호
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    • pp.109-117
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    • 2017
  • Coastal reclamation has created large flat lands, part of which is an attractive site to construct greenhouse complexes for the horticulture industry. Wind environments over these coastal lands are entirely different from those of the inland area, and demand increased structural safety. The objective of this study is to evaluate the structural safety of two single-span greenhouses, peach type and even-span type, under the wind characteristics of coastal reclaimed lands. The wind pressure coefficients acting on the walls and roofs of two greenhouses were measured by wind tunnel experiments, and those acting on the roofs were approximately two times larger than those suggested by the existing design guidelines. Consequently, structural analysis conducted by SAP2000 showed that greenhouse structures designed by the existing guidelines might lead to structural failure under coastal wind conditions because their maximum allowable wind speeds were lower than the design wind speed. Especially, the peach type greenhouse constructed in a reclaimed land could be damaged by approximately 48 % of the design wind speed and needed improvement of structural designs. This study suggested increasing the spacing of rafters with thicker pipes for the peach type greenhouse to enhance economic feasibility of the building under strong wind conditions of reclaimed lands.

성주지역 참외 재배용 온실구조 현황 및 모델 개발 (Current Status and Development of Greenhouse Models for Oriental Melon Cultivation in Seongju Region)

  • 이종원;백철현;이현우;정성원
    • 생물환경조절학회지
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    • 제23권2호
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    • pp.95-108
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    • 2014
  • 본 연구는 성주지역에 적합한 참외재배용 내재해형 온실을 개발하기 위하여 참외 재배온실의 구조현황 조사, 최근 기상자료가 반영된 설계하중 산정, 온실모델 설정 및 구조안전성 분석을 수행하였으며 결과를 요약하면 다음과 같다. 성주지역 참외온실의 구조적 특성을 파악하기 위하여 현장 조사한 결과, 온실의 지붕형상은 아치형이 가장 많았으며, 최근에 시공한 온실일수록 복숭아형이 많았으며 폭이 넓어지고 동고도 높아지는 추세였다. 그리고 성주지역에 가장 인접한 구미기상대의 기상자료를 이용하여 재현기간에 따른 설계풍속 및 설계적설심을 산정할 수 있는 계산식을 유도하였으며, 내재해형 온실규격을 만족하는 재현기간 30년의 적설심은 23.7cm, 풍속은 $33.8m{\cdot}s^1$로 계산되었다. 이러한 성주지역의 내재해형 설계기준을 만족하는 참외재배용 단동온실 4종, 2연동온실 및 연결온실을 각각 1종씩 총 6종의 모델을 개발하였다.

풍하중이 농업시설물의 구조적 안정성에 미치는 영향 -수치해석에 의한 풍력계수분포 산정- (The Effect of Wind Force on Stability of Agricultural Structures - Numerical Calculation of Wind Pressure Coefficients -)

  • 최홍림;손정익
    • 생물환경조절학회지
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    • 제3권1호
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    • pp.10-19
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    • 1994
  • Wind load is known to be one of major forces to influence the stability of agricultural structures. General flow fields were calculated to determine flow characteristics over the envelop of the following three types of greenhouses with arched roof : single span, twin span greenhouses, and two single span greenhouses apart 3m inbetween. Pressure coefficients along the envelop of greenhouse were numerically calculated by the k-$\varepsilon$ turbulence model, which lead to determine wind forces on it. Curvilinear coordinate for an arched roof and the upwind scheme were adopted for the study. The calculated pressure coefficients were validated with the avaliable data of Japanese Standard and NGAM Standard. The Magnitude of calculated forces over the envelop was not in good accordance with data except the windward wall. Even tile data of Japanese and NGAM Standard for validation deviated a lot from each other in quantity and quality. Such discrepancy may be attributed to different geometric and/or flow configuration conditions for experiments, or the insenstivity of the k-$\varepsilon$ turbulence model to recirculation flow.

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아치형 단동온실의 지붕환기구조 및 천창효과 (Roof Ventilation Structures and Ridge Vent Effect for Single Span Greenhouses of Arch Shape)

  • 남상운
    • 농업과학연구
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    • 제28권2호
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    • pp.99-107
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    • 2001
  • 온실재배에 있어서 가장 경제적인 환경조절방법은 자연환기에 의한 것이므로 온실의 자연환기 성능을 극대화하는 것은 매우 중요하다. 온실의 자연환기 성능을 극대화하기 위해서는 지붕환기창의 설치가 중요한데, 아치형 단동 온실의 경우에는 천창을 설치하기 어려운 구조로 되어 있어서 대부분의 농가가 측창만 설치하여 운영하고 있다. 본 연구에서는 아치형 단동 온실의 지붕에 환기창 설치를 장려하기 위한 일환으로 사례조사와 효과분석을 실시하였다. 아치형 단동 온실의 지붕환기구조 실태조사 결과 폭 5~8m의 소형 온실에서는 플라스틱으로 제작된 원형 및 굴뚝형 환기창을, 폭 12~18m의 대형온실에서는 철재 파이프를 덧붙인 양권취식을 많이 사용하고 있었다. 지붕환기창 설치 온실과 관행의 권취식 측창만 설치된 온실에 대한 대조 실험 결과 비록 적은 면적의 지붕환기창을 설치하였지만 온도하강 $1^{\circ}C$ 이상의 천창 환기 효과가 있었으며, 지붕환기를 실시함으로써 온도분포를 보다 균일하게 할 수 있는 것으로 나타났다. 지붕환기창을 설치함으로서 얻을 수 있는 온도상승 억제효과는 일사량과 풍속조건에 따라 뚜렷한 차이를 보이며, 풍속이 낮은 경우에 효과가 커지는 것을 확인할 수 있었다. 환기창의 개폐순서에 따른 전체적인 온도 하강의 차이는 없으나, 환기로 온도를 제어하는 경우에는 실내온도가 설정온도보다 높을 때는 천창을 열은 후 측창을 열고, 반대의 경우에는 측창을 닫은 후 천창을 닫는 것이 바람직한 것으로 판단되었다.

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마이크로컴퓨터에 의한 시설재배의 자동화에 관한 기초연구(III) -양지붕형 하우스의 창 개방방법에 따른 온.습도의 변화- (A Fundamental Study for the Automatic Control System in Greenhouse Using Microcomputer(III) -A variation of temperature and humidity by the window opening ways of the even-Span type house-)

  • 김진현;김철수;구건효;이기명
    • Journal of Biosystems Engineering
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    • 제20권2호
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    • pp.162-172
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    • 1995
  • The ventilation in greenhouse have been important for such as adjustment of temperature, supplying of the oxygen, prevention of the overhumidity, density adjustment of $CO_2$, discharge of harmfulness gas, etc. However, the general ventilation which had been used the quantitative control method in discharge of a property of air mechanism in greenhouse, and caused mainly in waste of the heating energy and growth obstacle of the vegetable. Therefore, this study was peformed to obtain more scientific ventilation method using by analysis and measurement of the isothermal lines according to opening of window ventilation in greenhouse, and the results are summarized as follows. 1. The ventilating amount was more influenced by rather opening amount of window than the ventilating time. 2. In window ventilation, the temperature in greenhouse was mostly changed within 5 minutes after ventilating not regard to the spot of opening, after about 10 minutes temperature became to equilibrium state under the respective ventilating conditions. 3. In opening of the skylight only, isothermal lines were complicated, therefore, a tall vegetable may be possible to damage by a cold-weather from the lower central port in greenhouse. 4. Isothermal lines were a tendency to simply in opening of a side window that may be more effective ventilation in kinds of the short vegetable. 5. In conditions of internal temperature>setting temperature>external temperature, a skylight can be suitable to open 10~20cm in order to the optimum ventilation in greenhouse. 6. In conditions of internal temperature>external temperature>setting temperature, opening of all the windows or both the side windows that can be suitable in order to obtain the optimum ventilation in greenhouse. 7. An effect of ventilation was the most excellent to open of all the windows or both the side windows, and it were also found orderly excellent to open of the side window and the skylight or the skylight only, to open of the side window only. 8. Temperature was varied as the equation of T=Tc+ (To-Tc)e-at, and the ranges of (a) values were limited within 0.34~0.68. 9. A variations of humidity were similar to that of temperature, s.

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패널굴절방식 환기창 온실의 환기효과 (Ventilation Effect of the Greenhouse with Folding Panel Type Windows)

  • 김진영;이시영;김현환;전희;윤익학
    • 생물환경조절학회지
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    • 제11권1호
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    • pp.5-11
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    • 2002
  • 본 연구는 여름 같은 고온기나 외부온도가 높지 않아도 시설내 온도가 많이 상승하는 봄 .가을 같은 시기에 온실내 고온 공기를 외부로 신속하게 유출시켜 강제환기를 사용하지 않고도 온실내부의 환경을 조절 할 수 있는 새로운 자연 환기창을 개발하는데 목적을 두고 수행하였다 패널굴절방식 측창은 지면에 가까운 쪽의 패널 하부에 절점을 두고 패널 상부가 측고 부위로부터 가이드 레일을 따라 하향하도록 구성하여 창이 개방되게 하였고, 천창은 측고 부위에 절점을 두고 용마루 쪽의 패널 상부가 가이드 레일을 따라 경사진 지붕면을 따라 하향하도록 구성하여 고온 공기층이 정체되어 있는 온실 상부인 측고 부위와 용마루 부위가 개방되도록 하였다. 굴절 패널의 상부 개방거리는 X=L(1-cos$\theta$)로 나타낼 수 있고 측면 개방 거리는 Y=L/2$\times$sin$\theta$로 나타낼 수 있다. 천창 개방시간은 4분 20초 소요되었으며 개방 시작한 2분 후부터 온도가 하강하기 시작하였고, 완전 개방 2분 후부터는 외기온과의 온도차 3~4$^{\circ}C$정도를 유지하면서 평형상태를 유지하였다. 패널굴절방식 환기창 온실의 환기성능은 체적환기량이 22.3-94.3m$^3$.m$^{-2}$ .h$^{-1}$이었으며, 환기 횟수는 15.2~39.3회.h$^{-1}$로 나타나 일반적인 연속형 천창의 10~15회.h$^{-1}$ 정도에 비해 환기효과가 높은 것으로 나타났다. 그리고 벤로형 온실과의 천창개폐시 온도하강을 비교하였을 때 환기효과가 2배 이상 높은 것으로 판단되었다.$_{r}$", $\mu$$_{r}$′) and the dielectric loss ($\varepsilon$$_{r}$"/$\varepsilon$$_{r}$′) were increased. It was caused that the absorption characteristics of the absorber were improved. The conduction loss and magnetic loss were expected to be occurred together because two matching frequencies were shown with carbon addition. It was confirmed that the matching frequency of the microwave absorber could be controlled by controlling heat-treatment temperatures and carbon additions.ons.tions.加的)으로 되거나 과가황(過加黃)이 될 우려가 있는 제조공정(製造工程)에서는 흔히들 이 방법(方法)을 무시(無視)하고 있다. 여기서 강조(强調)해 두어야 할 것은 항상 제품(製品)의 외부(外部)를 완전(完全)히 가황(加黃)시킬 필요(必要)는 없다는 것이다. 다공성(多孔性)이나 기포생성(氣泡生成)을 조장(助長)하는 불량가황상태(不良加黃狀態)와 표면(表面)에서의 과가황상태간(過加黃狀態間)의 균형(均衡)을 취(取)해 줘야 하는데 물론(勿論) 이때는 가황시간(加黃時間)을 단축(短縮)시켜야 한다는 경제적(經濟的)인 측면(側面)도 아울러 고려(考慮)해야 한다