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      • 파프리카 재배용 1-2W형 온실 구조의 안정성 검토(Ⅰ)

        원명 ( Won-myung Suh ),윤용철 ( Yong-cheol Yoon ),배용한 ( Yong-han Bae ),최만권 ( Man-kwon Choi ) 한국농공학회 2008 한국농공학회 학술대회초록집 Vol.2008 No.-

        This study was performed to check the structural safety of modified 1-2W Greenhouses to be utilized for growing Paprika. This type of greenhouse was derived from being remodeled by enhancing the column height of conventional 1-2W type greenhouses. According to the results of structural analysis performed by SAP-2000, there was not significant change in critical snow depth in spite of increasing the column height of 1.2m by welding. But the critical wind velocities were shown to be 28.5m/s~40.6m/s, which were 10∼31% lower wind velocities compared with those critical velocities estimated for typical type of 1-2W greenhouse. Under the wind loads, those maximum section forces such as shear force, axial force, and bending moment, together with the deformed frame shape of strained greenhouse, were almost similar in both typical type and modified type. Maximum bending moment of column was found at eave's height of column on windward side. Under the snow loads, those maximum section forces such as shear force, axial force, and bending moment, together with the deformed frame shape of strained greenhouse, were almost similar in both typical type and modified type. Maximum section forces except axial force was found at eave's height of column. Maximum axial force was found at inner column. Soil bearing capacity together with the total foundation resistance against wind upheaval was found to be consistently safe enough to resist to both wind load and snow load.

      • KCI등재

        표면코팅 구조재의 달열효과 분석

        원명,윤용철,Suh, Won-Myung,Yoon, Yong-Cheol 한국농공학회 2004 한국농공학회논문집 Vol.46 No.4

        This experiment was carried out to study on the effect of surface coating on thermal insulation of farm structures to improve thermal resistance and reflective effect of solar radiation. Nine different types of experimental specimen were compared in the temperature variations of inside and outside; A, B, C, D. E and F types are box container and G, H and I types are drum container. The size of these containers is $1,500{\times}2,000{\times}2,500$ mm and ${\varphi}$ $280{\times}330$ mm, respectively. Specimen of 3-type box(A, B, C) is galvanized steel sheet of thickness 0.45 mm. D, E and F types are sandwich panel of the thickness 50 mm inserted with urethane, glass wool and polystyrene form, respectively. G, H and I types are paint pot using in general. The surface of A. D, E, F and I types didn't any treatment, B, C and G types were treated with thermal insulation coating on the outside surface(B, G) or the inside and outside surface(C). And H type was treated with water paint coating on the only outside surface. In general, the experimental results showed the following tendencies; In case of A, B and C types. it was found that the thermal insulation effect of types coated with thermal insulation coating was improved remarkably than that of no treatment. And the thermal insulation effect between steel sheet and sandwich panel type was nearly similar There was not a significant difference of thermal insulation effect between thermal insulation coating and water paint coating. In time of drum container filled with rough rice, The difference of heat transfer tendency and temperature variation among surface treatments was nearly similar that of box types of galvanized steel sheet. And there was time lag about 6 hours between the temperature of middle part of rice and that of inside or outside surface.

      • KCI등재

        큰느타리버섯 재배사의 경제성 분석

        원명,윤용철,Suh, Won-Myung,Yoon, Yong-Cheol 한국농공학회 2006 한국농공학회논문집 Vol.48 No.6

        The analysis used in this work was cost-benefit analysis method. All future costs and returns of a given mushroom house were discounted to the time of initial investment (present) by means of 3.5% discount rate. Then the cost of ownership was compared to the return from the system. This analysis method has been developed and coded into a balance sheet for use on a EXCEL program. Using this programmed analysis,a large number of the case studies were examined using different combinations of economic conditions. These results will be very useful to individuals considering investment in a mushroom house, or any similar production system. By the way of the sensitivity analysis for each important parameter, the change of the marginal cost-benefit period could be finally determined. These parameters were typically construction cost of mushroom house, cost of cooling system, required cooling and heating energy amounts, unit price of mushroom media bottle, growing number of media bottles, production weight per unit bottle, sale price of mushroom, and annual number of growing period, etc.

      • KCI등재

        파프리카 재배용 온실에서 용접 파이프 기둥재의 구조적 안전성 검토

        원명,최만권,임재운,권순주,김현태,김영주,윤용철 경상대학교 농업생명과학연구원 2011 농업생명과학연구 Vol.45 No.2

        본 연구의 대상은 1-2W 기본형 온실의 기둥을 절단하여 동일한 규격의 파이프로 용접하여 온실의 측 고를 높인 온실이다. 이와 같이 개조형 온실에 풍하중이나 적설하중이 작용할 경우, 어떠한 형태로든 용 접부위에는 구조적으로 불안전 할 것으로 판단된다. 이를 검토학기 위하여 4단계에 걸쳐 용접된 기둥에 대한 굽힘 강도를 측정하여 용접하지 않은 원상태의 파이프와 비교 검토한 결과는 다음과 같다. 온실구조용 강관에 대한 용접결합부의 굽힘 시험의 경우, 하중재하 방법에 관계없이 양단 지점부위와 하중 재하부위가 하중을 견디지 못하고 함몰되는 현상을 보임으로서 합리적인 결과를 도출할 수가 없었 다. 따라서 지점 및 하중 재하부위에 내부 파이프 (봉강)을 삽입함으로서 부분적인 문제점을 보완할 수 있었지만, 보다 합리적인 굽힘 시험 방법이 고안되어야 할 것으로 판단되었다. 용접결합부의 강도는 원형 상태에 비해 별 차이를 보이지 않았고, 시료의 제작 조건에 따라 경미한 차이를 보였으나, 용접 과정에서 부실의 정도가 결정적인 강도 손실을 유발할 수 있음이 예상되었다. 용접결합과정의 문제점이나 접합 작 업 후, 기둥 부재의 기울어짐 등에 대한 문제점이 없다는 전제 하에 용접한 파이프의 강도는 일반적으로 원형상태의 강도에 비해 약 84~90% 정도로 가정함이 합리적일 것으로 판단되었다. 그리고 접합부의 녹 발생이나 기타 용접결합에 따른 중장기적 강도 저하 등을 고려할 때, 부득이한 경우가 아니라면 현재 농 가에서 시도되고 있는 온실의 주요 부재에 대한 구조변경 등은 구조안전성 측면에서 지극히 삼가 되어야 할 것으로 판단되었다. This study was conducted on greenhouses whose side heights had been raised after the columns of 1-2W basic type greenhouses had been cut and welding with the same-sized pipes. When the wind load or snow load affects restructured pipe greenhouse like this, those parts will be structurally unsafe. To examine this, the bending strength of welded columns were measured through four stages and compared with the pipes in their original condition. Results are as follows. In the case of a bending test on welded joints about steel pipes used for greenhouses, satisfactory results couldn’t be drawn because sections of both ends and the loading parts couldn’t endure loads and sank regardless of loading methods. Partial problems could be solved by inserting inside pipe(steel bar) at the sections and the loading parts, but it was necessary to devise more satisfactory bending test methods. The strength of welded joints wasn’t much different compared with original conditions and demonstrated only slight differences according to the sample production conditions. However, significant incompleteness in the welding process was expected to cause a decisive loss in strength. On the assumption that there were no problems in the welding process or with regard to the inclination of sub materials for columns after connection, it was deemed reasonable to assume that the strength of welded pipes was about 84~90% of the strength of the pipes in their original condition. Considering mid- and long-term strength decline following the onset of rust at joints or welding sections, structural changes in the main sub materials that are used for greenhouses at farmhouses have to be avoided to ensure structural safety, unless these changes are inevitable.

      • KCI등재

        열회수장치에 의한 열회수성능 분석

        원명,윤용철,강종국 한국생물환경조절학회 2000 생물환경조절학회지 Vol.9 No.4

        본 연구는 온실 난방시스템의 연소 체임버에 부착된 연소가스 배출연통에 열회수기를 장착하여 배출가스로부터 열을 회수하는 열회수장치의 성능에 대해 실험·분석하였다. 열회수시스템은 LPG 연소 체임버와 두 개의 열회수기로 구성되어있다. 열회수기-A는 배기가스 연통에 직접 연결되어 있으며 열회수기-B는 열회수기-A에 직렬로 연결되어 있다. 회수되는 열량은 가스의 질량흐름율과 두 측점간의 엔탈피 차이로서 산정하였으며 5가지의 송풍전압별로 각 열회수기의 성능을 검토하였다. 각 열회수기의 공기튜브 다발에 공급된 공기와 튜브 다발에 가로질로 통과하는 연소가스간의 열교환, 열회수기 유·출입부간의 압력감소, 열회수기의 총열회수성능 등으로 온실의 연통을 통해 낭비되는 열을 회수하여 연료 절감 효과를 얻을 수 있는 최적의 열회수장치 설계용 기초자료 확보에 본 연구의 목적이 있다. This study was performed to investigate the performance of heat recovery device attached to exhaust gas flue connected to combustion chamber of greenhouse heating system. The experimental heat recovery system is mainly consisted of LPG combustion chamber and two heat recovery units; unit-A is attached directly to the exhaust gas flue, and unit-B is connected with unit-A. Heat recovery performance was evaluated by estimating total energy amounts by using enthalpy difference between two measurement points together with mass flow rate of gas and/or air passing through each heat recovery unit depending on 5 different flow rates controlled by voltage meter. The results of this experimental study, such as heat exchange behavior of supply air tubes and exhaust air passages crossing the tubes, pressure drop between inlet and outlet, heat recovery performance of exchange unit, etc., will be used as fundamental data for designing optimum heat recovery device to be used for fuel saving purpose by reducing heat loss amounts mostly wasted outside of greenhouse through flue.

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